973 resultados para G – Protein coupled receptors


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En este trabajo se ha estudiado el efecto de la composición química corporal, estimada mediante el método de impedancia bioeléctrica (BIA) en la primera y segunda inseminación artificial (IA), sobre la fertilidad y la prolificidad de conejas primíparas. Se utilizaron los datos de 137 conejas procedentes de dos granjas que utilizaban dos genéticas distintas (UPV e Hyplus) y tres ritmos reproductivos (R4: inseminación a los 4 días tras el parto y destete a los 28 días, R11: inseminación a los 11 días postparto y destete a 35 días y R14: inseminación a los 14 días tras el parto y destete a los 42 días). La fertilidad media observada en el segundo parto fue de un 56,2% y el porcentaje de nacidos vivos, sobre los nacidos totales, fue de un 87,5%, no encontrándose diferencias entre los ritmos utilizados. El aumento de la proporción de proteína corporal, grasa y energía en la primera IA tuvieron un efecto positivo (P=0,007; P=0,03 y P<0,001, respectivamente) sobre la fertilidad del segundo parto. Igualmente, un mayor contenido en grasa (P<0,001) y energía (P<0,001) en la segunda IA también incrementaron la fertilidad del segundo parto. El incremento del ratio proteína/energía corporal de las conejas, determinado en las dos IA, tuvo un efecto negativo sobre la fertilidad en el segundo parto (P<0,001), observándose mejores resultados en conejas con 12 g proteína/MJ respecto a otras con valores superiores. El porcentaje de nacidos vivos (P<0,001), sobre los nacidos totales, aumentó con la proporción de proteína de las conejas en el momento de la segunda IA, pero esta última no tuvo efecto sobre la fertilidad. This study evaluated the effect of chemical body composition at first and second artificial inseminations (AI), determined by bioelectric impedance technique (BIA), on fertility and prolificacy of primiparous rabbit does. Data of 137 does from two farms using two different genetics (UPV and Hyplus) and three breeding systems were analyzed. Fertility was 56.2 % and the percentage of kits born alive over total born was 87.5 %. Breeding system had no effect on fertility or the percentage of kits born alive. Higher body protein, fat and energy of the rabbit doe at first artificial insemination (AI) increased the fertility in the second parity (P=0.007, P=0.03 and P<0.001 respectively). Fat and energy content of the doe at the second AI affected positively fertility in the second parity (P<0.001 and P<0.001 respectively), while protein influenced positively only prolificacy (P<0.001). The increase of the ratio protein/energy in both AI moments had a negative influence on fertility in the second parity (P<0.001), rabbit does with 12 g protein/MJ showed a higher fertility than those with higher values

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Los objetivos globales de esta tesis han sido estudiar el efecto que los carbohidratos de la dieta ejercen sobre los rendimientos productivos, la barrera intestinal, y la digestión de animales destetados a 25 días de edad. Además se ha estudiado cuál es el mejor periodo para determinar la digestibilidad fecal tras el destete a esta edad. En el primer experimento se estudió el efecto de la fibra neutro detergente soluble (FNDS) sobre la barrera intestinal, digestión, microbiota intestinal y rendimientos productivos de gazapos en gazapos en la fase post-destete. Se diseñaron tres piensos isonutritivos en los que la única fuente de variación fueron los niveles de fibra soluble. A partir de una dieta control (AH) con 103 g/kg de materia seca de FNDS y alfalfa como fuente principal de fibra, se sustituyó la mitad de esta alfalfa por una mezcla de pulpa de remolacha y pulpa de manzana (75:25) en el pienso B-AP y por una mezcla de cascarilla y concentrado de proteína de soja (88:12) en el pienso OH, obteniéndose 131 y 79 g/kg de FNDS sobre materia seca, respectivamente. Los conejos se destetaron a 25 días y fueron alimentados con los piensos experimentales hasta los 35 días de edad, momento en el que se sacrificaron para la determinación de la digestibilidad ileal aparente (DIA) de la materia seca (MS), proteína bruta (PB) y almidón, la morfología de la mucosa, y actividad enzimática en el yeyuno, el tejido linfoide asociado a la mucosa, así como la microbiota intestinal. Para la determinación de la morfología de la mucosa se utilizaron adicionalmente 19 animales lactantes de 35 días de edad. Para el estudio de la tasa de mortalidad, se utilizaron 118 animales más por tratamiento que recibieron los piensos experimentales durante las dos semanas post-destete y posteriormente un pienso comercial hasta los 60 días de edad. Los animales recibieron durante todo el experimento medicación en el agua de bebida (100 ppm de apramicina sulfato y 120 ppm de tilosina tartrato). El nivel de fibra soluble mejoró los parámetros que se utilizaron para la caracterización del estado de la barrera intestinal. Los conejos alimentados con el mayor nivel de FNDS en el pienso presentaron una mayor longitud de los villi (P=0.001), un mayor ratio longitud villi/profundidad de las criptas (8.14; P=0.001), una mayor actividad disacaridásica (8671 μmol de glucosa/g de proteína; P=0.019), así como una mayor digestibilidad ileal (96.8%; P=0.002), observándose una reducción en el flujo ileal de almidón a medida que se incrementó el nivel de fibra soluble en el pienso (1,2 vs 0,5 g/d; P=0.001). Los animales lactantes a 35 días de edad presentaron un ratio longitud de villi/profundidad de las criptas menor que el observado en aquéllos alimentados con el pienso B-AP (6.70), pero superior al de los piensos AH y OH. Niveles inferiores de NDFS tendieron (P=0.074) a incrementar la respuesta inmune de tipo celular (linfocitos CD8+). El pienso también afectó a la producción de IL2 (CD25+; P=0.029; CD5+CD25+; P=0.057), pero sin llegar a establecerse una clara relación con el nivel de fibra soluble. La diversidad de la microbiota intestinal no se vio afectada por el pienso (P ≥ 0.38). Los animales alimentados con las piensos B-AP y AH presentaron una reducción en la frecuencia de detección de Clostridium perfringens tanto en íleon (P=0.062) como en ciego (4.3 vs. 17.6%, P =0.047), comparado con el pienso OH. Además la tasa de mortalidad (118 gazapos/pienso) disminuyó de 14.4% en el pienso OH a 5.1% en el pienso B-AP. Entre los 32 y los 35 días de edad se determinó la digestibilidad fecal aparente (14/pienso) de la materia seca (MS), energía bruta (EB), proteína bruta (PB), fibra neutro detergente (FND), fibra ácido detergente (FAD) y almidón. Este grupo, junto con otros nueve animales por tratamiento se utilizaron para determinar el peso del estómago y el ciego, la concentración cecal de ácidos grasos volátiles (AGV) y amoniaco (NH3), así como las tasas de similitud de la microbiota intestinal. Además se estudiaron los rendimientos productivos (35 animales/tratamiento) de los gazapos durante todo el período de cebo, consumiendo los piensos experimentales desde el destete hasta los 35 días y posteriormente un pienso comercial hasta los 60 días de edad. Niveles crecientes de FNDS mejoraron la digestibilidad fecal de la materia seca (MS) y energía (P<0.001). La inclusión FNDS aumentó de manera lineal el peso del contenido cecal (P=0.001) y el peso del aparato digestivo completo (P=0.008), y en los días previos al sacrificio disminuyó de manera lineal el consumo medio diario (P=0.040). Se observó además, una disminución lineal (P≤0.041) del pH del estómago. No se encontró relación entre el pH, la concentración y proporciones molares de AGV y el nivel de FNDS. El pienso pareció tener un efecto, incluso superior al de la madre, sobre la tasa de similitud de la microbiota, y los efectos fueron mayores a nivel cecal que ileal. La eficacia alimenticia aumentó de manera lineal en un 12% entre piensos extremos tras el destete (25- 39d) y en un 3% en el período global de cebo con niveles mayores de NDFS. El consumo medio diario durante la fase post-destete y durante todo el período de cebo, tendió a aumen tar (P≤0.079) con niveles mayores de FNDS, sin embargo no se apreció efecto sobre la ganancia media diaria (P≥0.15). En conclusión, el incremento del nivel de fibra soluble en el pienso parece resultar beneficioso para la salud del animal ya que mejora la integridad de la mucosa, y reduce la frecuencia de detección de potenciales patógenos como C. perfringens y Campylobacter spp. Conforme a estos resultados, debería tenerse en cuenta el contenido en fibra soluble en la formulación de piensos de conejos en la fase post-destete. El objetivo del segundo experimento fue determinar el efecto de la fuente de almidón sobre la digestión, la microbiota intestinal y los rendimientos productivos en conejos destetados con 25 días de edad. Se formularon tres piensos isonutritivos en los que se modificaron las principales fuentes de almidón: trigo crudo, trigo cocido y una combinación de trigo y arroz cocido. Dos grupos de 99 y 193 animales se destetaron con 25 días de edad. El primero de ellos se utilizó para la determinación de los parámetros productivos conforme al mismo protocolo seguido en el experimento anterior. El segundo de los grupos se utilizó para la determinación de la digestibilidad fecal de 32 a 35 d, la digestibilidad ileal aparente (DIA) a 35 d, la morfología de la mucosa intestinal, los parámetros de fermentación cecal; así como, la caracterización de la microbiota intestinal. Se utilizaron además dos grupos adicionales de animales 384 (medicados) y 177 (no medicados) para estudiar el efecto de la suplementación con antibióticos en el agua de bebida sobre la mortalidad. El procesado térmico del trigo mejoró ligeramente la digestibilidad ileal del almidón (P=0.020) pero no modificó el flujo final de almidón que alcanzó el ciego, observándose una mayor frecuencia de detección de Campylobacter spp. y Ruminococcus spp. en ciego (P≤0.023), pero sin cambios a nivel ileal. El procesado térmico del trigo no afectó tampoco a los parámetros productivos, la mortalidad, la digestibilidad ileal y fecal o la morfología de la mucosa. La sustitución parcial del trigo cocido por arroz cocido, penalizó la digestibilidad ileal del almidón (P=0.020) e incrementó el flujo ileal de este nutriente al ciego (P=0.007). Sin embargo no afectó a la mortalidad, pese a que se detectaron cambios en la microbiota tanto a nivel ileal como cecal, disminuyendo la frecuencia de detección de Campylobacter spp. (en íleon y ciego), Helicobacter spp. (en íleon) y Ruminococcus spp (en ciego) e incrementando Bacteroides spp. (en ciego) (P≤0.046). El empleo de arroz cocido en las piensos post-destete no tuvieron efectos sobre los parámetros productivos, la mortalidad, la digestibilidad ileal y fecal a excepción del almidón, o la morfología de la mucosa. La suplementación con antibiótico redujo la fre cuencia de detección de la mayoría de las bacterias estudiadas (P≤0.048), sobre todo para Campylobacter spp., Clostridium perfringens y Propionibacterium spp. (P≤0.048), observándose un efecto mayor a nivel ileal que cecal, lo que se asoció a la bajada significativa (P<0.001) de la mortalidad. En conclusión, los resultados de este experimento indican que la fuente de almidón afecta a la microbiota intestinal pero no influiye sobre la salud del animal. En relación al procesado, el uso de trigo cocido junto con arroz cocido no mejora los resultados obtenidos con trigo duro, si bienserían necesarios más experimentos que confirmaran este punto. El último de los experimentos se centró en un aspecto metodológico. Dado que, los conejos destetados presentan un patrón digestivo diferente al de un animal adulto resultado de su inmadurez digestiva, el objetivo buscado era tratar de determinar el mejor procedimiento para la determinación de la digestibilidad fecal en los gazapos en la fase post-destete. Para tal fin se utilizaron 15 animales/tratamiento de tres camadas diferentes que se destetaron con 25 días, suministrándoles un pienso comercial de crecimiento-cebo. Se registró el consumo medio diario y la excreción diaria de heces desde el día 25 hasta el día 40 de edad para la determinación de la digestibilidad de la MS. La camada afectó al consumo medio diario y la excreción de heces (P=0.013 y 0.014, respectivamente), observándose una tendencia (P=0.061) en la digestibilidad. La edad afectó (P<0.001) a todos estos factores, incrementándose de manera más evidente la excreción que la ingestión de materia seca en la primera semana de vida, para aumentar de forma paralela a partir de la segunda. La correlación entre el consumo medio diario fue mayor con la excreción de heces del mismo día que con la del día siguiente, por lo que se utilizó el primero para la determinación de la digestibilidad de la MS (MSd). La MSd disminuyó de manera lineal hasta los 32 días de edad (2.17±0.25 unidades porcentuales por día), mientras que permaneció constante desde los 32 a los 40 días (69.4±0.47%). Por otro lado, la desviación estándar de la MSd se redujo cuando se incrementó el período de recogida de 2 a 6 días en un 54%. Conforme a los resultados obtenidos, se puede concluir que no es aconsejable comenzar las pruebas de digestibilidad antes de los 32 días de edad y que el número de animales necesario para detectar diferencias significativas entre tratamientos dependerá del período de recogida de heces. ABSTRACT The global aim of this thesis has been to study the effect of dietary carbohydrates on growth, performance, digestion and intestinal barrier in 25-d weaned rabbits. In addition there has also been studied which is the best period to determine the fecal digestibility after weaning. The first experiment focused on the effect of Neutral Detergent Soluble Fibre (NDSF) on gut barrier function, digestion, intestinal microbiota and growth performance n rabbits in the post-weaning period. Three isonutritive diets which only varied in the levels of soluble fiber were formulated such as it described as follows: a control diet (AH) containing 103 g of neutral detergent soluble fiber, including alfalfa as main source of fiber, was replaced by a mixture of beet and apple pulp (75-25) in the B-AP diet and, by a mix of oat hulls and soybean protein concentrate (88:12) in the OH diet, resulting 131 and 79 g of NDFS/kg of dry matter, respectively. Rabbits, weaned at 25 days of age, were fed the experimental diets up to 35 days of age, moment in which they were slaughtered for apparent ileal digestibility (AID) of dry matter (DM), crude protein (CP) and starch, mucosa morphology, sucrose activity, characterization of lamina propria lymphocytes and intestinal microbiota. To assess mucosal morphology, 19 suckling 35-d-old rabbits were also used. For mortality study, besides these animals, 118 additional rabbits per treatment were fed the experimental diets for two weeks period and thereafter received a commercial diet until 60 days of age. Rabbits were water medicated during the whole experimental period (100 ppm de apramicine sulphate and 120 ppm of tylosine tartrate). Level of soluble fiber improved all the parameters used for the characterization of the intestinal barrier condition. Villous height of the jejunal mucosa increased with dietary soluble fiber (P=0.001). Villous height of jejunal mucosa increased with dietary soluble fiber (P = 0.001). Rabbits fed the highest level of soluble fiber (BA-P diet) showed the highest villous height/crypth depth ratio (8.14; P = 0.001), sucrase specific activity (8671 μmol glucose/ g protein; P = 0.019), and the greatest ileal starch digestibility (96.8%; P = 0.002). The opposite effects were observed in rabbits fed decreased levels of soluble fiber (AH and OH diets; 4.70, 5,848 μmol of glucose/g of protein, as average, respectively). The lowest ileal starch digestibility was detected for animal fed OH diet (93.2%). Suckling rabbits of the same age showed a lower villous height/crypt depth ratio (6.70) compared with the B-AP diet group, but this ration was higher that the AH or OH diet groups. Lower levels of soluble fiber tended (P = 0.074) to increase the cellular immune response (CD8+ lymphocytes). Diet affected IL-2 production (CD25+, P = 0.029; CD5+CD25+, P = 0.057), with no clear relationship between soluble fiber and IL-2. The intestinal microbiota biodiversity was not affected by diets (P ≥ 0.38). Animals fed B-AP and AH diets had a reduced cecal frequency of detection compatible with Campylobacter spp. (20.3 vs. 37.8, P = 0.074), and Clostridium perfringens (4.3 vs. 17.6%, P = 0.047), compared with the OH diet group. Moreover, the mortality rates decreased from 14.4 (OH diet) to 5.1% (B-AP diet) with the increased presence of soluble fiber in the diet. Between 32 and 35 days of age, faecal apparent digestibility of dry matter (DM), gross energy (GE), crude protein (CP), neutral detergent fiber (NDF), acid detergent fiber (ADF) and starch was determined (14/diet). This group, plus another nine rabbits/diet were used to determine weight of stomach and caecum and their contents, cecal fermentation traits and similarity rate (SR) of intestinal microbiota. Besides, growth performance parameters (35 rabbits/diet) were studied during the whole fattening period, in animals consuming the experimental feed after the weaning up to 35 days of age and later on a commercial diet up animals reached 60 days of age. Increasing levels of Neutral Detergent Soluble Fiber improved faecal dry matter and energy digestibility (P<0.001). NDSF inclusion improved linearly weight of the caecal content (P=0.001) and the total gastrointestinal tract (P=0.008), and in the previous days to slaughter a linear decrease of daily feed intake in diet with highest level of soluble fiber was also observed. Stomach pH decreased linearly with increasing levels of NDFS (P≤0.041). No relation between NDSF level on pH, concentration and molar proportion of VFA was found. Treatments appeared to influence the similarity rate of microbiota, even higher to mother effect. These effects were higher in ileum than in caecum. A linear positive effect of feed efficiency was observed, which increased around 12% in the two weeks post-weaning (25-39d) and 3% in the whole fattening period between extreme diets with highest levels of soluble fiber. Average daily feed intake during the two weeks after weaning and in the whole fattening period, tended (P≤0.079) to increase with highest levels of NDSF; although there were no effect on daily weight gain (≥0.15). In conclusion, an increase of soluble fiber in the feed seems to be beneficial for animal health, due to improve mucose integrity and reduce detection frequency of those poten tial pathogens like C. perfringens and Campylobacter spp. According to these results, level of soluble fiber should be taking care in feed rabbit formulation in the post-weaning period. The objective of the second experiment was to determine the effect of source of starch on digestion, intestinal microbiota and growth performance in twenty-five-day old weaned rabbits. To accomplish with this aim three iso-nutritive diets were formulated with different source of starch: raw wheat, boiled wheat and a combination of boiled wheat and boiled rice. Two groups of 99 and 193 rabbits were weaned at 25 days of age. The first group was used for growth performance determination following the same protocol than in previous experiment. The second group was used to determine faecal digestibility from 32 to 35 d, apparent ileal digestibility (AID) at 35 d, jejunal mucosa morphology, caecal fermentation traits and characterization of intestinal microbiota. For mortality, two additional groups of 384 (medicated) and 177 (not medicated) were used in order to study the effect of antibiotic water supply supplementation. Heat processing of starch slightly improved ileal digestibility of starch (P=0.020) but did not modify the flow of starch to the caecum. An increase in frequency of detection of Campylobacter spp. y Ruminococcus spp. was observed in the caecum (P≤0.023), with no changes at ileal level. Heat processing of wheat did not modify growth performance, mortality, ileal or faecal digestibility and mucosa morphology. Partial substitution of boiled wheat for boiled rice in the diet impaired ileal starch digestibility (P=0.020) and increased the ileal flow of this nutrient to the caecum (P=0.007). However, it did not affect mortality rate, although changes in the ileal and caecal intestinal microbiota were detected, decreasing the frequency of detection of Campylobacter spp. (both ileum and caecum), Helicobacter spp. (at ileum) and Ruminococcus spp (at caecum) and increasing the Bacteroides spp. (at caecum) (P≤0.046). The effect of boiled rice supplementation did not alter growth performance, mortality, ileal or faecal digestibility of other nutrients than starch, and mucosa morphology. Medication of rabbits reduced the ileal frequency of detection of most bacteria studied (P≤0.048), especially for Campylobacter spp., Clostridium perfringens y Propionibacterium spp. (P≤0.048), resulting the effect higher at ileal than caecal level and relating it with a strong reduction of mortality rate (P<0.001). In conclusion, the results of this experiment make think that the source of starch affects the intestinal microbiota but they do not seem to influence animal health. In relation to the effect of heat processed the use of cooked wheat or cooked rice it does not seem to im prove the results obtained with hard wheat, but there would be necessary more experiments that were confirming this point. The last experiment focused on a methodological aspect. Considering that, weaned rabbits have a different digestive pattern than older animals due to their digestive immaturity; the fixed objective was to determine the best procedure for faecal digestibility determination in young rabbits in the post-weaning period. Fifteen rabbits from 5 different litters were weaned at 25 days of age and fed with a commercial feed. Feed intake and faeces excretion were recorded daily from 25 to 40 days of age for dry matter digestibility (DMd) determination. Litter affected daily DM intake and excretion (P=0.013 y 0.014, respectively) and tended to affect DMd (P=0.061). Age affected all these factors (P<0.001), but ingestion increased slowly than dry matter excretion during the first week buth they evolved similarly in the second week. The correlation between daily feed intakes was higher with the faeces excretion of the day than with faeces excretion of the next day, and the first values were used to determine daily DMd. The DMd decreased linearly from weaning to 32 d of age (2.17±0.25 percentage units per day), whereas from 32 to 40 d remained constant (69.4±0.47%). On the other hand, average standard deviation of DMd decreased by 54% when the length of collection period increased from 2 to 6d. Consequently to the obtained results, it could be concluded that it would not be advisable to start digestibility trials before the 32 days of age and that the number of animals required to detect a significant difference among means would depend on the collection period.

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Un porcentaje importante de las pérdidas de la producción agrícola se deben a las enfermedades que causan en los cultivos los hongos necrótrofos y vasculares. Para mejorar la productividad agrícola es necesario tener un conocimiento detallado de las bases genéticas y moleculares que regulan la resistencia de las plantas a este tipo de patógenos. En Arabidopsis thaliana la resistencia frente a patógenos necrótrofos, como el hongo Plectosphaerella cucumerina BMM (PcBMM), es genéticamente compleja y depende de la activación coordinada de distintas rutas de señalización, como las reguladas por las hormonas ácido salicílico (SA), ácido jasmónico (JA), etileno (ET) y ácido abscísico (ABA), así como de la síntesis de compuestos antimicrobianos derivados del Triptófano y de la integridad de la pared celular (Llorente et al., 2005, Hernández-Blanco et al., 2007; Delgado-Cerezo et al., 2012). Uno de los componentes claves en la regulación de la resistencia de las plantas a patógenos (incluidos hongos necrótrofos y biótrofos) es la proteína G heterotrimérica, un complejo proteico formado por tres subunidades (Gα, Gβ y Gγ), que también regula distintos procesos del desarrollo vegetal. En Arabidopsis hay un gen que codifica para la subunidad α (GPA1), otro para la β (AGB1), y tres genes para la subunidad γ (AGG1, AGG2 y AGG3). El complejo GPA1-AGB1-AGG (1-3) se activa y disocia tras la percepción de una señal específica, actuando el dímero AGB1-AGG1/2 como un monómero funcional que regula las respuestas de defensa (Delgado-Cerezo et al., 2012). Estudios transcriptómicos y análisis bioquímicos de la pared celular en los que se comparaban los mutantes agb1-2 y agg1 agg2, y plantas silvestres (Col-0) revelaron que la resistencia mediada por Gβ-Gγ1/2 no es dependiente de rutas de defensa previamente caracterizadas, y sugieren que la proteína G podría modular la composición/estructura (integridad) de la pared celular (Delgado-Cerezo et al., 2012). Recientemente, se ha demostrado que AGB1 es un componente fundamental de la respuesta inmune mediada por Pathogen- Associated Molecular Patterns (PTI), ya que los mutantes agb1-2 son incapaces de activar tras el tratamiento con PAMPs respuestas de inmunidad, como la producción de especies reactivas de oxígeno (ROS; Liu et al., 2013). Dada la importancia de la proteína G heterotrimérica en la regulación de la respuestas de defensa (incluida la PTI) realizamos un escrutinio de mutantes supresores de la susceptibilidad de agb1-2 al hongo necrótrofo, PcBMM, para identificar componentes adicionales de las rutas de señalización reguladas por AGB1. En este escrutinio se aislaron cuatro mutantes sgb (suppressors of agb1-2 susceptibility to pathogens), dos de los cuales, sgb10 y sgb11, se han caracterizado en la presente Tesis Doctoral. El mutante sgb10 es un segundo alelo nulo del gen MKP1 (At3g55270) que codifica la MAP quinasa-fosfatasa 1 (Bartels et al., 2009). Este mutante presenta lesiones espontáneas en plantas adultas y una activación constitutiva de las principales rutas de defensa (SA, JA y ET, y de metabolitos secundarios, como la camalexina), que explicaría su elevada resistencia a PcBMM y Pseudomonas syringae. Estudios epistáticos sugieren que la resistencia mediada por SGB10 no es dependiente, si no complementaria a la regulada por AGB1. El mutante sgb10 es capaz de restablecer en agb1-2 la producción de ROS y otras respuestas PTI (fosforilación de las MAPK6/3/4/11) tras el tratamiento con PAMPs tan diversos como flg22, elf18 y quitina, lo que demuestra el papel relevante de SGB10/MKP1 y de AGB1 en PTI. El mutante sgb11 se caracteriza por presentar un fenotipo similar a los mutantes irregular xylem (e.g. irx1) afectado en pared celular secundaria: irregularidades en las células xilemáticas, reducción en el tamaño de la roseta y altura de planta, y hojas con un mayor contenido de clorofila. La resistencia de sgb11 a PcBMM es independiente de agb1-2, ya que la susceptibilidad del doble mutante sgb11 agb1-2 es intermedia entre la de agb1-2 y sgb11. El mutante sgb11 no revierte la deficiente PTI de agb1-2 tras el tratamiento con flg22, lo que indica que está alterado en una ruta distinta de la regulada por SGB10. sgb11 presenta una sobreactivación de la ruta del ácido abscísico (ABA), lo que podría explicar su resistencia a PcBMM. La mutación sgb11 ha sido cartografiada en el cromosoma III de Arabidopsis entre los marcadores AthFUS6 (81,64cM) y nga6 (86,41cM) en un intervalo de aproximadamente 200 kb, que comprende genes, entre los que no se encuentra ninguno previamente descrito como IRX. El aislamiento y caracterización de SGB11 apoya la relevancia de la proteína G heterotrimérica en la regulación de la interconexión entre integridad de la pared celular e inmunidad. ABSTRACT A significant percentage of agricultural losses are due to diseases caused by necrotrophic and vascular fungi. To enhance crop yields is necessary to have a detailed knowledge of the genetic and molecular bases regulating plant resistance to these pathogens. Arabidopsis thaliana resistance to necrotrophic pathogens, such as Plectosphaerella cucumerina BMM (PcBMM) fungus, is genetically complex and depends on the coordinated activation of various signaling pathways. These include those regulated by salicylic acid (SA), jasmonic acid (JA), ethylene (ET) and abscisic acid (ABA) hormones and the synthesis of tryptophan-derived antimicrobial compounds and cell wall integrity (Llorente et al., 2005, Hernández-Blanco et al., 2007; Delgado-Cerezo et al., 2012). One key component in the regulation of plant resistance to pathogens (including biotrophic and necrotrophic fungi) is the heterotrimeric G-protein. This protein complex is formed by three subunits (Gα, Gβ and Gγ), which also regulates various plant developmental processes. In Arabidopsis only one gene encodes for subunits α (GPA1) and β (AGB1), and three genes for subunit γ (AGG1, AGG2 y AGG3). The complex GPA1- AGB1-AGG(1-3) is activated and dissociates after perception of an specific signal, AGB1- AGG1/2 acts as a functional monomer regulating defense responses (Delgado-Cerezo et al., 2012). Comparative transcriptomic studies and biochemical analyses of the cell wall of agb1-2 and agg1agg2 mutant and wild plants (Col-0), showed that Gβ-Gγ1/2-mediated resistance is not dependent on previously characterized defense pathways. In addition, it suggests that G protein may modulate the composition/structure (integrity) of the plant cell wall (Delgado-Cerezo et al., 2012). Recently, it has been shown that AGB1 is a critical component of the immune response mediated by Pathogen-Associated Molecular Patterns (PTI), as agb1-2 mutants are unable to activate immune responses such as oxygen reactive species (ROS) production after PAMPs treatment (Liu et al., 2013). Considering the importance of the heterotrimeric G protein in regulation of defense responses (including PTI), we performed a screening for suppressors of agb1-2 susceptibility to the necrotrophic fungus PcBMM. This would allow the identification of additional components of the signaling pathways regulated by AGB1. In this search four sgb mutants (suppressors of agb1-2 susceptibility to pathogens) were isolated, two of which, sgb10 and sgb11, have been characterized in this PhD thesis. sgb10 mutant is a second null allele of MKP1 gene (At3g55270), which encodes the MAP kinase-phosphatase 1 (Bartels et al., 2009). This mutant exhibits spontaneous lesions in adult plants and a constitutive activation of the main defense pathways (SA, JA and ET, and secondary metabolites, such as camalexin), which explains its high resistance to Pseudomonas syringae and PcBMM. Epistatic studies suggest that SGB10- mediated resistance is not dependent, but complementary to the regulated by AGB1. The sgb10 mutant is able to restore agb1-2 ROS production and other PTI responses (MAPK6/3/4/11 phosphorylation) upon treatment with PAMPs as diverse as, flg22, elf18 and chitin, demonstrating the relevant role of SGB10/MKP1 and AGB1 in PTI. sgb11 mutant is characterized by showing a similar phenotype to irregular xylem mutants (e.g. irx1), affected in secondary cell wall: irregular xylems cells, rosette size reduction and plant height, and higher chlorophyll content on leaves. The resistance of sgb11 to PcBMM is independent of agb1-2, as susceptibility of the double mutant agb1-2sgb11 is intermediate between agb1-2 and sgb11. The sgb11 mutant does not revert the deficient PTI response in agb1-2 after flg22 treatment, indicating that is altered in a pathway different to the one regulated by SGB10. sgb11 presents an over-activation of the abscisic acid pathway (ABA), which could explain its resistance to PcBMM. The sgb11 mutation has been mapped on chromosome III of Arabidopsis, between AthFUS6 (81.64 cM) and nga6 (86.41 cM) markers, in 200 kb interval, which does not include previously known IRX genes. The isolation and characterization of SGB11 supports the importance of heterotrimeric G protein in the regulation of the interconnection between the cell wall integrity and immunity.

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Imprinted genes tend to occur in clusters. We have identified a cluster in distal mouse chromosome (Chr) 2, known from early genetic studies to contain both maternally and paternally imprinted, but unspecified, genes. Subsequently, one was identified as Gnas, which encodes a G protein α subunit, and there is clinical and biochemical evidence that the human homologue GNAS1, mutated in patients with Albright hereditary osteodystrophy, is also imprinted. We have used representational difference analysis, based on parent-of-origin methylation differences, to isolate candidate imprinted genes in distal Chr 2 and found two oppositely imprinted genes, Gnasxl and Nesp. Gnasxl determines a variant G protein α subunit associated with the trans-Golgi network and Nesp encodes a secreted protein of neuroendocrine tissues. Gnasxl is maternally methylated in genomic DNA and encodes a paternal-specific transcript, whereas Nesp is paternally methylated with maternal-specific expression. Their reciprocal imprinting may offer insight into the distal Chr 2 imprinting phenotypes. Remarkably, Gnasxl, Nesp, and Gnas are all part of the same transcription unit; transcripts for Gnasxl and Nesp are alternatively spliced onto exon 2 of Gnas. This demonstrates an imprinting mechanism in which two oppositely imprinted genes share the same downstream exons.

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Heterotrimeric G proteins and tyrosine kinases are two major cellular signal transducers. Although G proteins are known to activate tyrosine kinases, the activation mechanism is not clear. Here, we demonstrate that G protein Gqα binds directly to the nonreceptor Bruton’s tyrosine kinase (Btk) to a region composed of a Tec-homology (TH) domain and a sarcoma virus tyrosine kinase (Src)-homology 3 (SH3) domain both in vitro and in vivo. Only active GTP-bound Gqα, not inactive GDP-bound Gqα, can bind to Btk. Mutations of Btk that disrupt its ability to bind Gqα also eliminate Btk stimulation by Gqα, suggesting that this interaction is important for Btk activation. Remarkably, the structure of this TH (including a proline-rich sequence) -SH3 fragment of the Btk family of tyrosine kinases shows an intramolecular interaction. Furthermore, the crystal structure of the Src family of tyrosine kinases reveals that the intramolecular interaction of SH3 and its ligand is the major determining factor keeping the kinase inactive. Thus, we propose an activation model that entails binding of Gqα to the TH-SH3 region, thereby disrupting the TH-SH3 intramolecular interaction and activating Btk.

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Using the full-length and two engineered soluble forms (C1-C2 and Cla-C2) of type V adenylyl cyclase (ACV), we have investigated the role of an intramolecular interaction in ACV that modulates the ability of the α subunit of the stimulatory GTP-binding protein of AC (Gsα) to stimulate enzyme activity. Concentrationresponse curves with Gsα suggested the presence of high and low affinity sites on ACV, which interact with the G protein. Activation of enzyme by Gsα interaction at these two sites was most apparent in the C1a-C2 form of ACV, which lacks the C1b region (K572F683). Yeast two-hybrid data demonstrated that the C1b region interacted with the C2 region and its 64-aa subdomain, C2I. Using peptides corresponding to the C2I region of ACV, we investigated the role of the C1b/C2I interaction on Gsα-mediated stimulation of C1-C2 and full-length ACV. Our data demonstrate that a 10-aa peptide corresponding to L1042T1051 alters the profile of the activation curves of full-length and C1-C2 forms of ACV by different Gsα concentrations to mimic the activation profile observed with C1a-C2 ACV. The various peptides used in our studies did not alter forskolin-mediated stimulation of full-length and C1-C2 forms of ACV. We conclude that the C1b region of ACV interacts with the 10-aa region (L1042T1051) in the C2 domain of the enzyme to modulate Gsα-elicited stimulation of activity.

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We previously demonstrated that α1B-adrenergic receptor (AR) gene transcription, mRNA, and functionally coupled receptors increase during 3% O2 exposure in aorta, but not in vena cava smooth muscle cells (SMC). We report here that α1BAR mRNA also increases during hypoxia in liver and lung, but not heart and kidney. A single 2.7-kb α1BAR mRNA was detected in aorta and vena cava during normoxia and hypoxia. The α1BAR 5′ flanking region was sequenced to −2,460 (relative to ATG +1). Transient transfection experiments identify the minimal promoter region between −270 and −143 and sequence between −270 and −248 that are required for transcription of the α1BAR gene in aorta and vena cava SMC during normoxia and hypoxia. An ATTAAA motif within this sequence specifically binds aorta, vena cava, and DDT1MF-2 nuclear proteins, and transcription primarily initiates downstream of this motif at approximately −160 in aorta SMC. Sequence between −837 and −273 conferred strong hypoxic induction of transcription in aorta, but not in vena cava SMC, whereas the cis-element for the transcription factor, hypoxia-inducible factor 1, conferred hypoxia-induced transcription in both aorta and vena cava SMC. These data identify sequence required for transcription of the α1BAR gene in vascular SMC and suggest the atypical TATA-box, ATTAAA, may mediate this transcription. Hypoxia-sensitive regions of the α1BAR gene also were identified that may confer the differential hypoxic increase in α1BAR gene transcription in aorta, but not in vena cava SMC.

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Spectrin (βIΣ∗) and ankyrin (AnkG119) associate with Golgi membranes and the dynactin complex, but their role in vesicle trafficking remains uncertain. We find that the actin-binding domain and membrane-association domain 1 (MAD1) of βI spectrin together form a constitutive Golgi targeting signal in transfected MDCK cells. Expression of this signal in transfected cells disrupts the endogenous Golgi spectrin skeleton and blocks transport of α- and β-Na,K-ATPase and vesicular stomatitis virus-G protein from the endoplasmic reticulum (ER) but does not disrupt the formation of Golgi stacks, the distribution of β-COP, or the transport and surface display of E-cadherin. The Golgi spectrin skeleton is thus required for the transport of a subset of membrane proteins from the ER to the Golgi. We postulate that together with polyfunctional adapter proteins such as AnkG119, Golgi spectrin forms a docking complex that acts prior to the cis-Golgi, presumably with vesiculartubular clusters (VTCs or ERGIC), to sequester specific membrane proteins into vesicles transiting between the ER and Golgi, and subsequently (probably involving other isoforms of spectrin and ankyrin) to mediate cargo transport within the Golgi and to other membrane compartments. We hypothesize that this vesicular spectrinankyrin adapter-protein trafficking (or tethering) system (SAATS) mediates the capture and transport of many membrane proteins and acts in conjunction with vesicle-targeting molecules to effect the efficient transport of cargo proteins.

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Ras proteins, key regulators of growth, differentiation, and malignant transformation, recently have been implicated in synaptic function and region-specific learning and memory functions in the brain. Rap proteins, members of the Ras small G protein superfamily, can inhibit Ras signaling through the Ras/Raf-1/mitogen-activated protein (MAP) kinase pathway or, through B-Raf, can activate MAP kinase. Rap and Ras proteins both can be activated through guanine nucleotide exchange factors (GEFs). Many Ras GEFs, but to date only one Rap GEF, have been identified. We now report the cloning of a brain-enriched gene, CalDAG-GEFI, which has substrate specificity for Rap1A, dual binding domains for calcium (Ca2+) and diacylglycerol (DAG), and enriched expression in brain basal ganglia pathways and their axon-terminal regions. Expression of CalDAG-GEFI activates Rap1A and inhibits Ras-dependent activation of the Erk/MAP kinase cascade in 293T cells. Ca2+ ionophore and phorbol ester strongly and additively enhance this Rap1A activation. By contrast, CalDAG-GEFII, a second CalDAG-GEF family member that we cloned and found identical to RasGRP [Ebinu, J. O., Bottorff, D. A., Chan, E. Y. W., Stang, S. L., Dunn, R. J. & Stone, J. C. (1998) Science 280, 10821088], exhibits a different brain expression pattern and fails to activate Rap1A, but activates H-Ras, R-Ras, and the Erk/MAP kinase cascade under Ca2+ and DAG modulation. We propose that CalDAG-GEF proteins have a critical neuronal function in determining the relative activation of Ras and Rap1 signaling induced by Ca2+ and DAG mobilization. The expression of CalDAG-GEFI and CalDAG-GEFII in hematopoietic organs suggests that such control may have broad significance in Ras/Rap regulation of normal and malignant states.

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RGS (regulators of G protein signaling) proteins are GTPase activating proteins that inhibit signaling by heterotrimeric G proteins. All RGS proteins studied to date act on members of the Giα family, but not Gsα or G12α. RGS4 regulates Giα family members and Gqα. RGS2 (G0S8) is exceptional because the G proteins it regulates have not been identified. We report that RGS2 is a selective and potent inhibitor of Gqα function. RGS2 selectively binds Gqα, but not other Gα proteins (Gi, Go, Gs, G12/13) in brain membranes; RGS4 binds Gqα and Giα family members. RGS2 binds purified recombinant Gqα, but not Goα, whereas RGS4 binds either. RGS2 does not stimulate the GTPase activities of Gsα or Giα family members, even at a protein concentration 3000-fold higher than is sufficient to observe effects of RGS4 on Giα family members. In contrast, RGS2 and RGS4 completely inhibit Gq-directed activation of phospholipase C in cell membranes. When reconstituted with phospholipid vesicles, RGS2 is 10-fold more potent than RGS4 in blocking Gqα-directed activation of phospholipase Cβ1. These results identify a clear physiological role for RGS2, and describe the first example of an RGS protein that is a selective inhibitor of Gqα function.

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We have tested the impact of tags on the structure and function of indirect flight muscle (IFM)-specific Act88F actin by transforming mutant Drosophila melanogaster, which do not express endogenous actin in their IFMs, with tagged Act88F constructs. Epitope tagging is often the method of choice to monitor the fate of a protein when a specific antibody is not available. Studies addressing the functional significance of the closely related actin isoforms rely almost exclusively on tagged exogenous actin, because only few antibodies exist that can discriminate between isoforms. Thereby it is widely presumed that the tag does not significantly interfere with protein function. However, in most studies the tagged actin is expressed in a background of endogenous actin and, as a rule, represents only a minor fraction of the total actin. The Act88F gene encodes the only Drosophila actin isoform exclusively expressed in the highly ordered IFM. Null mutations in this gene do not affect viability, but phenotypic effects in transformants can be directly attributed to the transgene. Transgenic flies that express Act88F with either a 6x histidine tag or an 11-residue peptide derived from vesicular stomatitis virus G protein at the C terminus were flightless. Overall, the ultrastructure of the IFM resembled that of the Act88F null mutant, and only low amounts of C-terminally tagged actins were found. In contrast, expression of N-terminally tagged Act88F at amounts comparable with that of wild-type flies yielded fairly normal-looking myofibrils and partially reconstituted flight ability in the transformants. Our findings suggest that the N terminus of actin is less sensitive to modifications than the C terminus, because it can be tagged and still polymerize into functional thin filaments.

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The function of the small-Mr Ras-like GTPase Rap1 remains largely unknown, but this protein has been demonstrated to regulate cortical actin-based morphologic changes in Dictyostelium and the oxidative burst in mammalian neutrophils. To test whether Rap1 regulates phagocytosis, we biochemically analyzed cell lines that conditionally and modestly overexpressed wild-type [Rap1 WT(+)], constitutively active [Rap1 G12T(+)], and dominant negative [Rap1 S17N(+)] forms of D. discoideum Rap1. The rates of phagocytosis of bacteria and latex beads were significantly higher in Rap1 WT(+) and Rap1 G12T(+) cells and were reduced in Rap1 S17N(+) cells. The addition of inhibitors of protein kinase A, protein kinase G, protein tyrosine kinase, or phosphatidylinositide 3-kinase did not affect phagocytosis rates in wild-type cells. In contrast, the addition of U73122 (a phospholipase C inhibitor), calphostin C (a protein kinase C inhibitor), and BAPTA-AM (an intracellular Ca2+ chelator) reduced phagocytosis rates by 90, 50, and 65%, respectively, suggesting both arms of the phospholipase C signaling pathways played a role in this process. Other protein kinase Cspecific inhibitors, such as chelerythrine and bisindolylmaleimide I, did not reduce phagocytosis rates in control cells, suggesting calphostin C was affecting phagocytosis by interfering with a protein containing a diacylglycerol-binding domain. The addition of calphostin C did not reduce phagocytosis rates in Rap1 G12T(+) cells, suggesting that the putative diacylglycerol-binding protein acted upstream in a signaling pathway with Rap1. Surprisingly, macropinocytosis was significantly reduced in Rap1 WT(+) and Rap1 G12T(+) cells compared with control cells. Together our results suggest that Rap1 and Ca2+ may act together to coordinate important early events regulating phagocytosis.

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The rab11 GTPase has been localized to both the Golgi and recycling endosomes; however, its Golgi-associated function has remained obscure. In this study, rab11 function in exocytic transport was analyzed by using two independent means to perturb its activity. First, expression of the dominant interfering rab11S25N mutant protein led to a significant inhibition of the cell surface transport of vesicular stomatitis virus (VSV) G protein and caused VSV G protein to accumulate in the Golgi. On the other hand, the expression of wild-type rab11 or the activating rab11Q70L mutant had no adverse effect on VSV G transport. Next, the membrane association of rab11, which is crucial for its function, was perturbed by modest increases in GDP dissociation inhibitor (GDI) levels. This led to selective inhibition of the trans-Golgi network to cell surface delivery, whereas endoplasmic reticulumtoGolgi and intra-Golgi transport were largely unaffected. The transport inhibition was reversed specifically by coexpression of wild-type rab11 with GDI. Under the same conditions two other exocytic rab proteins, rab2 and rab8, remained membrane bound, and the transport steps regulated by these rab proteins were unaffected. Neither mutant rab11S25N nor GDI overexpression had any impact on the cell surface delivery of influenza hemagglutinin. These data show that functional rab11 is critical for the export of a basolateral marker but not an apical marker from the trans-Golgi network and pinpoint rab11 as a sensitive target for inhibition by excess GDI.