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首页> 外文期刊>Structure >The crystal structure of the reduced, Zn2+-bound form of the B. subtilis Hsp33 chaperone and its implications for the activation mechanism
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The crystal structure of the reduced, Zn2+-bound form of the B. subtilis Hsp33 chaperone and its implications for the activation mechanism

机译:枯草芽孢杆菌Hsp33分子伴侣的还原型,Zn2 +结合形式的晶体结构及其对激活机制的影响

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摘要

The bacterial heat shock protein Hsp33 is a redox-regulated chaperone activated by oxidative stress. In response to oxidation, four cysteines within a Zn2+ binding C-terminal domain form two disulfide bonds with concomitant release of the metal. This leads to the formation of the biologically active Hsp33 dimer. The crystal structure of the N-terminal domain of the E. coli protein has been reported, but neither the structure of the Zn2+ binding motif nor the nature of its regulatory interaction with the rest of the protein are known. Here we report the crystal structure of the full-length B. subtilis Hsp33 in the reduced form. The structure of the N-terminal, dimerization domain is similar to that of the E. coli protein, although there is no domain swapping. The Zn2+ binding domain is clearly resolved showing the details of the tetrahedral coordination of Zn2+ by four thiolates. We propose a structure-based activation pathway for Hsp33.
机译:细菌热激蛋白Hsp33是由氧化应激激活的氧化还原调节的伴侣。响应于氧化,Zn2 +结合的C末端域内的四个半胱氨酸形成两个二硫键,同时释放出金属。这导致生物活性的Hsp33二聚体的形成。大肠杆菌蛋白N末端结构域的晶体结构已有报道,但Zn2 +结合基序的结构及其与蛋白质其余部分的调节相互作用的性质均未知。在这里,我们以还原形式报告了全长枯草芽孢杆菌Hsp33的晶体结构。 N-末端二聚化结构域的结构类似于大肠杆菌蛋白质,尽管没有结构域交换。清楚地解析了Zn2 +的结合结构域,显示了四个硫醇盐对Zn2 +的四面体配位的细节。我们提出了基于结构的Hsp33激活途径。

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