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Nucleotide binding to the chaperonin GroEL: non-cooperative binding of ATP analogs and ADP, and cooperative effect of ATP

机译:核苷酸与伴侣蛋白GroEL的结合:ATP类似物和ADP的非协同结合以及ATP的协同作用

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摘要

Chaperonin-assisted protein folding proceeds through cycles of ATP binding and hydrolysis by GroEL, which undergoes a large structural change by the ATP binding or hydrolysis. One of the main concerns of GroEL is the mechanism of the productive and cooperative structural change of GroEL induced by the nucleotide. We studied the cooperative nature of GroEL by nucleotide titration using isothermal titration calorimetry and fluorescence spectroscopy. Our results indicated that the binding of ADP and ATP analogs to a single ring mutant (SR1), as well as that to GroEL, was non-cooperative. Only ATP induces an apparently cooperative conformational change in both proteins. Furthermore, the fluorescence changes of pyrene-labeled GroEL indicated that GroEL has two kinds of nucleotide binding sites. The fluorescence titration result fits well with a model in which two kinds of binding sites are both non-cooperative and independent of each other. These results suggest that the binding and hydrolysis of ATP may be necessary for the cooperative transition of GroEL.
机译:伴侣蛋白辅助的蛋白质折叠通过ATP结合和GroEL水解的循环而进行,而GroEL则通过ATP结合或水解而发生较大的结构变化。 GroEL的主要关注之一是核苷酸诱导的GroEL生产性和协同性结构改变的机制。我们使用等温滴定热法和荧光光谱法通过核苷酸滴定研究了GroEL的协同性质。我们的结果表明,ADP和ATP类似物与单环突变体(SR1)以及与GroEL的结合是不合作的。只有ATP会诱导两种蛋白质的明显协同构象变化。此外,of标记的GroEL的荧光变化表明,GroEL具有两种核苷酸结合位点。荧光滴定结果与其中两种结合位点都不合作且彼此独立的模型非常吻合。这些结果表明,ATP的结合和水解对于GroEL的协同过渡可能是必需的。

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