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Development of free-energy-based models for chaperonin containing TCP-1 mediated folding of actin

机译:基于伴侣蛋白的TCP-1介导的肌动蛋白折叠的基于自由能的伴侣蛋白模型的开发

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摘要

A free-energy-based approach is used to describe the mechanism through which chaperonin-containing TCP-1 (CCT) folds the filament-forming cytoskeletal protein actin, which is one of its primary substrates. The experimental observations on the actin folding and unfolding pathways are collated and then re-examined from this perspective, allowing us to determine the position of the CCT intervention on the actin free-energy folding landscape. The essential role for CCT in actin folding is to provide a free-energy contribution from its ATP cycle, which drives actin to fold from a stable, trapped intermediate I3, to a less stable but now productive folding intermediate I2. We develop two hypothetical mechanisms for actin folding founded upon concepts established for the bacterial type I chaperonin GroEL and extend them to the much more complex CCT system of eukaryotes. A new model is presented in which CCT facilitates free-energy transfer through direct coupling of the nucleotide hydrolysis cycle to the phases of actin substrate maturation.
机译:基于自由能的方法用于描述含伴侣蛋白的TCP-1(CCT)折叠形成细丝的细胞骨架蛋白肌动蛋白的机制,肌动蛋白是其主要底物之一。对肌动蛋白折叠和展开路径的实验观察结果进行整理,然后从这个角度重新检查,从而使我们能够确定CCT干预在肌动蛋白自由能折叠景观中的位置。 CCT在肌动蛋白折叠中的基本作用是从其ATP循环中提供自由能,从而驱动肌动蛋白从稳定的,被困住的中间体I3折叠到不稳定的但现在生产率更高的折叠中间体I2。我们针对细菌I型伴侣蛋白GroEL建立的概念建立了两种假设的肌动蛋白折叠机制,并将其扩展到更复杂的真核生物CCT系统中。提出了一种新模型,其中CCT通过将核苷酸水解循环与肌动蛋白底物成熟相直接偶联来促进自由能转移。

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