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溶液中GroEL小伴侣蛋白底物结合位点的鉴定

Identification of substrate binding site of GroEL minichaperone in solution.

作者信息

Tanaka N, Fersht A R

机构信息

Department of Polymer Science and Engineering, Kyoto Institute of Technology, Sakyo, Kyoto, 606-8585, Japan.

出版信息

J Mol Biol. 1999 Sep 10;292(1):173-80. doi: 10.1006/jmbi.1999.3041.

Abstract

It is difficult to obtain high-resolution structural information on the substrate-binding site of intact GroEL. But minichaperones, domains containing the peptide-binding site of GroEL, do constitute tractable systems for detailed studies. A peptide-binding site was located in crystals of a minichaperone and proposed to constitute a model for substrate-binding. We have now located the substrate binding site of the minichaperone GroEL(193-335) in solution by labelling it at various positions with a fluorescent probe and detecting which positions are perturbed on binding a denatured substrate. The fluorescence of a probe attached to a cysteine residue engineered at position 228 (N terminus of helix H8), 241 (helix H8), 261 (helix H9), or 267 (helix H9) was affected significantly by binding of substrate. But there was little change for a label at positions 193, 212, 217 or 293. The dissociation constants between substrates and minichaperone were evaluated from fluorescence anisotropy assays. The effects of salt and temperature were the same as those with intact GroEL. These results indicate that the region around helices H8 and H9 is the substrate-binding site for the apical domain fragment. Intriguingly, the same site is involved in the binding of GroES. Thus, an important function of GroES in the regulation of the activity of GroEL for substrates is to displace the bound substrate by competing for its binding site.

摘要

要获得完整的GroEL底物结合位点的高分辨率结构信息并非易事。但是小型伴侣蛋白,即包含GroEL肽结合位点的结构域,确实构成了用于详细研究的易于处理的系统。在一种小型伴侣蛋白的晶体中定位到了一个肽结合位点,并提出其可构成底物结合的模型。我们现在通过用荧光探针在不同位置标记小型伴侣蛋白GroEL(193 - 335)并检测哪些位置在结合变性底物时受到干扰,从而在溶液中定位了它的底物结合位点。连接到在位置228(螺旋H8的N端)、241(螺旋H8)、261(螺旋H9)或267(螺旋H9)处工程改造的半胱氨酸残基上的探针的荧光,会因底物的结合而受到显著影响。但是在位置193、212、217或293处的标记变化很小。通过荧光各向异性测定评估了底物与小型伴侣蛋白之间的解离常数。盐和温度的影响与完整的GroEL相同。这些结果表明,螺旋H8和H9周围的区域是顶端结构域片段的底物结合位点。有趣的是,同一个位点也参与GroES的结合。因此,GroES在调节GroEL对底物的活性中的一个重要功能是通过竞争其结合位点来取代结合的底物。

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