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苏氨酸-497是蛋白激酶Cα允许性激活的关键位点。

Threonine-497 is a critical site for permissive activation of protein kinase C alpha.

作者信息

Cazaubon S, Bornancin F, Parker P J

机构信息

Imperial Cancer Research Fund, Lincoln's Inn Fields, London, U.K.

出版信息

Biochem J. 1994 Jul 15;301 ( Pt 2)(Pt 2):443-8. doi: 10.1042/bj3010443.

Abstract

Phosphorylation of the region containing Thr-494, Thr-495 and Thr-497, present in the catalytic domain of protein kinase C alpha (PKC alpha), is a preliminary event necessary for subsequent PKC activation [Cazaubon and Parker (1993) J. Biol. Chem. 268, 17559-17563]. To define the essential residues in this region, various combinations of alanine substitutions for threonine residues 494, 495 and 497 have been tested. These mutations yielded expressed polypeptides of 76 and 80 kDa in ratios that vary from 100% 80 kDa (wild-type kinase, active) to 100% 76 kDa (AAA mutant, inactive) with the hierarchy being wild-type PKC alpha (TTT), ATT, AAT, TTA, ATA, TAA, AAA (the nomenclature indicates the location of alanine residues substituted for Thr-494, Thr-495 and Thr-497 respectively). Only the mutants retaining Thr-497 displayed kinase activity in vitro. The results overall indicate that Thr-497 plays the dominant role in the regulation of PKC alpha activity but that in the wild-type protein, Thr-495 may also be important. Consistent with the need for phosphorylation in this region, an intrinsically active PKC alpha could be produced in bacteria by exchanging Thr-495 for a glutamic acid residue.

摘要

蛋白激酶Cα(PKCα)催化结构域中包含苏氨酸-494、苏氨酸-495和苏氨酸-497的区域发生磷酸化,是PKC随后激活所必需的初步事件[卡佐邦和帕克(1993年)《生物化学杂志》268卷,17559 - 17563页]。为了确定该区域中的关键残基,已对苏氨酸残基494、495和497的各种丙氨酸替代组合进行了测试。这些突变产生了76 kDa和80 kDa的表达多肽,其比例从100% 80 kDa(野生型激酶,有活性)到100% 76 kDa(AAA突变体,无活性)不等,顺序为野生型PKCα(TTT)、ATT、AAT、TTA、ATA、TAA、AAA(命名法分别表示替代苏氨酸-494、苏氨酸-495和苏氨酸-497的丙氨酸残基的位置)。只有保留苏氨酸-497的突变体在体外显示出激酶活性。总体结果表明,苏氨酸-497在PKCα活性调节中起主导作用,但在野生型蛋白中,苏氨酸-495可能也很重要。与该区域磷酸化的需求一致,通过将苏氨酸-495替换为谷氨酸残基,可以在细菌中产生一种内在活性的PKCα。

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