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钙依赖性中性蛋白酶对钙激活的、磷脂依赖性蛋白激酶的蛋白水解激活作用。

Proteolytic activation of calcium-activated, phospholipid-dependent protein kinase by calcium-dependent neutral protease.

作者信息

Kishimoto A, Kajikawa N, Shiota M, Nishizuka Y

出版信息

J Biol Chem. 1983 Jan 25;258(2):1156-64.

PMID:6296071
Abstract

A Ca2+-dependent protease I), which hydrolyzes casein at Ca2+ concentrations lower than the 10(-5) M range, is purified roughly 4000-fold from the soluble fraction of rat brain. This protease is able to activate Ca2+-activated, phospholipid-dependent protein kinase (protein kinase C) by limited proteolysis analogously to the previously known Ca2+-dependent analogously to the previously known Ca2+-dependent protease (Ca2+ protease II) which is active at the millimolar range of Ca2+ (Inoue, M., Kishimoto, A., Takai, Y., and Nishizuka, Y. (1977) J. Biol. Chem. 252, 7610-7616). The protein kinase fragment thus produced shows a molecular weight of about 5.1 X 10(4), and is significantly smaller than native protein kinase C (Mr = 7.7 X 10(4). Although protein kinase C may be normally activated in a reversible manner by the simultaneous presence of phospholipid and diacylglycerol at Ca2+ concentrations less than 10(-6) M, this enzyme fragment is fully active without any lipid fractions and independent of Ca2+. The limited proteolysis of protein kinase C is markedly enhanced in the velocity by the addition of phospholipid and diacylglycerol, which are both required for the reversible activation of the enzyme. However, casein hydrolysis by this protease is not affected by phospholipid and diacylglycerol. Available evidence suggests that, at lower concentrations of this divalent cation, Ca2+ protease I reacts preferentially with the active form of protein kinase C which is associated with membrane, and converts it to the permanently active form. In contrast, the inactive form of protein kinase C, which is free of membrane phospholipid, does not appear to be very susceptible to the proteolytic attack. It remains unknown, however, whether this mechanism of irreversible activation of protein kinase C does operate in physiological processes. It is noted that Ca2+ protease II, which is active at higher concentrations of Ca2+, proteolytically activates protein kinase C irrespective of the presence and absence of phospholipid and diacylglycerol.

摘要

一种钙依赖性蛋白酶I,它在低于10⁻⁵M范围的钙离子浓度下能水解酪蛋白,从大鼠脑的可溶性部分被大致纯化了4000倍。这种蛋白酶能够通过有限的蛋白水解作用激活钙激活的、磷脂依赖性蛋白激酶(蛋白激酶C),类似于先前已知的在毫摩尔范围的钙离子浓度下起作用的钙依赖性蛋白酶(钙蛋白酶II)(井上,M.,岸本,A.,高井,Y.,和西冢,Y.(1977年)《生物化学杂志》252,7610 - 7616)。由此产生的蛋白激酶片段分子量约为5.1×10⁴,明显小于天然蛋白激酶C(Mr = 7.7×10⁴)。尽管蛋白激酶C通常在低于10⁻⁶M的钙离子浓度下通过磷脂和二酰甘油的同时存在以可逆方式被激活,但该酶片段在没有任何脂质成分且不依赖钙离子的情况下具有完全活性。磷脂和二酰甘油的添加显著提高了蛋白激酶C有限蛋白水解的速度,而这两者都是该酶可逆激活所必需的。然而,这种蛋白酶对酪蛋白的水解不受磷脂和二酰甘油的影响。现有证据表明,在较低浓度的这种二价阳离子下,钙蛋白酶I优先与与膜相关的蛋白激酶C的活性形式反应,并将其转化为永久活性形式。相比之下,不含膜磷脂的蛋白激酶C的无活性形式似乎对蛋白水解攻击不太敏感。然而,蛋白激酶C这种不可逆激活机制在生理过程中是否起作用仍然未知。值得注意的是,在较高钙离子浓度下起作用的钙蛋白酶II,无论磷脂和二酰甘油是否存在,都能通过蛋白水解激活蛋白激酶C。

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