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伴侣蛋白对结核分枝杆菌HspR DNA结合活性的调控

Modulation of DNA-binding activity of Mycobacterium tuberculosis HspR by chaperones.

作者信息

Das Gupta Twishasri, Bandyopadhyay Boudhayan, Das Gupta Sujoy K

机构信息

Bose Institute, Department of Microbiology, P1/12 CIT Scheme VIIM, Kolkata 700054, India.

出版信息

Microbiology (Reading). 2008 Feb;154(Pt 2):484-490. doi: 10.1099/mic.0.2007/012294-0.

Abstract

In Mycobacterium tuberculosis, hspR is the last gene of the dnaKJE operon. It encodes the repressor HspR, which regulates the expression from this operon by binding to a consensus upstream sequence known as HAIR (HspR-associated inverted repeats). Previous investigations in the related Gram-positive bacterium Streptomyces coelicolor have revealed that DnaK acts as a co-repressor for HspR. In this investigation, a similar situation was encountered using the corresponding mycobacterial pair. However, the novel feature unearthed in this study is that the mycobacterial GroELs, GroEL1 and GroEL2, considerably stimulate the HAIR-binding activity of the HspR-DnaK combination. That these GroELs play a role in the folding process was evident from the observation that when heat- or chemically denatured HspR was renatured, the protein gained optimal activity only if one of these GroEL class chaperones was present along with DnaK. The renaturation process was found to be dependent on ATP hydrolysis. The DnaK-dependent DNA-binding activity of HspR could also be stimulated by DnaJ, but GrpE, which is known to release DnaK-bound substrates, was found to be inhibitory. The results of this study suggest that protein folding plays a substantial role in the activation of HspR following heat shock and that DnaK may be involved in two ways -- first, as a chaperone acting in concert with GroEL and/or DnaJ and second, as a co-repressor bound to HspR.

摘要

在结核分枝杆菌中,hspR是dnaKJE操纵子的最后一个基因。它编码阻遏蛋白HspR,该蛋白通过与一个名为HAIR(HspR相关反向重复序列)的共有上游序列结合来调节该操纵子的表达。先前对相关革兰氏阳性细菌天蓝色链霉菌的研究表明,DnaK作为HspR的共阻遏物发挥作用。在本研究中,使用相应的分枝杆菌对也遇到了类似情况。然而,本研究中发现的新特征是,分枝杆菌的GroELs,即GroEL1和GroEL2,能显著刺激HspR-DnaK组合与HAIR的结合活性。从以下观察结果可以明显看出这些GroELs在折叠过程中发挥作用:当热变性或化学变性的HspR复性时,只有当这些GroEL类伴侣蛋白之一与DnaK同时存在时,该蛋白才能获得最佳活性。发现复性过程依赖于ATP水解。HspR的DnaK依赖性DNA结合活性也可被DnaJ刺激,但已知能释放与DnaK结合底物的GrpE却具有抑制作用。本研究结果表明,蛋白质折叠在热休克后HspR的激活中起重要作用,并且DnaK可能通过两种方式参与其中——第一,作为与GroEL和/或DnaJ协同作用的伴侣蛋白;第二,作为与HspR结合的共阻遏物。

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