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触发因子和DnaK在新合成蛋白质的折叠过程中协同作用。

Trigger factor and DnaK cooperate in folding of newly synthesized proteins.

作者信息

Deuerling E, Schulze-Specking A, Tomoyasu T, Mogk A, Bukau B

机构信息

Institut für Biochemie und Molekularbiologie, Freiburg, Germany.

出版信息

Nature. 1999 Aug 12;400(6745):693-6. doi: 10.1038/23301.

Abstract

The role of molecular chaperones in assisting the folding of newly synthesized proteins in the cytosol is poorly understood. In Escherichia coli, GroEL assists folding of only a minority of proteins and the Hsp70 homologue DnaK is not essential for protein folding or cell viability at intermediate growth temperatures. The major protein associated with nascent polypeptides is ribosome-bound trigger factor, which displays chaperone and prolyl isomerase activities in vitro. Here we show that delta tig::kan mutants lacking trigger factor have no defects in growth or protein folding. However, combined delta tig::kan and delta dnaK mutations cause synthetic lethality. Depletion of DnaK in the delta tig::kan mutant results in massive aggregation of cytosolic proteins. In delta tig::kan cells, an increased amount of newly synthesized proteins associated transiently with DnaK. These findings show in vivo activity for a ribosome-associated chaperone, trigger factor, in general protein folding, and functional cooperation of this protein with a cytosolic Hsp70. Trigger factor and DnaK cooperate to promote proper folding of a variety of E. coli proteins, but neither is essential for folding and viability at intermediate growth temperatures.

摘要

分子伴侣在协助胞质溶胶中新合成蛋白质折叠方面的作用目前还知之甚少。在大肠杆菌中,GroEL仅协助少数蛋白质的折叠,并且Hsp70同源物DnaK在中等生长温度下对于蛋白质折叠或细胞活力并非必不可少。与新生多肽相关的主要蛋白质是核糖体结合的触发因子,它在体外表现出伴侣和脯氨酰异构酶活性。在这里我们表明,缺乏触发因子的δtig::kan突变体在生长或蛋白质折叠方面没有缺陷。然而,δtig::kan和δdnaK的联合突变会导致合成致死。在δtig::kan突变体中耗尽DnaK会导致胞质蛋白大量聚集。在δtig::kan细胞中,大量新合成的蛋白质会与DnaK短暂结合。这些发现表明,核糖体相关伴侣触发因子在一般蛋白质折叠中具有体内活性,并且该蛋白与胞质Hsp70存在功能协作。触发因子和DnaK共同协作以促进多种大肠杆菌蛋白质的正确折叠,但在中等生长温度下,两者对于折叠和活力都不是必需的。

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