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Protein folding: How the mechanism of GroEL action is defined by kinetics

机译:蛋白质折叠:如何通过动力学定义GroEL作用的机理

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摘要

We propose a mechanism for the role of the bacterial chaperonin GroEL in folding proteins. The principal assumptions of the mechanism are (i) that many unfolded proteins bind to GroEL because GroEL preferentially binds small unstructured regions of the substrate protein, (ii) that substrate protein within the cavity of GroEL folds by the same kinetic mechanism and rate processes as in bulk solution, (iii) that stable or transient complexes with GroEL during the folding process are defined by a kinetic partitioning between formation and dissociation of the complex and the rate of folding and unfolding of the protein, and (iv) that dissociation from the complex in early stages of folding may lead to aggregation but dissociation at a late stage leads to correct folding.
机译:我们提出了一种细菌伴侣蛋白GroEL在折叠蛋白中的作用机制。该机制的主要假设是:(i)许多未折叠的蛋白质与GroEL结合,因为GroEL优先结合底物蛋白质的较小非结构化区域;(ii)GroEL腔内的底物蛋白质通过与以下相同的动力学机制和速率过程折叠在散装溶液中,(iii)在折叠过程中与GroEL稳定或瞬时形成的复合物由复合物的形成和解离与蛋白质折叠和解折叠的速率之间的动力学分配来定义,并且(iv)与折叠初期的复合物可能导致聚集,但在后期分解则导致正确的折叠。

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