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首页> 外文期刊>Journal of bacteriology >The Hsc66-Hsc20 Chaperone System inEscherichia coli: Chaperone Activity and Interactions with the DnaK-DnaJ-GrpE System
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The Hsc66-Hsc20 Chaperone System inEscherichia coli: Chaperone Activity and Interactions with the DnaK-DnaJ-GrpE System

机译:大肠杆菌中的Hsc66-Hsc20分子伴侣系统:分子伴侣活性和与DnaK-DnaJ-GrpE系统的相互作用

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Hsc66, a stress-70 protein, and Hsc20, a J-type accessory protein, comprise a newly described Hsp70-type chaperone system in addition to DnaK-DnaJ-GrpE in Escherichia coli. Because endogenous substrates for the Hsc66-Hsc20 system have not yet been identified, we investigated chaperone-like activities of Hsc66 and Hsc20 by their ability to suppress aggregation of denatured model substrate proteins, such as rhodanese, citrate synthase, and luciferase. Hsc66 suppressed aggregation of rhodanese and citrate synthase, and ATP caused effects consistent with complex destabilization typical of other Hsp70-type chaperones. Differences in the activities of Hsc66 and DnaK, however, suggest that these chaperones have dissimilar substrate specificity profiles. Hsc20, unlike DnaJ, did not exhibit intrinsic chaperone activity and appears to function solely as a regulatory cochaperone protein for Hsc66. Possible interactions between the Hsc66-Hsc20 and DnaK-DnaJ-GrpE chaperone systems were also investigated by measuring the effects of cochaperone proteins on Hsp70 ATPase activities. The nucleotide exchange factor GrpE did not stimulate the ATPase activity of Hsc66 and thus appears to function specifically with DnaK. Cross-stimulation by the cochaperones Hsc20 and DnaJ was observed, but the requirement for supraphysiological concentrations makes it unlikely that these interactions occur significantly in vivo. Together these results suggest that Hsc66-Hsc20 and DnaK-DnaJ-GrpE comprise separate molecular chaperone systems with distinct, nonoverlapping cellular functions.
机译:Hsc66(一种应激70蛋白)和Hsc20(一种J型辅助蛋白)除了在大肠杆菌中的DnaK-DnaJ-GrpE之外,还包含一种新近描述的Hsp70型分子伴侣系统。由于尚未确定Hsc66-Hsc20系统的内源性底物,我们通过其抑制变性模型底物蛋白(如罗丹花,柠檬酸合酶和荧光素酶)聚集的能力来研究Hsc66和Hsc20的伴侣样活性。 Hsc66抑制了若丹酸和柠檬酸合酶的聚集,并且ATP引起的效应与其他Hsp70型分子伴侣典型的复杂去稳定作用一致。但是,Hsc66和DnaK活性的差异表明这些分子伴侣具有不同的底物特异性谱。与DnaJ不同,Hsc20没有表现出固有的分子伴侣活性,并且似乎仅作为Hsc66的调控伴侣蛋白。 Hsc66-Hsc20和DnaK-DnaJ-GrpE伴侣系统之间可能的相互作用也通过测量伴侣蛋白对Hsp70 ATPase活性的影响进行了研究。核苷酸交换因子GrpE不会刺激Hsc66的ATPase活性,因此似乎与DnaK特异起作用。观察到了伴侣蛋白Hsc20和DnaJ的交叉刺激,但是对超生理学浓度的要求使得这些相互作用不太可能在体内显着发生。这些结果共同表明,Hsc66-Hsc20和DnaK-DnaJ-GrpE包含具有独特的,不重叠的细胞功能的独立分子伴侣系统。

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