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首页> 外文期刊>Biochemistry >Mapping the role of active site residues for transducing an ATP-induced conformational change in the bovine 70-kDa heat shock cognate protein.
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Mapping the role of active site residues for transducing an ATP-induced conformational change in the bovine 70-kDa heat shock cognate protein.

机译:定位活性位点残基在牛70 kDa热激同源蛋白中转导ATP诱导的构象变化的作用。

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摘要

ATP binding induces a conformational change in 70-kDa heat shock proteins (Hsp70s) that facilitates release of bound polypeptides. Using the bovine heat shock cognate protein (Hsc70) as a representative of the Hsp70 family, we have characterized the effect of mutations on the coupling between ATP binding and the nucleotide-induced conformational change. Steady-state solution small-angle X-ray scattering and kinetic fluorescence measurements on a 60-kDa fragment of Hsc70 show that point mutations K71M, E175S, D199S, and D206S in the nucleotide binding cleft impair the ability of ATP to induce a conformational change. A secondary mutation in the peptide binding domain, E543K, "rescues" the ATP-induced transition for three of these mutations (E175S/E543K, D199S/E543K, and D206S/E543K) but not for K71M/E543K. Analysis of kinetics of the ATPase cycle confirm that these effects do not result from unexpectedly rapid ATP hydrolysis or slow ATP binding. Crystallographic structures of E175S, D199S, and D206S mutant ATPase fragment proteins show that the mutations do not perturb the tertiary structure of the protein but do significantly alter the protein-ligand interactions, due in part to an apparent charge compensation effect whereby mutating a (probably) negatively charged carboxyl group to a neutral serine displaces a K+ ion from the nucleotide binding cleft in two out of three cases (E175S and D199S but not D206S).
机译:ATP结合诱导70 kDa热激蛋白(Hsp70s)发生构象变化,从而促进结合多肽的释放。使用牛热休克同源蛋白(Hsc70)作为Hsp70家族的代表,我们表征了突变对ATP结合与核苷酸诱导的构象变化之间耦合的影响。在Hsc70的60 kDa片段上进行的稳态溶液小角度X射线散射和动力学荧光测量表明,核苷酸结合裂中的点突变K71M,E175S,D199S和D206S削弱了ATP诱导构象变化的能力。肽结合结构域中的第二个突变E543K“拯救”了其中三个突变(E175S / E543K,D199S / E543K和D206S / E543K)的ATP诱导的转变,但没有拯救K71M / E543K。 ATPase循环动力学的分析证实,这些作用并非来自意料之外的快速ATP水解或缓慢的ATP结合。 E175S,D199S和D206S突变ATPase片段蛋白的晶体学结构表明,该突变不会干扰蛋白的三级结构,但会显着改变蛋白-配体之间的相互作用,部分原因是由于明显的电荷补偿效应,从而突变了(可能)在中性丝氨酸中带负电荷的羧基会在三分之二的情况下(E175S和D199S但不是D206S)从核苷酸结合裂隙中置换出一个K +离子。

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