首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Regulation of ganglioside metabolism by phosphorylation and dephosphorylation.
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Regulation of ganglioside metabolism by phosphorylation and dephosphorylation.

机译:通过磷酸化和去磷酸化调节神经节苷脂代谢。

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摘要

Cell differentiation is frequently accompanied by alterations in the composition of gangliosides in the plasma membrane resulting from a regulation of the enzyme activities involved. The regulation of CMP-NeuAc:GM1 alpha2-3-sialyltransferase (ST-IV) and UDP-GalNAc:GM3 N-acetylgalactosaminyltransferase (Gal-NAc-T) by the degree of enzyme phosphorylation was analyzed by determination of the enzyme activity on incubation of NG108-15 cells with various protein phosphatase inhibitors (okadaic acid and orthovanadate) or protein kinase activators (phorbol ester and forskolin). Incubation with okadaic acid, but not with orthovanadate, inhibited the ST-IV activity to 45% of that of control cells with t(1/2) = 60 min for the inactivation reaction. This indicates a rapid hyperphosphorylation of ST-IV due to the inhibition of a serine/threonine-specific phosphatase. A similar rate of inactivation was found on stimulation of protein kinase C with phorbol ester. In contrast to ST-IV, the activity of GalNAc-T was increased on stimulation of intracellular phosphorylation systems. The fastest activation of GalNAc-T was achieved with forskolin, yielding up to 160% of the initial activity within 30 min of effector incubation. Up-regulation of GalNAc-T in conjunction with down-regulation of ST-IV by stimulation of phosphorylation is suggested to serve as a physiological mechanism to increase the concentration of GM1, which was found to be elevated in correlation with the cell density. This assumption was corroborated by metabolic labeling studies with radioactive ganglioside precursors indicating an enhancement of the relative amount of a-series gangliosides subsequent to GM3 on phosphorylation stimulation. In particular, the biosynthesis of GM1 was specifically elevated within 2 h of incubation with forskolin. We conclude from the overall data that the ganglioside composition during the cell differentiation of NG108-15 cells can be specifically regulated by both protein kinase A- and protein kinase C-related phosphorylation systems.
机译:细胞分化常常伴随着细胞膜中神经节苷脂组成的改变,这是由所涉及的酶活性的调节引起的。通过确定孵化中的酶活性来分析CMP-NeuAc:GM1 alpha2-3-唾液酸转移酶(ST-IV)和UDP-GalNAc:GM3 N-乙酰半乳糖氨基转移酶(Gal-NAc-T)的调节NG108-15细胞与各种蛋白磷酸酶抑制剂(冈田酸和原钒酸酯)或蛋白激酶激活剂(佛波酯和毛喉素)结合使用。与冈田酸一起孵育,而不与原钒酸盐一起孵育,将灭活反应的t-1 / 2 = 60分钟抑制了ST-IV活性至对照细胞的45%。这表明由于丝氨酸/苏氨酸特异性磷酸酶的抑制,ST-IV快速过磷酸化。佛波醇酯刺激蛋白激酶C的失活率相似。与ST-IV相反,GalNAc-T的活性在细胞内磷酸化系统的刺激下增加。用福司柯林实现了GalNAc-T的最快活化,在效应物孵育30分钟内可产生高达160%的初始活性。 GalNAc-T的上调与通过磷酸化刺激引起的ST-IV的下调被认为是增加GM1浓度的生理机制,发现GM1的浓度与细胞密度相关。放射性神经节苷脂前体的代谢标记研究证实了这一假设,表明在GM3磷酸化刺激后a系列神经节苷脂的相对量增加了。特别是,与毛喉素孵育2小时内,GM1的生物合成被特别提高。我们从总体数据得出的结论是,NG108-15细胞分化过程中神经节苷脂的组成可以由蛋白激酶A和蛋白激酶C相关的磷酸化系统特异性调节。

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