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蛋白激酶CKII与Cdc37之间的正反馈回路促进多种蛋白激酶的活性。

A positive feedback loop between protein kinase CKII and Cdc37 promotes the activity of multiple protein kinases.

作者信息

Bandhakavi Sricharan, McCann Richard O, Hanna David E, Glover Claiborne V C

机构信息

Department of Biochemistry and Molecular Biology, University of Georgia, Athens, Georgia 30602-7229, USA.

出版信息

J Biol Chem. 2003 Jan 31;278(5):2829-36. doi: 10.1074/jbc.M206662200. Epub 2002 Nov 14.

Abstract

We report here the identification of CDC37, which encodes a putative Hsp90 co-chaperone, as a multicopy suppressor of a temperature-sensitive allele (cka2-13(ts)) of the CKA2 gene encoding the alpha' catalytic subunit of protein kinase CKII. Unlike wild-type cells, cka2-13 cells were sensitive to the Hsp90-specific inhibitor geldanamycin, and this sensitivity was suppressed by overexpression of either Hsp90 or Cdc37. However, only CDC37 was capable of suppressing the temperature sensitivity of a cka2-13 strain, implying that Cdc37 is the limiting component. Immunoprecipitation of metabolically labeled Cdc37 from wild-type versus cka2-13 strains revealed that Cdc37 is a physiological substrate of CKII, and Ser-14 and/or Ser-17 were identified as the most likely sites of CKII phosphorylation in vivo. A cdc37-S14,17A strain lacking these phosphorylation sites exhibited severe growth and morphological defects that were partially reversed in a cdc37-S14,17E strain. Reduced CKII activity was observed in both cdc37-S14A and cdc37-S17A mutants at 37 degrees C, and cdc37-S14A or cdc37-S14,17A overexpression was incapable of protecting cka2-13 mutants on media containing geldanamycin. Additionally, CKII activity was elevated in cells arrested at the G(1) and G(2)/M phases of the cell cycle, the same phases during which Cdc37 function is essential. Collectively, these data define a positive feedback loop between CKII and Cdc37. Additional genetic assays demonstrate that this CKII/Cdc37 interaction positively regulates the activity of multiple protein kinases in addition to CKII.

摘要

我们在此报告,编码假定的热休克蛋白90(Hsp90)共伴侣蛋白的CDC37,被鉴定为编码蛋白激酶CKIIα'催化亚基的CKA2基因的温度敏感等位基因(cka2-13(ts))的多拷贝抑制子。与野生型细胞不同,cka2-13细胞对Hsp90特异性抑制剂格尔德霉素敏感,而这种敏感性可通过过表达Hsp90或Cdc37来抑制。然而,只有CDC37能够抑制cka2-13菌株的温度敏感性,这意味着Cdc37是限制因素。从野生型与cka2-13菌株中对代谢标记的Cdc37进行免疫沉淀分析表明,Cdc37是CKII的生理底物,并且丝氨酸14和/或丝氨酸17被确定为体内CKII磷酸化的最可能位点。缺乏这些磷酸化位点的cdc37-S14,17A菌株表现出严重的生长和形态缺陷,而在cdc37-S14,17E菌株中这些缺陷部分得到逆转。在37℃时,cdc37-S14A和cdc37-S17A突变体中均观察到CKII活性降低,并且在含有格尔德霉素的培养基上过表达cdc37-S14A或cdc37-S14,17A无法保护cka2-13突变体。此外,在细胞周期的G1期和G2/M期停滞的细胞中CKII活性升高,而这正是Cdc37功能至关重要的相同阶段。总体而言,这些数据定义了CKII和Cdc37之间的正反馈回路。额外的遗传学分析表明,这种CKII/Cdc37相互作用除了对CKII之外,还能正向调节多种蛋白激酶的活性。

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