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Hydrolysable ATP is a requirement for the correct interaction of molecular chaperonins cpn60 and cpn10.

机译:水解性ATP是分子伴侣蛋白cpn60和cpn10正确相互作用的必要条件。

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摘要

Over recent years the binding ability of the molecular chaperone cpn60 (GroEL14) and its co-chaperone cpn10 (GroES7) has been reported to occur under an assortment of specific conditions from the use of non-hydrolysable ATP analogues (namely adenosine 5'-[gamma-thio]triphosphate) to requiring hydrolysable ATP for any interaction to occur. We have investigated this further using the molecular hydrodynamic methods (hydrodynamic bead modelling, sedimentation-velocity analytical ultracentrifugation and dynamic light-scattering), allowing the process to be followed under physiologically relevant dilute solution conditions, combined with absorption spectrophotometry to determine GroES7-GroEL14 interaction through the rate inhibition of the cpn60's ATPase activity by GroES7. The results found here indicate that the presence of hydrolysable ATP is required to facilitate correct GroES7 interaction with GroEL14 in solution.
机译:近年来,据报道分子伴侣cpn60(GroEL14)和其伴侣伴侣cpn10(GroES7)的结合能力是在各种特定条件下通过使用不可水解的ATP类似物(即腺苷5'-[ γ-硫代三磷酸],需要发生水解才能生成任何相互作用。我们使用分子流体动力学方法(流体动力学珠建模,沉降速度分析超速离心和动态光散射)进一步研究了这一过程,使该过程可在生理相关的稀溶液条件下进行,并结合吸收分光光度法确定GroES7-GroEL14相互作用通过GroES7对cpn60的ATPase活性的速率抑制。此处发现的结果表明,需要有可水解的ATP来促进正确的GroES7与GroEL14在溶液中的相互作用。

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