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GroE分子伴侣机器对大肠杆菌β-半乳糖苷酶体外重折叠的影响。

Influence of the GroE molecular chaperone machine on the in vitro refolding of Escherichia coli beta-galactosidase.

作者信息

Ayling A, Baneyx F

机构信息

Department of Chemical Engineering, University of Washington, Seattle 98195-1750, USA.

出版信息

Protein Sci. 1996 Mar;5(3):478-87. doi: 10.1002/pro.5560050309.

Abstract

We have studied the effect of the components of the GroE molecular chaperone machine on the refolding of the Escherichia coli enzyme beta-galactosidase, a tetrameric protein whose 116-kDa promoters should not completely fit within the central cavity of the GroEL toroid. In the absence of other additives, GroEL formed a weak complex with chemically denatured beta-galactosidase, reduced its propensity to aggregate, and increased the recovery yields of active enzyme twofold without altering its folding pathway. When present together with the chaperonin, ATP--and to a lesser extent AMP-PNP--reduced the recovery yields and led to the resumption of aggregation. The use of the complete chaperonin system (GroEL, GroES, and ATP) eliminated the GroEL-mediated increase in recovery and folding proceeded less efficiently than in buffer alone. This unusual behavior can be explained in terms of a chaperonin "buffering" effect and the different affinities of GroE complexes for denatured beta-galactosidase.

摘要

我们研究了GroE分子伴侣机器的各组分对大肠杆菌β-半乳糖苷酶复性的影响,β-半乳糖苷酶是一种四聚体蛋白,其116 kDa的亚基不应完全容纳在GroEL环的中央腔内。在没有其他添加剂的情况下,GroEL与化学变性的β-半乳糖苷酶形成弱复合物,降低其聚集倾向,并使活性酶的回收率提高两倍,而不改变其折叠途径。当与伴侣蛋白、ATP(以及程度较小的AMP-PNP)一起存在时,回收率降低并导致聚集重新开始。使用完整的伴侣蛋白系统(GroEL、GroES和ATP)消除了GroEL介导的回收率增加,并且折叠效率比单独在缓冲液中更低。这种不寻常的行为可以用伴侣蛋白的“缓冲”效应以及GroE复合物对变性β-半乳糖苷酶的不同亲和力来解释。

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