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丝裂原活化蛋白激酶相关蛋白激酶2对小热休克蛋白Hsp25的应激和丝裂原诱导的磷酸化对于伴侣蛋白特性和细胞热耐受性并非必不可少。

Stress- and mitogen-induced phosphorylation of the small heat shock protein Hsp25 by MAPKAP kinase 2 is not essential for chaperone properties and cellular thermoresistance.

作者信息

Knauf U, Jakob U, Engel K, Buchner J, Gaestel M

机构信息

Max-Delbrück-Centrum für Molekulare Medizin, Berlin, Germany.

出版信息

EMBO J. 1994 Jan 1;13(1):54-60. doi: 10.1002/j.1460-2075.1994.tb06234.x.

Abstract

Small heat shock proteins (sHsps) show a very rapid stress- and mitogen-dependent phosphorylation by MAPKAP kinase 2. Based on this observation, phosphorylation of sHsps was thought to play a key role in mediating thermoresistance immediately after heat shock, before the increased synthesis of heat shock proteins becomes relevant. We have analysed the phosphorylation dependence of the chaperone and thermoresistance-mediating properties of the small heat shock protein Hsp25. Surprisingly, overexpression of Hsp25 mutants, which are not phosphorylated in the transfected cells, confers the same thermoresistant phenotype as overexpression of wild type Hsp25, which is either mono- or bis-phosphorylated at serine residues 15 and 86 within the cells. Furthermore, in vitro phosphorylated Hsp25 shows the same oligomerization properties and the same chaperone activity as the nonphosphorylated protein. No differences between phosphorylated and nonphosphorylated Hsp25 are detected in preventing thermal aggregation of unfolding proteins and assisting refolding of denatured proteins. The results suggest that chaperone properties of the small heat shock proteins contribute to the increased cellular thermoresistance in a phosphorylation-independent manner.

摘要

小热休克蛋白(sHsps)可被丝裂原活化蛋白激酶相关蛋白激酶2迅速磷酸化,这种磷酸化依赖于应激和有丝分裂原。基于这一观察结果,人们认为在热休克蛋白合成增加变得重要之前,sHsps的磷酸化在热休克后立即介导热抗性方面起着关键作用。我们分析了小热休克蛋白Hsp25的伴侣功能和介导热抗性特性对磷酸化的依赖性。令人惊讶的是,在转染细胞中未被磷酸化的Hsp25突变体的过表达赋予了与野生型Hsp25过表达相同的热抗性表型,野生型Hsp25在细胞内丝氨酸残基15和86处可发生单磷酸化或双磷酸化。此外,体外磷酸化的Hsp25与未磷酸化的蛋白具有相同的寡聚化特性和伴侣活性。在防止未折叠蛋白的热聚集和协助变性蛋白复性方面,未检测到磷酸化和未磷酸化的Hsp25之间存在差异。结果表明,小热休克蛋白的伴侣特性以磷酸化非依赖的方式促进了细胞热抗性的增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7d37/394778/0a4e2a16eafb/emboj00049-0063-a.jpg

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