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一种新型小分子热休克蛋白对凋亡性细胞死亡的预防作用

Preventing apoptotic cell death by a novel small heat shock protein.

作者信息

Bellyei Szabolcs, Szigeti Andras, Pozsgai Eva, Boronkai Arpad, Gomori Eva, Hocsak Eniko, Farkas Robert, Sumegi Balazs, Gallyas Ferenc

机构信息

Department of Biochemistry and Medical Chemistry, University of Pécs, 12 Szigeti Street, H-7624 Pécs, Hungary.

出版信息

Eur J Cell Biol. 2007 Mar;86(3):161-71. doi: 10.1016/j.ejcb.2006.12.004. Epub 2007 Feb 1.

Abstract

NCBI database analysis indicated that the human C1orf41 protein (small heat shock-like protein-Hsp16.2) has sequence similarity with small heat shock proteins (sHsps). Since sHsps have chaperone function, and so prevent aggregation of denatured proteins, we determined whether Hsp16.2 could prevent the heat-induced aggregation of denatured proteins. Under our experimental conditions, recombinant Hsp16.2 prevented aggregation of aldolase and glyceraldehyde-3-phosphate dehydrogenase, and protected Escherichia coli cells from heat stress indicating its chaperone function. Hsp16.2 also formed oligomeric complexes in aqueous solution. Hsp16.2 was found to be expressed at different levels in cell lines and tissues, and was mainly localized to the nucleus and the cytosol, but to a smaller extent, it could be also found in mitochondria. Hsp16.2 could be modified covalently by poly(ADP ribosylation) and acetylation. Hsp16.2 over-expression prevented etoposide-induced cell death as well as the release of mitochondrial cytochrome c and caspase activation. These data suggest that Hsp16.2 can prevent the destabilization of mitochondrial membrane systems and could represent a suitable target for modulating cell death pathways.

摘要

美国国立生物技术信息中心(NCBI)数据库分析表明,人类C1orf41蛋白(小热休克样蛋白-Hsp16.2)与小热休克蛋白(sHsps)具有序列相似性。由于sHsps具有伴侣功能,可防止变性蛋白聚集,因此我们确定Hsp16.2是否能防止热诱导的变性蛋白聚集。在我们的实验条件下,重组Hsp16.2可防止醛缩酶和甘油醛-3-磷酸脱氢酶聚集,并保护大肠杆菌细胞免受热应激,表明其具有伴侣功能。Hsp16.2在水溶液中也形成寡聚复合物。研究发现Hsp16.2在细胞系和组织中的表达水平不同,主要定位于细胞核和细胞质,但在较小程度上也可在线粒体中发现。Hsp16.2可通过多聚(ADP核糖基化)和乙酰化进行共价修饰。Hsp16.2的过表达可防止依托泊苷诱导的细胞死亡以及线粒体细胞色素c的释放和半胱天冬酶激活。这些数据表明,Hsp16.2可防止线粒体膜系统的不稳定,可能是调节细胞死亡途径的合适靶点。

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