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The Hsp40 J-domain Stimulates Hsp70 When Tethered by the Client to the ATPase Domain

机译:当客户端将Hsp40 J域绑定到ATPase域时它会刺激Hsp70。

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摘要

The Escherichia coli Hsp40 DnaJ uses its J-domain (Jd) to couple ATP hydrolysis and client protein capture in Hsp70 DnaK. Fusion of the Jd to peptide p5 (as in Jdp5) dramatically increases the apparent affinity of the p5 moiety for DnaK in the presence of ATP, and Jdp5 stimulates ATP hydrolysis in DnaK by several orders of magnitude. NMR experiments with [15N]Jdp5 demonstrated that the peptide tethers the Jd to the ATPase domain. Thus, ATP hydrolysis and client protein binding in DnaK are coupled principally through the association of the client with DnaJ. Overexpression of a recombinant Jd was specifically toxic to cells that simultaneously expressed DnaK. No toxicity was observed when overexpressing Jdp5 or mutant Jd or when co-overexpressing the Jd and the nucleotide exchange factor GrpE. The results suggest that the Jd shifts DnaK to a client-bound form by stimulating the DnaK ATPase but only when the Jd is brought to DnaK by a client-Hsp40 complex.
机译:大肠杆菌Hsp40 DnaJ使用其J结构域(Jd)耦合ATP水解和Hsp70 DnaK中的客户蛋白质捕获。 Jd与肽p5的融合(如在Jdp5中)在存在ATP的情况下显着增加了p5部分对DnaK的表观亲和力,而Jdp5在DnaK中刺激ATP水解了几个数量级。 [[sup> 15 N] Jdp5的NMR实验表明,该肽将Jd束缚在ATPase域上。因此,DnaK中的ATP水解和客户蛋白质的结合主要是通过客户与DnaJ的结合来进行的。重组Jd的过表达对同时表达DnaK的细胞具有特异性毒性。当过表达Jdp5或突变体Jd或共同过表达Jd和核苷酸交换因子GrpE时,未观察到毒性。结果表明,Jd通过刺激DnaK ATPase将DnaK转变为与客户绑定的形式,但仅当Jd由客户-Hsp40复合物带入DnaK时才发生。

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