首页> 美国卫生研究院文献>Biochemical Journal >Gs alpha is a substrate for mono(ADP-ribosyl)transferase of NG108-15 cells. ADP-ribosylation regulates Gs alpha activity and abundance.
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Gs alpha is a substrate for mono(ADP-ribosyl)transferase of NG108-15 cells. ADP-ribosylation regulates Gs alpha activity and abundance.

机译:Gs alpha是NG108-15细胞单(ADP-核糖基)转移酶的底物。 ADP-核糖基化调节Gs alpha活性和丰度。

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摘要

NG108-15 neuroblastoma x glioma somatic hybrid cells were permeabilized in the presence of [32P]NAD+ and then cultured for 18 h. Resolution of the cell proteins on polyacrylamide gels revealed [32P]ADP-ribosylation of five major protein species with molecular mass values of 52 kDa, 44 kDa, 35 kDa, 30 kDa and 25 kDa. A similar pattern of labelling was also seen when NG108-15 cell membranes were incubated with [32P]NAD+ and hydrolysis of the product revealed mono(ADP-ribosyl)ation. Immunoprecipitation of these products with anti-Gs alpha antiserum revealed a single band identical to cholera toxin substrate. Culture of [32P]NAD(+)-loaded cells for 18 h in the presence of 50 mM-nicotinamide inhibited the eukaryotic mono(ADP-ribosyl)transferase activity. Inhibition of the eukaryotic enzyme was also accompanied by an increase in the abundance of Gs alpha, whether measured by Western blotting with anti-Gs alpha antibody (two separate antisera) or by cholera toxin-dependent [32P]ADP-ribosylation. There was no accompanying change in the abundance of G beta. The increase in Gs alpha abundance in nicotinamide-treated NG108-15 cells was accompanied by a 2-fold increase in basal adenylate cyclase activity (measured in the presence of GTP), and by a smaller but significant increase in iloprost-dependent activation of adenylate cyclase. Receptor number or affinity was not affected by nicotinamide, since this treatment did not alter the binding parameters of [3H]iloprost to NG108-15 cell membranes. Short-term exposure of cells to nicotinamide for 1 h revealed no significant difference in either basal or agonist-stimulated adenylate cyclase activity. These results reveal that mono(ADP-ribosyl)ation of Gs alpha by eukaryotic ADP-ribosyltransferase modifies the abundance and activity of Gs alpha in NG108-15 cells, and hence may play a role in the hormonal regulation of cell function.
机译:NG108-15神经母细胞瘤x胶质瘤体细胞杂交细胞在[32P] NAD +存在下通透,然后培养18 h。细胞蛋白在聚丙烯酰胺凝胶上的分离显示了分子量为52 kDa,44 kDa,35 kDa,30 kDa和25 kDa的5种主要蛋白质的[32P] ADP-核糖基化。将NG108-15细胞膜与[32P] NAD +孵育时,也观察到类似的标记模式,产物的水解显示出单(ADP-核糖基)化。用抗Gsα抗血清对这些产品进行免疫沉淀,显示出一条与霍乱毒素底物相同的单条带。在50 mM烟酰胺的存在下培养[32P] NAD(+)的细胞培养18小时抑制了真核单(ADP-核糖基)转移酶的活性。真核酶的抑制还伴随着Gs alpha丰度的增加,无论是通过抗Gs alpha抗体(两种独立的抗血清)的蛋白质印迹法还是霍乱毒素依赖性[32P] ADP-核糖基化方法进行测量。 G beta的丰度没有伴随的变化。烟酰胺处理的NG108-15细胞中Gs alpha丰度的增加伴随着基础腺苷酸环化酶活性的2倍增加(在GTP存在下测得),以及伊洛前列素依赖性的腺苷酸活化的较小但显着增加环化酶。烟酰胺不影响受体数目或亲和力,因为该处理不会改变[3H] iloprost与NG108-15细胞膜的结合参数。将细胞短期暴露于烟酰胺中1小时后,发现基础或激动剂刺激的腺苷酸环化酶活性均无显着差异。这些结果表明,通过真核ADP-核糖基转移酶对Gsα进行单(ADP-核糖基)化修饰了NG108-15细胞中Gsα的丰度和活性,因此可能在激素对细胞功能的调节中起作用。

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