917 resultados para Glucose-6-phosphate dehydrogenase
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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O objetivo desse trabalho foi analisar a ativação e o crescimento de folículos préantrais de Sapajus apella, submetidos a um sistema de cultivo in vitro em curto-prazo. Nesse sentido, dois experimentos foram realizados neste trabalho. Experimento I: exposição à fresco e à crioprotetores de biopsias de fragmentos do córtex ovariano. Ambos os fragmentos ovarianos foram submetidos à extração total de RNA e síntese de cDNA. Após a amplificação do cDNA por PCR em tempo-real (RT-PCR), os software GeNorm, bestkeeper e Normfinder foram usados para avaliar a estabilidade dos genes GAPDH (glyceraldehyde-2-phosphate dehydrogenase), HPRT1 (hypoxanthine phosphoribosyltransferase 1) e TBP (TATA-binding protein). Experimento II: o tecido do córtex ovariano de quatro fêmeas foi oletado e dividido em nove pedaços de 1 mm³. Um fragmento ovariano (grupo controle) foi imediatamente dividido em dois pedaços, os quais foram destinados para análise da viabilidade ou por RT-PCR. Os 8 fragmentos restantes foram individualmente cultivados in vitro em um meio constituído de TCM suplementado com 100 ng/mL EGF (T1), com adição de 10 μM de BME (T2), 100 ng/mL de BMP4 (T3), 25 IU de PMSG (T4), 10 μM de BME e 100 ng/mL de BMP4 (T5), 10 μM de BME, 25 IU de PMSG (T6), 100 ng/mL de BMP4, 25 IU de PMSG (T7) ou 10 μM de BME, 100 ng/mL de BMP4, 25 IU de PMSG (T8). Os resultados demonstraram que no tecido do córtex ovariano de S. apella, os genes HPRT1 e TBP foram os mais apropriados como genes de referência, podendo ser usados como parâmetro para normalizar dados em estudos futuros. Ao contrário, o GAPDH se apresentou como menos estável dos genes de referencia testados. Após o cultivo in vitro, todos os tratamentos alcançaram percentuais similares da viabilidade de folículos pré-antrais. O tecido ovariano cultivado na presença de GF+BME/BMP4/PMSG resultou no aumento da taxa de ativação e crescimento folicular, assim como no aumento da expressão de AMH, BMP15 e GDF9, genes conhecidos como indicadores específicos de desenvolvimento folicular. Dessa forma, o HPRT1 e TBP são os genes de referência mais estáveis, na exposição à crioprotetores, a fresco e no o cultivo de tecidos de córtex ovariano de S. apella. Os folículos pré-antrais são capazes de desenvolverem-se in vitro quando cultivados em meio suplementado com PMSG, BME e BMP4. A viabilidade folicular, entretanto, permaneceu independentemente do meio de cultivo in vitro e o uso de fatores de crescimento, como marcadores de desenvolvimento folicular, foi crucial para identificar o melhor meio de cultivo in vitro.
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Gastrointestinal (GI) problems are a common concern of athletes during intense exercise. Ultimately, these symptoms can impair performance and possibly prevent athletes from winning or even finishing a race. The main causes of GI problems during exercise are mechanical, ischemic and nutritional factors. Among the nutritional factors, a high intake of carbohydrate and hyperosmolar solutions increases GI problems. A number of nutritional manipulations have been proposed to minimize gastrointestinal symptoms, including the use of multiple transportable carbohydrates. This type of CHO intake increases the oxidation rates and can prevent the accumulation of carbohydrate in the intestine. Glucose (6%) or glucose plus fructose (8%-10%) beverages are recommended in order to increase CHO intake while avoiding the gastric emptying delay. Training the gut with high intake of CHO may increase absorption capacity and probably prevent GI distress. CHO mouth rinse may be a good strategy to enhance performance without using GI tract in exercises lasting less than an hour. Future strategies should be investigated comparing different CHO types, doses, and concentration in exercises with the same characteristics.
Diversidade de populações de Phyllosticta spp. de goiabeiras e de mangueiras em diferentes ambientes
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Pós-graduação em Agronomia (Produção Vegetal) - FCAV
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Paracoccidioides species are dimorphic fungi and are the etiologic agents of paracoccidioidomycosis, which is a serious disease that involves multiple organs. The many tissues colonized by this fungus suggest a variety of surface molecules involved in adhesion. A surprising finding is that most enzymes in the glycolytic pathway, tricarboxylic acid (TCA) cycle and glyoxylate cycle in Paracoccidioides spp. have adhesive properties that aid in interacting with the host extracellular matrix and thus act as 'moonlighting'proteins. Moonlighting proteins have multiple functions, which adds a dimension to cellular complexity and benefit cells in several ways. This phenomenon occurs in both eukaryotes and prokaryotes. For example, moonlighting proteins from the glycolytic pathway or TCA cycle can play a role in bacterial pathogenesis by either acting as proteins secreted in a conventional pathway and/or as cell surface components that facilitate adhesion or adherence. This review outlines the multifunctionality exhibited by many Paracoccidioides spp. enzymes, including aconitase, aldolase, glyceraldehyde-3-phosphate dehydrogenase, isocitratelyase, malatesynthase, triose phosphate isomerase, fumarase, and enolase. We discuss the roles that moonlighting activities play in the virulence characteristics of this fungus and several other human pathogens during their interactions with the host.
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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In Leishmania, de novo polyamine synthesis is initiated by the cleavage of L-arginine to urea and L-ornithine by the action of arginase (ARG, E.C. 3.5.3.1). Previous studies in L. major and L. mexicana showed that ARG is essential for in vitro growth in the absence of polyamines and needed for full infectivity in animal infections. The ARG protein is normally found within the parasite glycosome, and here we examined whether this localization is required for survival and infectivity. First, the localization of L. amazonensis ARG in the glycosome was confirmed in both the promastigote and amastigote stages. As in other species, arg(-) L. amazonensis required putrescine for growth and presented an attenuated infectivity. Restoration of a wild type ARG to the arg(-) mutant restored ARG expression, growth and infectivity. In contrast, restoration of a cytosol-targeted ARG lacking the glycosomal SKL targeting sequence (arg Delta SKL) restored growth but failed to restore infectivity. Further study showed that the ARG Delta SKL protein was found in the cytosol as expected, but at very low levels. Our results indicate that the proper compartmentalization of L. amazonensis arginase in the glycosome is important for enzyme activity and optimal infectivity. Our conjecture is that parasite arginase participates in a complex equilibrium that defines the fate of L-arginine and that its proper subcellular location may be essential for this physiological orchestration.
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Lactobacillus sakei 1 is a food isolate that produces a heat-stable antimicrobial peptide (sakacin 1, a class ha bacteriocin) inhibitory to the opportunistic pathogen Listeria monocytogenes. Bacterial isolates with antimicrobial activity may be useful for food biopreservation and also for developing probiotics. To evaluate the probiotic potential of L. sakei I, it was tested for (i) in vitro gastric resistance (with synthetic gastric juice adjusted to pH 2.0, 2.5, or 3.0); (ii) survival and bacteriocin production in the presence of bile salts and commercial prebiotics (inulin and oligofructose); (iii) adhesion to Caco-2 cells; and (iv) effect on the adhesion of L. monocytogenes to Caco-2 cells and invasion of these cells by the organism. The results showed that L. sakei I survival in gastric environment varied according to pH, with the maximum survival achieved at pH 3.0, despite a 4-log reduction of the population after 3 h. Regarding the bile salt tolerance and influence of prebiotics, it was observed that L. sakei 1 survival rates were similar (P > 0.05) for all de Man Rogosa Shame (MRS) broth formulations when tests were done after 4 h of incubation. However, after incubation for 24 h, the survival of L. sakei 1 in MRS broth was reduced by 1.8 log (P < 0.001), when glucose was replaced by either inulin or oligofructose (without Oxgall). L. sakei 1 was unable to deconjugate bile salts, and there was a significant decrease (1.4 log) of the L. sakei 1 population in regular MRS broth plus Oxgall (P < 0.05). In spite of this, tolerance levels of L. sakei 1 to bile salts were similar in regular MRS broth and in MRS broth with oligofructose. Lower bacteriocin production was observed in MRS broth when inulin (3,200 AU/ml) or oligofructose (2,400 AU/ml) was used instead of glucose (6,400 AU/ml). L. sakei I adhered to Caco-2 cells, and its cell-free pH-neutralized supernatant containing sakacin I led to a significant reduction of in vitro listerial invasion of human intestinal Caco-2 cells.
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Drug discovery has moved toward more rational strategies based on our increasing understanding of the fundamental principles of protein-ligand interactions. Structure( SBDD) and ligand-based drug design (LBDD) approaches bring together the most powerful concepts in modern chemistry and biology, linking medicinal chemistry with structural biology. The definition and assessment of both chemical and biological space have revitalized the importance of exploring the intrinsic complementary nature of experimental and computational methods in drug design. Major challenges in this field include the identification of promising hits and the development of high-quality leads for further development into clinical candidates. It becomes particularly important in the case of neglected tropical diseases (NTDs) that affect disproportionately poor people living in rural and remote regions worldwide, and for which there is an insufficient number of new chemical entities being evaluated owing to the lack of innovation and R&D investment by the pharmaceutical industry. This perspective paper outlines the utility and applications of SBDD and LBDD approaches for the identification and design of new small-molecule agents for NTDs.
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Trypanosoma (Megatrypanum) melophagium is a parasite of sheep transmitted by sheep keds, the sheep-restricted ectoparasite Melophagus ovinus (Diptera: Hippoboscidae). Sheep keds were 100% prevalent in sheep from five organic farms in Croatia, Southeastern Europe, whereas trypanosomes morphologically compatible with T. melophagium were 86% prevalent in the guts of the sheep keds. Multilocus phylogenetic analyses using sequences of small subunit rRNA, glycosomal glyceraldehyde-3-phosphate dehydrogenase, spliced leader, and internal transcribed spacer 1 of the rDNA distinguished T. melophagium from all allied trypanosomes from other ruminant species and placed the trypanosome in the subgenus Megatrypanum. Trypanosomes from sheep keds from Croatia and Scotland, the only available isolates for comparison, shared identical sequences. All biologic and phylogenetic inferences support the restriction of T. melophagium to sheep and, especially, to the sheep keds. The comparison of trypanosomes from sheep, cattle, and deer from the same country, which was never achieved before this work, strongly supported the host-restricted specificity of trypanosomes of the subgenus Megatrypanum. Our findings indicate that with the expansion of organic farms, both sheep keds and T. melophagium may re-emerge as parasitic infections of sheep.
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Trehalose ist der Hauptblutzucker in der Hämolymphe der meisten Insekten. Trehalose wird im Fettkörper synthetisiert, dem wichtigsten Organ des Intermediärstoffwechsels bei Insekten. Wie die Homöostase des Blutzuckers reguliert wird, ist nicht vollständig geklärt. Die Produktion von Trehalose erfordert eine grundlegende Umschaltung im Stoffwechsel des Fettkörpers, die mehrere wichtige Stoffwechselwege betrifft, so dass die Fettkörperzellen (Trophocyten) von der Speicherung und Katabolisierung von Zucker zur Mobilisierung von Reservestoffen (Glykogen, Fett, Protein) und Trehalosesynthese umschalten. Am Fettkörper und isolierten Trophocyten der Argentinischen Schabe (Blaptica dubia) wurden Stoffwechseleffekte und Elemente der Signalkette des hypertrehalosämischen Hormons Bld HrTH untersucht. Inkubation isolierter Fettkörperloben mit Bld HrTH verringerte innerhalb von 60 min den Glykogengehalt (um 13,4 %) und steigerte die Konzentration der Hexosephosphate Glucose-6-phosphat und Fructose-6-phosphat, die Substrat sowohl für die Trehalosesynthese als auch für die Glykolyse sind. Pyruvat, Glycerin-3-phosphat, Citrat und insbesondere Fructose-1,6-bisphosphat (+750 %) waren ebenfalls erhöht. Der Glykolyseaktivator/Gluconeogeneseinhibitor Fructose-2,6-bisphosphat wird durch Bld HrTH vermindert. Da Trehalosesynthese und Glykolyse um dieselben Substrate (Glucosephosphate) konkurrieren, fördert der hormoninduzierte Abfall des Glykolyseaktivators Fructose-2,6-bisphosphat die Trehalogenese.Es ist gelungen, Trophocyten zu isolieren und die Signaltransduktion von Bld HrTH an einheitlichen Zellen und auch an Einzelzellen zu studieren. Hauptziel dieser Arbeit war es, die Funktion von Ca2+ im Signalweg des Bld HrTH genauer zu untersuchen. Die isolierten Zellen reagierten auf das Neuropeptid mit einer deutlichen Steigerung der Trehalosesynthese (+133,7 %) und einer Senkung des Fructose-2,6-bisphosphat-Gehaltes (-30,2 %). Sie bieten somit ein geeignetes System zur Untersuchung der Wirkungsmechanismen von Bld HrTH auf zellulärem Niveau. Ca2+ aus dem Extrazellulärraum und aus intrazellulären Speichern spielen bei der Signaltransduktion eine Rolle. Während extrazelluläres Ca2+ insbesondere für die Senkung des Fructose-2,6-bisphosphat-Gehaltes wichtig war, wurde Ca2+ aus zellulären Speichern insbesondere für die Trehalosesynthese benötigt, wobei sich jedoch beide Wege wechselseitig beeinflussen. Erstmals konnten an isolierten Trophocyten Änderungen von Ca2+ mikrofluorometrisch an Einzelzellen studiert werden. Das hypertrehalosämische Hormon ruft einen schnellen und starken Anstieg der intrazellulären Ca2+-Konzentration ([Ca2+]i) hervor. Die Untersuchungen deuten auf einen Signalweg über IP3 und Diacylglycerin hin, entsprechend der Phosphoinositidkaskade. Eine Beteiligung des biogenen Amins Octopamin, von cAMP oder von Stickstoffmonoxid (NO) an der Signaltransduktion scheint hingegen unwahrscheinlich. Der Zuckergehalt im Medium scheint ebenfalls auf die Trehalogenese zu wirken. Bei hohen Konzentrationen von Glucose oder Trehalose wurde eine Hemmung der Trehalosesynthese beobachtet, die als Rückkopplungshemmung gedeutet werden kann. Bei Hunger wird das im Fettkörper gespeicherte Glykogen stark reduziert. Außerdem scheint die Zahl der symbiontischen Mikroorganismen in den Mycetocyten verringert.
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Gegenstand dieser Arbeit war die Untersuchung, welche Rolle endogen gebildete oxidative DNA-Modifikationen bei der Kanzerogenese spielen. Dazu wurden Cockayne Syndrom B-knockout-Mäuse (Csb-/-), 8-Hydroxyguanin-DNA-Glykosylase-knockout-Mäuse (Ogg1-/-) und Csb-/-/Ogg1-/- Mäuse generiert, die das bakterielle lacI-Gen (Big Blue®) tragen und somit für in vivo Mutationstests eingesetzt werden können. Die Ergebnisse zeigen, dass es in den Lebern der Ogg1-/- Mäuse zu einem 2,1-fachen und in Csb-/-/Ogg1-/- Mäusen zu einem statistisch signifikanten 3,3-fachen Anstieg der Mutationsfrequenz kommt. Die gefundene Erhöhung der Mutationsfrequenz war vor allem auf eine Erhöhung der G:C zu T:A Transversionen zurückzuführen, die typischerweise aus nicht repariertem 8 Hydroxyguanin (8-oxoG) entstehen. Aus mechanistischer Sicht verdeutlichen die Ergebnisse, dass OGG1 das primäre Abwehrsystem gegen oxidative DNA-Modifikationen darstellt und dass das CSB-Protein einen Ausfall von OGG1, selbst in nicht transkribierter DNA, teilweise kompensieren kann. Aus der Korrelation der gefundenen oxidativen DNA-Schäden - bestimmt mittels Alkalischer Elution und der bakteriellen Formamidopyrimidin-DNA-Glykosylase (Fpg-Protein) - mit der Mutationsfrequenz konnte abgeleitet werden, dass bereits weniger als 0,2 Fpg-sensitive DNA-Modifikationen pro 1 Million Basenpaare ausreichen, die spontane Mutationsfrequenz in vivo zu verdoppeln. Zur Untersuchung, welche Rolle die erhöhte Mutationsfrequenz bei der Krebsentstehung spielt, wurden Csb-/-/Ogg1-/- und Wildtyp-Mäuse mit dem Peroxisomenproliferator und spezifischem Leberpromotor WY-14,643 behandelt um spontan initiierte Hepatozyten zur Proliferation anzuregen. Als Endpunkt einer malignen Entartung wurde das Auftreten von Glucose-6-Phosphatase positiven und negativen Läsionen beobachtet. Es zeigte sich, dass Csb-/-/Ogg1-/- Mäuse signifikant mehr enzymveränderte Läsionen in ihren Lebern aufwiesen, als die Wildtyp-Kontrollen. Die Ergebnisse verdeutlichen, dass endogen gebildete oxidative DNA-Modifikationen und daraus resultierende Mutationen grundsätzlich einen erheblichen Anteil zur hohen spontanen Krebsinzidenz in der Bevölkerung leisten könnten.