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对groEL具有不同亲和力的同源蛋白。天冬氨酸转氨酶同工酶在不同温度下的重折叠。

Homologous proteins with different affinities for groEL. The refolding of the aspartate aminotransferase isozymes at varying temperatures.

作者信息

Mattingly J R, Iriarte A, Martinez-Carrion M

机构信息

Division of Molecular Biology and Biochemistry, School of Biological Sciences, University of Missouri, Kansas City 64110-2499.

出版信息

J Biol Chem. 1995 Jan 20;270(3):1138-48. doi: 10.1074/jbc.270.3.1138.

Abstract

The homologous cytosolic and mitochondrial isozymes of aspartate aminotransferase (c- and mAspAT, respectively) seem to follow very different folding pathways after synthesis in rabbit reticulocyte lysate, suggesting that the nascent proteins interact differently with molecular chaperones (Mattingly, J. R., Jr., Iriarte, A., and Martinez-Carrion, M. (1993) J. Biol. Chem. 268, 26320-26327). In an attempt to discern the structural basis for this phenomenon, we have begun to study the effect of temperature on the refolding of the guanidine hydrochloride-denatured, purified proteins and their interaction with the groEL/groES molecular chaperone system from Escherichia coli. In the absence of chaperones, temperature has a critical effect on the refolding of the two isozymes, with mAspAT being more susceptible than cAspAT to diminishing refolding yields at increasing temperatures. No refolding is observed for mAspAT at physiological temperatures. The molecular chaperones groEL and groES can extend the temperature range over which the AspAT isozymes successfully refold; however, cAspAT can still refold at higher temperatures than mAspAT. In the absence of groES and MgATP, the two isozymes interact differently with groEL, groEL arrests the refolding of mAspAT throughout the temperature range of 0-45 degrees C. Adding only MgATP releases very little mAspAT from groEL; both groES and MgATP are required for significant refolding of mAspAT in the presence of groEL. On the other hand, the extent to which groEL inhibits the refolding of cAspAT depends upon the temperature of the refolding reaction, only slowing the reaction at 0 degrees C but arresting it completely at 30 degrees C. MgATP alone is sufficient to effect the release of cAspAT from groEL at any temperature examined; inclusion of groES along with MgATP has no effect on the refolding yield but does increase the refolding rate at temperatures greater than 15 degrees C. These results demonstrate that groEL can have significantly different affinities for proteins with highly homologous final tertiary and quarternary structures and suggest that dissimilarities in the primary sequence of the protein substrates may control the structure of the folding intermediates captured by groEL and/or the composition of the surfaces through which the folding proteins interact with groEL.

摘要

天冬氨酸氨基转移酶的同源胞质和线粒体同工酶(分别为c - 和mAspAT)在兔网织红细胞裂解物中合成后,似乎遵循非常不同的折叠途径,这表明新生蛋白质与分子伴侣的相互作用方式不同(Mattingly, J. R., Jr., Iriarte, A., and Martinez-Carrion, M. (1993) J. Biol. Chem. 268, 26320 - 26327)。为了探究这种现象的结构基础,我们开始研究温度对盐酸胍变性的纯化蛋白质重折叠的影响,以及它们与大肠杆菌的groEL/groES分子伴侣系统的相互作用。在没有分子伴侣的情况下,温度对这两种同工酶的重折叠有关键影响,随着温度升高,mAspAT比重折叠产率降低的cAspAT更敏感。在生理温度下未观察到mAspAT的重折叠。分子伴侣groEL和groES可以扩展AspAT同工酶成功重折叠的温度范围;然而,cAspAT在比mAspAT更高的温度下仍能重折叠。在没有groES和MgATP的情况下,这两种同工酶与groEL的相互作用不同,在0 - 45摄氏度的整个温度范围内,groEL都会阻止mAspAT的重折叠。仅添加MgATP只能从groEL中释放出很少量的mAspAT;在有groEL存在的情况下,mAspAT的显著重折叠需要groES和MgATP两者。另一方面,groEL抑制cAspAT重折叠的程度取决于重折叠反应的温度,在0摄氏度时仅减缓反应,但在30摄氏度时完全阻止反应。在任何检测的温度下,单独的MgATP就足以使cAspAT从groEL中释放出来;在高于15摄氏度的温度下,同时加入groES和MgATP对重折叠产率没有影响,但会提高重折叠速率。这些结果表明,groEL对具有高度同源最终三级和四级结构的蛋白质可能具有显著不同的亲和力,并表明蛋白质底物一级序列的差异可能控制groEL捕获的折叠中间体的结构和/或折叠蛋白质与groEL相互作用的表面组成。

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