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半胱天冬酶(Caspase)的加工通过解除自身抑制来激活非典型蛋白激酶Cζ,并使该蛋白不稳定。

Caspase processing activates atypical protein kinase C zeta by relieving autoinhibition and destabilizes the protein.

作者信息

Smith Lucinda, Wang Zhi, Smith Jeffrey B

机构信息

Department of Pharmacology and Toxicology, Schools of Medicine and Dentistry, University of Alabama at Birmingham, Birmingham, Alabama 35294, USA.

出版信息

Biochem J. 2003 Nov 1;375(Pt 3):663-71. doi: 10.1042/BJ20030926.

Abstract

Treatment of HeLa cells with tumour necrosis factor alpha (TNFalpha) induced caspase processing of ectopic PKC (protein kinase C) zeta, which converted most of the holoenzyme into the freed kinase domain and increased immune-complex kinase activity. The goal of the present study was to determine the basis for the increased kinase activity that is associated with caspase processing of PKC zeta. Atypical PKC iota is largely identical with PKC zeta, except for a 60-amino-acid segment that lacks the caspase-processing sites of the zeta isoform. Replacement of this segment of PKC zeta with the corresponding segment of PKC iota prevented caspase processing and activation of the kinase function. Processing of purified recombinant PKC zeta by caspase 3 in vitro markedly increased its kinase activity. Caspase processing activated PKC zeta in vitro or intracellularly without increasing the phosphorylation of Thr410 of PKC zeta, which is required for catalytic competency. The freed kinase domain of PKC zeta had a much shorter half-life than the holoenzyme in transfected HeLa cells and in non-transfected kidney epithelial cells. Treatment with TNF-alpha shortened the half-life of the kinase domain protein, and proteasome blockade stabilized the protein. Studies of kinase-domain mutants indicate that a lack of negative charge at Thr410 can shorten the half-life of the freed kinase domain. The present findings indicate that the freed kinase domain has substantially higher kinase activity and a much shorter half-life than the holoenzyme because of accelerated degradation by the ubiquitin-proteasome system.

摘要

用肿瘤坏死因子α(TNFα)处理HeLa细胞可诱导异位蛋白激酶C(PKC)ζ的半胱天冬酶加工,这将大部分全酶转化为游离的激酶结构域并增加了免疫复合物激酶活性。本研究的目的是确定与PKCζ的半胱天冬酶加工相关的激酶活性增加的基础。非典型PKCι与PKCζ基本相同,只是缺少ζ亚型半胱天冬酶加工位点的60个氨基酸片段。用PKCι的相应片段替换PKCζ的这一片段可防止半胱天冬酶加工和激酶功能的激活。体外经半胱天冬酶3对纯化的重组PKCζ进行加工可显著增加其激酶活性。半胱天冬酶加工在体外或细胞内激活PKCζ,而不增加PKCζ催化活性所需的Thr410的磷酸化。在转染的HeLa细胞和未转染的肾上皮细胞中,PKCζ的游离激酶结构域的半衰期比全酶短得多。用TNF-α处理可缩短激酶结构域蛋白的半衰期,而蛋白酶体阻断可使该蛋白稳定。对激酶结构域突变体的研究表明,Thr410处缺乏负电荷可缩短游离激酶结构域的半衰期。本研究结果表明,由于泛素-蛋白酶体系统加速降解,游离激酶结构域的激酶活性显著高于全酶,且半衰期短得多。

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