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大肠杆菌groE伴侣蛋白。

The Escherichia coli groE chaperonins.

作者信息

Georgopoulos C, Ang D

机构信息

Department of Cellular, Viral and Molecular Biology, University of Utah Medical Center, Salt Lake City 84132.

出版信息

Semin Cell Biol. 1990 Feb;1(1):19-25.

PMID:1983267
Abstract

The E.coli groES and groEL genes have been shown to form an operon, to be essential for E. coli viability, and to belong to the so-called heat-shock class of genes whose expression is regulated by the intracellular levels of sigma factor sigma 32. Both groE chaperonin proteins possess a seven-fold axis of symmetry, groES being composed of seven identical subunits of 97 amino acids each, and groEL of fourteen identical subunits of 548 amino acids each. The two groE chaperonins interact intimately as judged by both genetic and biochemical criteria. This interaction has been shown to be required for both bacteriophage morphogenesis and bacterial growth. The groEL chaperonin has been shown to bind to a number of incomplete or unfolded polypeptides in vitro. Such binding may prevent misfolding and promote rapid intra- or intermolecular folding of polypeptides in vivo. The proposed role of the groES chaperonin is to displace the polypeptides bound to groEL, thus effectively promoting the recycling of groEL.

摘要

大肠杆菌的groES和groEL基因已被证明形成一个操纵子,对大肠杆菌的生存能力至关重要,并且属于所谓的热休克基因类别,其表达受σ因子σ32细胞内水平的调节。两种groE伴侣蛋白都具有七重对称轴,groES由七个相同的97个氨基酸亚基组成,groEL由14个相同的548个氨基酸亚基组成。从遗传学和生物化学标准判断,这两种groE伴侣蛋白密切相互作用。这种相互作用已被证明对噬菌体形态发生和细菌生长都是必需的。groEL伴侣蛋白已被证明在体外能与许多不完全或未折叠的多肽结合。这种结合可能会防止错误折叠,并促进体内多肽的快速分子内或分子间折叠。groES伴侣蛋白的推测作用是取代与groEL结合的多肽,从而有效地促进groEL的循环利用。

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