923 resultados para DEAD Box Protein 20


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Material de apoyo para la enseñanza de la lectura en la educación primaria. Pertenece al género de historias sobre mundos de fantasía, un género que ha demostrado tener éxito con los niños que son reacios a leer. Es un día caluroso, Nishal encuentra en el jardín una caja de la que salen unos ruidos. De repente, se abre la tapa y salta un gran pingüino. El nuevo amigo le llevará a alguna parte muy fría.

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En el presente estudio se analizan los efectos de los fotoperiodos ambientales de otoño e invierno y los fotoperiodos experimentales de 24, 12 y 0 horas de luz artificial sobre la calidad del semen de machos reproductores porcinos de raza Landrace. El estudio se realizó sobre 30 machos postpuberales de 8 meses de edad y testados con el fin de comprobar la homogeneidad. Los machos fueron distribuidos aleatóriamente en los 3 grupos de luz artificial durante 3 meses. El tratamiento de 12 horas de luz artificial fue considerado como grupo control. Previamente al inicio de cada tratamiento, se sometió a cada grupo de machos al fotoperiodo ambiental correspondiente a la época del año; así, se caracterizó también la calidad seminal en otoño e invierno, manteniendo la temperatura constante. La nave experimental que acogió a los machos tiene una superficie de 100 m2 y una altura de 3,5 m. Un pasillo central divide la nave en dos hileras de 5 y 6 celdas respectivamente. En una de las celdas pequeñas se instaló el maniquí y fue utilizada para las extracciones de semen. La iluminación artificial se consiguió con la instalación de 6 lámparas fluorescentes en el techo del pasillo central que proporcionaron una luz homogénea superior a 200 lux. Así mismo, la nave se mantuvo en todo momento a 21±1ºC y la humedad relativa osciló entre el 60-75%. A todos los verracos se les proporcionó una dieta nutritiva y equilibrada y se les sometió a un regimen de extracciones de semen de 2 veces por semana, habiendo sido previamente entrenados en la monta del maniquí. Les muestras de semen fueron recogidas según la técnica de la mano enguantada (Martín, 1982; Daza, 1992) y se analizaron los siguientes parámetros: el volumen y el pH seminales, la concentración, la vitalidad y la motilidad espermáticas, la resistencia acrosómica de los espermatozoides, la morfología espermàtica a partir de la frecuencia de los espermatozoides maduros, inmaduros y aberrantes, la producción testicular y el número de dosis seminales. Se analizó, además, bioquímicamente el plasma seminal al principio y al final de cada tratamiento experimental de luz artificial a partir de la concentración de proteína total, de la identificación de residuos fosforilados de proteína y del contenido de azúcares. También se determinaron los índices de fertilidad y prolificidad. El volumen y el pH de los eyaculados se utilizaron como marcadores del estado funcional de las glándulas sexuales accesorias; la concentración espermàtica como un indicador de la actividad testicular (Pinart y col., 1999). La vitalidad y la motilidad espermáticas fueron estimadores del grado de diferenciación del espermatozoide tanto a nivel testicular como epididimario; la resistencia acrosómica fue utilizada para valorar el nivel de diferenciación de la membrana acrosómica durante la espermiogénesis y/o maduración epididimària (Briz i col., 1996; Pinart i col., 1999). Referente a la morfología espermática, los espermatozoides inmaduros fueron marcadores de anomalías en la maduración de éstos a lo largo del conducto epididimario y los espermatozoides aberrantes se utilizaron como marcadores de una diferenciación defectuosa a nivel de testículo (anomalías primarias) y a nivel de conducto epididimario (anomalías secundarias) (Briz i col., 1996). La concentración de proteína total se utilizó para valorar la integridad funcional de las membranas del espermatozoide y la actividad de las glándulas sexuales accesorias. La identificación de proteínas con residuos de tirosina fosforilados fue un estimador de la viabilidad celular y la actividad de las glándulas sexuales, y el contenido de azúcares como un indicador de la producción de las vesículas seminales. La determinación del volumen y el pH de los eyaculados se realizó en las instalaciones de la granja a partir de semen fresco el mismo día de la extracción. El resto de parámetros se analizaron en el laboratorio durante las 48 horas posteriores a la extracción a partir de semen diluido en BTS (diluyente de Bestville) (Daza, 1992) y transportado y conservado a 15ºC. Las muestras fueron previamente filtradas con el fin de eliminar la tapioca. El estudio estadístico de los resultados obtenidos se realizó a partir del análisis de la varianza (ANOVA) con un nivel de significación de =0,05. En cuanto al estudio comparativo de los fotoperiodos ambientales estacionales se ha observado un incremento significativo del pH del eyaculado en los machos expuestos a otoño (P0,0001), mientras que el volumen seminal se mantiene en valores similares en ambos tratamientos (P=0,1650). La concentración espermàtica, la producción espermàtica y el número de dosis seminales que se pueden preparar a partir de un eyaculado se duplica en los verracos sometidos al fotoperiodo de primavera (P0,0001). La vitalidad y la motilidad espermáticas no experimentan cambios significativos entre tratamientos (P=0,3440 y P=0,9220, respectivamente). La resistencia osmótica de los acrosomas desciende únicamente en los machos expuestos a condiciones estacionales de otoño (P0,0001). En referencia a la morfología espermàtica aunque no se observan diferencias entre primavera y otoño (P0,05), sí se detecta un incremento de los porcentajes de espermatozoides inmaduros y aberrantes en ambos fotoperiodos estacionales, y en especial en los machos expuestos a condiciones fotoperiódicas de otoño. Según los resultados obtenidos en este estudio la calidad seminal de los verracos es inferior en el fotoperiodo de otoño debido a un descenso de la concentración y la producción espermáticas, un aumento del pH seminal, una disminución de la resistencia de la membrana acrosómica y a un incremento en la frecuencia de espermatozoides inmaduros y aberrantes. Parece ser, pues, que en el otoño tiene lugar la disminución de la producción testicular, cambios en la actividad de las glándulas sexuales accesorias y disfunciones en el proceso de diferenciación testicular y epididimària de los espermatozoides y especialmente del acrosoma. En relación a los resultados obtenidos en el estudio de los diferentes fotoperiodos artificiales se observa que la iluminación continua provoca un aumento significativo del volumen del eyaculado en el primer y segundo mes de tratamiento (P0,0001), disminuyendo en el tercer mes. La oscuridad absoluta no modifica este parámetro (P0,05). En cuanto al pH seminal la iluminación continua provoca un incremento progresivo del valor del pH a lo largo del periodo experimental (P0,0001), mientras que la oscuridad absoluta tiene un efecto más irregular. La exposición de los machos a iluminación continua y a oscuridad absoluta se manifiesta en un descenso de la concentración y la producción espermáticas que se mantiene hasta el segundo mes de tratamiento (P0,0001), observándose un incremento en el tercer mes de exposición de los machos a oscuridad absoluta (P=0,1010). De todas maneras, este descenso es mas severo en los machos sometidos a iluminación continua ya que no presentan recuperación. La vitalidad y la motilidad espermáticas no se ven alteradas por la iluminación continua y la oscuridad absoluta, ni tampoco el contenido de los azúcares mayoritarios del plasma seminal (P0,005). La glucosa aparece como un azúcar minoritario y sí que presenta concentraciones inferiores en los tratamientos experimentales de luz continua y de oscuridad absoluta (P0,0001 y P=0,0002, respectivamente). La resistencia osmótica de los acrosomas desciende en ambos tratamientos artificiales extremos de luz continua y oscuridad total (P0,0001), aunque en los machos expuestos a iluminación continua se produce una recuperación a partir del segundo mes de tratamiento (P=0,4930). Dado que tampoco se han observado diferencias significativas en las concentraciones de proteína total (P0,05), es probable que las anomalías de la membrana acrosómica se originen durante el proceso de espermiogénesis y/o maduración epididimària. La exposición de los verracos a oscuridad absoluta no altera la morfología espermàtica de los eyaculados, aunque se observa un aumento de la frecuencia de espermatozoides con anomalías en la forma de la cola en el primer mes (P0,0001), y un aumento de la frecuencia de espermatozoides inmaduros con gota distal y de espermatozoides con anomalías en el número de colas en el tercer mes de experimentación (P=0,0030 y P0,0001). La luz continua, sin embargo, provoca un incremento de la frecuencia de espermatozoides inmaduros con gota distal (P0,0001) y de espermatozoides con anomalías en la forma de la cola (P=0,0040) ya en el primer mes. El fotoperiodo provoca un descenso de la fertilidad de los machos expuestos a oscuridad absoluta en el tercer mes de tratamiento (P0,0001) y un incremento de ésta en los machos sometidos a iluminación continua (P=0,0005). La prolificidad no se ve modificada por ambas condiciones extremas de luz artificial (P0,05). Así pues, los resultados obtenidos demuestran que el fotoperiodo afecta la actividad testicular, provoca alteraciones en la actividad de las glándulas sexuales accesorias, altera el proceso de expulsión de la gota citoplasmática y provoca anomalías en el proceso de diferenciación de la cola tanto a nivel testicular como epididimario, siendo los verracos expuestos a luz continua más sensibles a estos parámetros que los verracos sometidos a oscuridad absoluta. El fotoperiodo, sin embargo, no altera de forma esencial la integridad de las membranas del espermatozoide ni la capacidad fecundante de éste.

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In the present study we measured maternal plasma concentrations of two placental neurohormones, corticotropin-releasing factor (CRF) and CRF-binding protein (CRF-BP), in 58 at-risk pregnant women consecutively enrolled between 28 and 29 wk of pregnancy to evaluate whether their evaluation may predict third trimester-onset preeclampsia ( PE). The statistical significance was assessed by t test. The cut-off points for defining altered CRF and CRF-BP levels for prediction of PE were chosen by receiving operator characteristics curve analysis, and the probability of developing PE was calculated for several combinations of hormone testing results. CRF and CRF-BP levels were significantly ( both P < 0.0001) higher and lower, respectively, in the patients (n = 20) who later developed PE than in those who did not present PE at follow-up. CRF at the cut-off 425.95 pmol/liter achieved a sensitivity of 94.8% and a specificity of 96.9%, whereas CRF-BP at the cut-off 125.8 nmol/liter combined a sensitivity of 92.5% and a specificity of 82.5% as single markers for prediction of PE. The probability of PE was 34.5% in the whole study population, 93.75% when both CRF and CRF-BP levels were changed, and 0% if both hormone markers were unaltered. The measurement of CRF and CRF-BP levels may add significant prognostic information for predicting PE in at-risk pregnant women.

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We have developed a novel Hill-climbing genetic algorithm (GA) for simulation of protein folding. The program (written in C) builds a set of Cartesian points to represent an unfolded polypeptide's backbone. The dihedral angles determining the chain's configuration are stored in an array of chromosome structures that is copied and then mutated. The fitness of the mutated chain's configuration is determined by its radius of gyration. A four-helix bundle was used to optimise simulation conditions, and the program was compared with other, larger, genetic algorithms on a variety of structures. The program ran 50% faster than other GA programs. Overall, tests on 100 non-redundant structures gave comparable results to other genetic algorithms, with the Hill-climbing program running from between 20 and 50% faster. Examples including crambin, cytochrome c, cytochrome B and hemerythrin gave good secondary structure fits with overall alpha carbon atom rms deviations of between 5 and 5.6 Angstrom with an optimised hydrophobic term in the fitness function. (C) 2003 Elsevier Ltd. All rights reserved.

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Amyloid fibrils are typically rigid, unbrariched structures with diameters of similar to 10 nm and lengths up to several micrometres, and are associated with more than 20 diseases including Alzheimer's disease and type II diabetes. Insulin is a small, predominantly alpha-helical protein consisting of 51 residues in two disulfide-linked polypeptide chains that readily assembles into amyloid fibrils under conditions of low PH and elevated temperature. We demonstrate here that both the A-chain and the B-chain of insulin are capable of forming amyloid fibrils in isolation under similar conditions, with fibrillar morphologies that differ from those composed of intact insulin. Both the A-chain and B-chain fibrils were found to be able to cross-seed the fibrillization of the parent protein, although these reactions were substantially less efficient than self-seeding with fibrils composed of full-length insulin. In both cases, the cross-seeded fibrils were morphologically distinct from the seeding, material, but shared common characteristics with typical insulin fibrils, including a very similar helical repeat. The broader distribution of heights of the cross-seeded fibrils compared to typical insulin fibrils, however, indicates that their underling protofilament hierarchy may be subtly different. In addition, and remarkably in view of this seeding behavior, the soluble forms of the A-chain and B-chain peptides were found to be capable of inhibiting insulin fibril formation. Studies using mass spectrometry suggest that this behavior might be attributable to complex formation between insulin and the A-chain and B-chain peptides. The finding that the same chemical form of a polypeptide chain in different physical states can either stimulate or inhibit the conversion of a protein into amyloid fibrils sheds new light on the mechanisms underlying fibril formation, fibril strain propagation and amyloid disease initiation and progression. (c) 2006 Elsevier Ltd. All rights reserved.

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Accurately measured peptide masses can be used for large-scale protein identification from bacterial whole-cell digests as an alternative to tandem mass spectrometry (MS/MS) provided mass measurement errors of a few parts-per-million (ppm) are obtained. Fourier transform ion cyclotron resonance (FTICR) mass spectrometry (MS) routinely achieves such mass accuracy either with internal calibration or by regulating the charge in the analyzer cell. We have developed a novel and automated method for internal calibration of liquid chromatography (LC)/FTICR data from whole-cell digests using peptides in the sample identified by concurrent MS/MS together with ambient polydimethyl-cyclosiloxanes as internal calibrants in the mass spectra. The method reduced mass measurement error from 4.3 +/- 3.7 ppm to 0.3 +/- 2.3 ppm in an E. coli LC/FTICR dataset of 1000 MS and MS/MS spectra and is applicable to all analyses of complex protein digests by FTICRMS. Copyright (c) 2006 John Wiley & Sons, Ltd.

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The relationships between wheat protein quality and baking properties of 20 flour samples were studied for two breadmaking processes; a hearth bread test and the Chorleywood Bread Process (CBP). The strain hardening index obtained from dough inflation measurements, the proportion of unextractable polymeric protein, and mixing properties were among the variables found to be good indicators of protein quality and suitable for predicting potential baking quality of wheat flours. By partial least squares regression, flour and dough test variables were able to account for 71-93% of the variation in crumb texture, form ratio and volume of hearth loaves made using optimal mixing and fixed proving times. These protein quality variables were, however, not related to the volume of loaves produced by the CBP using mixing to constant work input and proving to constant height. On the other hand, variation in crumb texture of CBP loaves (54-55%) could be explained by protein quality. The results underline that the choice of baking procedure and loaf characteristics is vital in assessing the protein quality of flours. (C) 2003 Elsevier Ltd. All rights reserved.

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Epidemiological studies suggest that a moderate consumption of anthocyanins may be associated with protection against coronary heart disease. The main dietary sources of anthocyanins include red-coloured fruits and red wine. Although dietary anthocyanins comprise a diverse mixture of molecules, little is known how structural diversity relates to their bioavailability and biological function. The aim of the present study was to evaluate the absorption and metabolism of the 3-monoglucosides of delphinidin, cyanidin, petunidin, peonidin and malvidin in humans and to examine both the effect of consuming a red wine extract on plasma antioxidant status and on monocyte chemoattractant protein I production in healthy human subjects. After a 12-h overnight fast, seven healthy volunteers received 12 g of an anthocyanin extract and provided 13 blood samples in the 24 h following the test meal. Furthermore, urine was collected during this 24-h period. Anthocyanins were detected in their intact form in both plasma and urine samples. Other anthocyanin metabolites could also be detected in plasma and urine and were identified as glucuronides of peonidin and malvidin. Anthocyanins and their metabolites appeared in plasma about 30 min after ingestion of the test meal and reached their maximum value around 1.6 h later for glucosides and 2.5 h for glucuronides. Total urinary excretion of red wine anthocyanins was 0.05+/-0.01% of the administered dose within 24 h. About 94% of the excreted anthocyanins was found in urine within 6 h. In spite of the low concentration of anthocyanins found in plasma, an increase in the antioxidant capacity and a decrease in MCP-1 circulating levels in plasma were observed. (C) 2009 Elsevier Inc. All rights reserved.

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G-protein-coupled receptors are desensitized by a two-step process. In a first step, G-protein-coupled receptor kinases (GRKs) phosphorylate agonist-activated receptors that subsequently bind to a second class of proteins, the arrestins. GRKs can be classified into three subfamilies, which have been implicated in various diseases. The physiological role(s) of GRKs have been difficult to study as selective inhibitors are not available. We have used SELEX (systematic evolution of ligands by exponential enrichment) to develop RNA aptamers that potently and selectively inhibit GRK2. This process has yielded an aptamer, C13, which bound to GRK2 with a high affinity and inhibited GRK2-catalyzed rhodopsin phosphorylation with an IC50 of 4.1 nM. Phosphorylation of rhodopsin catalyzed by GRK5 was also inhibited, albeit with 20-fold lower potency (IC50 of 79 nM). Furthermore, C13 reveals significant specificity, since almost no inhibitory activity was detectable testing it against a panel of 14 other kinases. The aptamer is two orders of magnitude more potent than the best GRK2 inhibitors described previously and shows high selectivity for the GRK family of protein kinases.

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The aim of this work was to examine a possible association between resistance of two Escherichia coli strains to high hydrostatic pressure and the susceptibility of their cell membranes to pressure-induced damage. Cells were exposed to pressures between 100 and 700 MPa at room temperature (~20C) in phosphate-buffered-saline. In the more pressure-sensitive strain E. coli 8164, loss of viability occurred at pressures between 100 MPa and 300 MPa and coincided with irreversible loss of membrane integrity as indicated by uptake of propidium iodide (PI) and leakage of protein of molecular mass between 9 and 78 kDa from the cells. Protein release increased to a maximum at 400 MPa then decreased, possibly due to intracellular aggregation at the higher pressures. In the pressure-resistant strain E. coli J1, PI was taken up during pressure treatment but not after decompression indicating that cells were able to reseal their membranes. Loss of viability in strain J1 coincided with the transient loss of membrane integrity between approximately 200 MPa and 600 MPa. In E. coli J1 leakage of protein occurred before loss of viability and the released protein was of low molecular mass, between 8 and 11 kDa and may have been of periplasmic origin. In these two strains differences in pressure resistance appeared to be related to differences in the ability of their membranes to withstand disruption by pressure. However it appears that transient loss of membrane integrity during pressure can lead to cell death irrespective of whether cells can reseal their membranes afterwards.

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The role of protein kinase C (PKC) activation in ischemic preconditioning remains controversial. Since diacylglycerol is the endogenous activator of PKC and as such might be expected cardioprotective, we have investigated whether: (i) the diacylglycerol analog 1,2-dioctanoyl-sn-glycerol (DOG) can protect against injury during ischemia and reperfusion; (ii) any effect is mediated via PKC activation; and (iii) the outcome is influenced by the time of administration. Isolated rat hearts were perfused with buffer at 37°C and paced at 400 bpm. In Study 1, hearts (n=6/group) were subjected to one of the following: (1) 36 min aerobic perfusion (controls); (2) 20 min aerobic perfusion plus ischemic preconditioning (3 min ischemia/3 min reperfusion+5 min ischemia/5 min reperfusion); (3) aerobic perfusion with buffer containing DOG (10 μM) given as a substitute for ischemic preconditioning; (4) aerobic perfusion with DOG (10 μM) during the last 2 min of aerobic perfusion. All hearts then were subjected to 35 min of global ischemia and 40 min reperfusion. A further group (5) were perfused with DOG (10 μM) for the first 2 min of reperfusion. Ischemic preconditioning improved postischemic recovery of LVDP from 24±3% in controls to 71±2% (P<0.05). Recovery of LVDP also was enhanced by DOG when given just before ischemia (54±4%), however, DOG had no effect on the recovery of LVDP when used as a substitute for ischemic preconditioning (22±5%) or when given during reperfusion (29±6%). In Study 2, the first four groups of study were repeated (n=4–5/group) without imposing the periods of ischemia and reperfusion, instead hearts were taken for the measurement of PKC activity (pmol/min/mg protein±SEM). PKC activity after 36 min in groups (1), (2), (3) and (4) was: 332±102, 299±63, 521±144, and 340±113 and the membrane:cytosolic PKC activity ratio was: 5.6±1.5, 5.3±1.8, 6.6±2.7, and 3.9±2.1 (P=NS in each instance). In conclusion, DOG is cardioprotective but under the conditions of the present study is less cardioprotective than ischemic preconditioning, furthermore the protection does not appear to necessitate PKC activation prior to ischemia.

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The signal transduction pathways that mediate the cardioprotective effects of ischemic preconditioning remain unclear. Here we have determined the role of a novel kinase, protein kinase D (PKD), in mediating preconditioning in the rat heart. Isolated rat hearts (n=6/group) were subjected to either: (i) 36 min aerobic perfusion (control); (ii) 20 min aerobic perfusion plus 3 min no-flow ischemia, 3 min reperfusion, 5 min no-flow ischemia, 5 min reperfusion (ischemic preconditioning); (iii) 20 min aerobic perfusion plus 200 nmol/l phorbol 12-myristate 13-acetate (PMA) given as a substitute for ischemic preconditioning. The left ventricle then was excised, homogenized and PKD immunoprecipitated from the homogenate. Activity of the purified kinase was determined following bincubation with [γ32P]-ATP±syntide-2, a substrate for PKD. Significant PKD autophosphorylation and syntide-2 phosphorylation occurred in PMA-treated hearts, but not in control or preconditioned hearts. Additional studies confirmed that recovery of LVDP was greater and initiation of ischemic contracture and time-to-peak contracture were less, in ischemic preconditioned hearts compared with controls (P<0.05). Our results suggest that the early events that mediate ischemic preconditioning in the rat heart occur via a PKD-independent mechanism.

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The nontumorigenic, immortal line of murine melanocytes, Mel-ab, requires the continual presence of biologically active phorbol esters for growth (R. E. Wilson et al., Cancer Res., 49: 711–716, 1989). Comparable treatments of B16 murine melanoma cells result in partial inhibition of cell proliferation. The role of protein kinase C (PKC) in the modulation of growth of cells from these two melanocytic cell lines has been investigated. Significant levels of PKC were present in quiescent Mel-ab cells as determined by Western blotting, whereas no immunoreactive protein was detected in cell extracts from either proliferating Mel-ab or B16.F1 cells. Phosphorylation of a Mr 80,000 protein, which by one- and two-dimensional gel analysis comigrated with the known Mr 80,000 protein substrate of PKC in fibroblasts, was induced in 12-O-tetradecanoylphorbol-13-acetate-stimulated quiescent Mel-ab cells but not in proliferating Mel-ab cells or B16.F1 melanoma cells. Direct measurement of PKC activity in these cells demonstrated a 10-fold greater level of activity in quiescent Mel-ab cells (262 ± 50 pmol/min/mg SD) compared with growing cells (22.8 ± 11.8 pmol/min/mg SD). An intermediate level of activity was detected in proliferating B16.F1 melanoma cells (148.5 ± 20.4 pmol/min/mg SD). The subcellular distribution of PKC was dependent upon the growth state of the cells such that quiescent Mel-ab cells displayed a higher level of activity in the cytosol, whereas growing Melab cells displayed greater activity in the particulate fraction. Like many other transformed lines, B16.F1 melanoma cells constitutively expressed the majority of enzyme activity in the particulate fraction. Measurement of [3H]phorbol ester binding in intact cells paralleled the PKC activation data such that quiescent Mel-ab cells displayed binding of 1612 ± 147 cpm/106 cells, whereas proliferating Mel-ab and B16.F1 melanoma cells displayed binding of 652 ± 28 and 947 ± 81 cpm/106 cells, respectively. Membrane-permeant diacylglycerol analogues, which activated but did not down-regulate PKC, were devoid of growth-stimulating effects on melanocytes, even in the presence of the specific diacylglycerol kinase inhibitor, R59022. Together, these data show that PKC down-regulation, and not activation, correlates with the growth of melanocytes in culture.

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Sapintoxin A (SAP A) and 12-deoxyphorbol 13-phenylacetate (DOPP), are two biologically active but non-turnour-promoting phorbol esters that potently bind to and activate the phorbol ester receptor, protein kinase C (PKC). SAP A and DOPP cause a dose-dependent increase in the phosphorylation of an 80 kd (80K) substrate protein for PKC in Swiss 3T3 cells. A similar dose—response effect was seen with sapintoxin D (SAP D), the stage 2 promoting analogue of 12-O-tetradecanoylphorbol-13-acetate and the complete promoter phorbol 12,13-dibutyrate (PDB). The doses resulting in a half maximal phosphorylation of this protein (Ka were 20 nM (SAP A), 45 nM (DOPP), 23 nM (SAP D) and 37 nM (PDB). Both non-promoting and phorbol esters induced a dose-dependent inhibition of [125I]epidermal growth factor (EGF) binding to its receptor in Swiss 3T3 cells. The doses required for 50% inhibition of binding (Ki) were: 8 nM (SAP A), 16 nM (DOPP), 14 nM (SAP D) and 17 nM (PDB). The results clearly demonstrate that induction of phosphorylation of the Pu 80K phosphoprotein and inhibition of [125I]EGF binding in Swiss 3T3 cells following exposure to phorbol esters is independent of the tumour-promoting activity of these compounds. The fact that SAP A, DOPP, SAP D and PDB are mitogenic for a variety of cell types and that exposure to these compounds leads to 80K phosphorylation and inhibition of [125I]EGF binding, suggests that these early biological events may play a role in the mitogenic response induced by these compounds.

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The sapintoxins are a series of naturally occurring fluorescent phorbol esters with a range of selective biological activities (e.g. pro-inflammatory but non-tumour promoting). Their ability to activate protein kinase C (PKC) in vitro has been studied. Both tumour promoting and non-promoting phorbol derivatives activate the enzyme in vitro at low concentrations. 12-deoxyphorbol-13-phenylacetate-20 acetate (DOPPA) acts as a partial agonist in the activation of protein kinase C. Structurally distinct phorbol esters may therefore preferentially activate different forms of protein kinase C. -sapinine, a biologically inactive compound, binds to protein kinase C without stimulating the enzyme and prevents subsequent activation by phorbol esters such as 12-O-tetradecanoyl phorbol-13-acetate (TPA).