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蛋白激酶C对合成肽底物的Ca2+磷脂依赖性和非依赖性磷酸化作用。

Ca2+ phospholipid-dependent and independent phosphorylation of synthetic peptide substrates by protein kinase C.

作者信息

Ferrari S, Marchiori F, Marin O, Pinna L A

出版信息

Eur J Biochem. 1987 Mar 16;163(3):481-7. doi: 10.1111/j.1432-1033.1987.tb10894.x.

Abstract

Several synthetic peptides reproducing fragments of protamines have been used as model substrates for Ca2+/phospholipid-dependent protein kinase C, tested both in the absence of any effector (basal conditions) and upon activation by either Ca2+ and phosphatidylserine (or diacylglycerol) or limited proteolysis. Only the peptide Arg4-Tyr-Gly-Ser-Arg6-Tyr [Ga(52-65)] shares the unique property of protamines of being readily phosphorylated even under basal conditions. Optimal activity in the absence of effectors is observed with Tris/HCl buffer pH 7.5; Pipes and Hepes are less effective at pH 7.5, and at pH 6.5 basal phosphorylation is reduced. Under the best conditions for basal phosphorylation of Ga(52-65), its derivative with ornithine replaced for arginine and those corresponding to its C-terminal fragments Gly-Ser-Arg6-Tyr [Ga(57-65)] and Gly-Ser-Arg3 [Ga(57-61)], as well as the peptides Pro-Arg5-Ser2-Arg-Pro-Val-Arg [Th(1-12)], Arg4-Tyr-Arg2-Ser-Thr-Val-Ala [Th(13-23)] and Arg2-Leu-Ser2-Leu-Arg-Ala are not significantly affected though all of them, like histones, are more or less readily phosphorylated upon activation of protein kinase C by Ca2+/phosphatidylserine. The peptide Ser2-Arg-Pro-Val-Arg [Th(7-12)] however, corresponding to the C-terminal part of Th(1-12), is not phosphorylated even in the presence of activators. Limited proteolysis can roughly mimic the Ca2+/phosphatidylserine effect inducing however different extents of activation depending on the nature of the peptide substrates. Our results support the following two conclusions. Basal phosphorylation by protein kinase C in the absence of any effector requires peptide substrates whose target residue(s) are included between two extended arginyl blocks and is also dependent on pH and nature of the buffer. Peptides having extended clusters of either arginyl or ornithyl residues on the C-terminal side of serine are also readily phosphorylated, but they need activation of protein kinase by either Ca2+/phosphatidylserine or limited proteolysis. The same is true of peptides having basic residues only on the N-terminal side, or even on both sides but in limited number.

摘要

几种复制鱼精蛋白片段的合成肽已被用作Ca2+/磷脂依赖性蛋白激酶C的模型底物,在没有任何效应物(基础条件)的情况下以及在被Ca2+和磷脂酰丝氨酸(或二酰基甘油)激活或有限蛋白酶解后进行了测试。只有肽段Arg4-Tyr-Gly-Ser-Arg6-Tyr [Ga(52-65)]具有鱼精蛋白的独特性质,即使在基础条件下也易于被磷酸化。在pH 7.5的Tris/HCl缓冲液中观察到无效应物时的最佳活性;在pH 7.5时,Pipes和Hepes的效果较差,而在pH 6.5时基础磷酸化减少。在Ga(52-65)基础磷酸化的最佳条件下,其用鸟氨酸取代精氨酸的衍生物以及对应于其C末端片段Gly-Ser-Arg6-Tyr [Ga(57-65)]和Gly-Ser-Arg3 [Ga(57-61)]的肽段,以及肽段Pro-Arg5-Ser2-Arg-Pro-Val-Arg [Th(1-12)]、Arg4-Tyr-Arg2-Ser-Thr-Val-Ala [Th(13-23)]和Arg2-Leu-Ser2-Leu-Arg-Ala虽然都像组蛋白一样,在被Ca2+/磷脂酰丝氨酸激活蛋白激酶C后或多或少易于被磷酸化,但它们并没有受到显著影响。然而,对应于Th(1-12) C末端部分的肽段Ser2-Arg-Pro-Val-Arg [Th(7-12)]即使在有激活剂存在的情况下也不被磷酸化。有限蛋白酶解可以大致模拟Ca2+/磷脂酰丝氨酸的效应,但根据肽底物的性质会诱导不同程度的激活。我们的结果支持以下两个结论。在没有任何效应物的情况下,蛋白激酶C的基础磷酸化需要肽底物,其靶残基包含在两个延伸的精氨酰块之间,并且还取决于缓冲液的pH和性质。在丝氨酸C末端侧具有延伸的精氨酰或鸟氨酰残基簇的肽段也易于被磷酸化,但它们需要被Ca2+/磷脂酰丝氨酸或有限蛋白酶解激活蛋白激酶C。对于仅在N末端侧或甚至在两侧但数量有限的具有碱性残基的肽段也是如此。

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