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人类热休克蛋白27(HSP27)在丝氨酸78和82处被热休克激酶和丝裂原活化激酶磷酸化,这些激酶识别与S6激酶II相同的氨基酸基序。

Human HSP27 is phosphorylated at serines 78 and 82 by heat shock and mitogen-activated kinases that recognize the same amino acid motif as S6 kinase II.

作者信息

Landry J, Lambert H, Zhou M, Lavoie J N, Hickey E, Weber L A, Anderson C W

机构信息

Centre de Recherche en Cancérologie, Université Laval, Québec, Canada.

出版信息

J Biol Chem. 1992 Jan 15;267(2):794-803.

PMID:1730670
Abstract

The intracellular concentration of the 27-kDa mammalian heat shock protein, HSP27, increases several-fold after heat and other metabolic stresses and is closely associated with the acquisition of thermotolerance. Posttranslational modifications may also affect the function of HSP27. Heat shock of HeLa cell cultures, or treatment with arsenite, phorbol ester, or tumor necrosis factor, caused a rapid phosphorylation of preexisting HSP27 and the appearance of three phosphorylated isoforms, HSP27 B, C, and D. Digestion with trypsin and fractionation of the peptides by reverse phase high performance liquid chromatography revealed three 32P-labeled phosphopeptides. Microsequence analysis identified peak I as Ala76-Leu77-Ser78-Arg79 and peak II as Gln80-Leu81-Ser82-Ser83-Gly84-Val85- Ser86-Glu87-Ile88-Arg89; peak III contained the undigested peptide pair Ala76-Arg89. Ser82 was the major site and Ser78 the minor site of phosphorylation. Mutant proteins with Ser78 or Ser82 altered to glycine or Ser78-Ser82 double mutants were phosphorylated to reduced extents in vivo after heat or arsenite treatment. Ser78 and Ser82 (and Ser15) occur in the sequence motif RXXS, which is recognized by ribosomal protein S6 kinase II. Mitogenic stimulation of serum-deprived, Go-arrested Chinese hamster cells with serum, thrombin, or fibroblast growth factor also stimulated phosphorylation of HSP27 Ser78 and Ser82, and mitogenic stimulation and heat shock activated protein kinase activities that phosphorylated HSP27 and protein S6 in vitro. These results suggest that HSP27 may exert phosphorylation-activated functions linked with growth signaling pathways in unstressed cells. A homeostatic function at this level could protect cells from adverse effects of signal transduction systems which may be activated inappropriately during stress.

摘要

27 kDa的哺乳动物热休克蛋白HSP27在受热和其他代谢应激后,其细胞内浓度会增加数倍,并且与耐热性的获得密切相关。翻译后修饰也可能影响HSP27的功能。对HeLa细胞培养物进行热休克处理,或用亚砷酸盐、佛波酯或肿瘤坏死因子处理,会导致预先存在的HSP27迅速磷酸化,并出现三种磷酸化异构体,即HSP27 B、C和D。用胰蛋白酶消化并通过反相高效液相色谱法对肽段进行分级分离,结果显示有三种32P标记的磷酸肽。微序列分析确定峰I为Ala76-Leu77-Ser78-Arg79,峰II为Gln80-Leu81-Ser82-Ser83-Gly84-Val85-Ser86-Glu87-Ile88-Arg89;峰III包含未消化的肽对Ala76-Arg89。Ser82是主要的磷酸化位点,Ser78是次要的磷酸化位点。将Ser78或Ser82突变为甘氨酸的突变蛋白,或Ser78-Ser82双突变体,在受热或亚砷酸盐处理后,在体内的磷酸化程度降低。Ser78和Ser82(以及Ser15)出现在序列基序RXXS中,该基序可被核糖体蛋白S6激酶II识别。用血清、凝血酶或成纤维细胞生长因子对血清饥饿、处于G0期的中国仓鼠细胞进行促有丝分裂刺激,也会刺激HSP27 Ser78和Ser82的磷酸化,并且促有丝分裂刺激和热休克会激活在体外使HSP27和蛋白S6磷酸化的蛋白激酶活性。这些结果表明,HSP27可能发挥与未受应激细胞中生长信号通路相关的磷酸化激活功能。在此水平上的稳态功能可以保护细胞免受应激期间可能被不适当激活的信号转导系统的不利影响。

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