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A thermodynamic coupling mechanism can explain the GroEL-mediated acceleration of the folding of barstar.

机译:热力学耦合机制可以解释GroEL介导的barstar折叠加速。

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摘要

Despite extensive structural and kinetic studies, the mechanism by which the Escherichia coli chaperonin GroEL assists protein folding has remained somewhat elusive. It appears that GroEL might play an active role in facilitating folding, in addition to its role in restricting protein aggregation by secluding folding intermediates. We have investigated the kinetic mechanism of GroEL-mediated refolding of the small protein barstar. GroEL accelerates the observed fast (millisecond) refolding rate, but it does not affect the slow refolding kinetics. A thermodynamic coupling mechanism, in which the concentration of exchange-competent states is increased by the law of mass action, can explain the enhancement of the fast refolding rates. It is not necessary to invoke a catalytic role for GroEL, whereby either the intrinsic refolding rate of a productive folding transition or the unfolding rate of a kinetically trapped off-pathway intermediate is increased by the chaperonin. Copyright 2000 Academic Press.
机译:尽管进行了广泛的结构和动力学研究,但大肠杆菌伴侣蛋白GroEL辅助蛋白质折叠的机制仍然难以捉摸。看来,GroEL除了通过隔离折叠中间体来限制蛋白质聚集外,还可能在促进折叠中发挥积极作用。我们已经研究了GroEL介导的小蛋白barstar折叠的动力学机制。 GroEL可以加快观察到的快速(毫秒)重折叠速度,但不会影响慢速重折叠动力学。一种热力学耦合机制,其中交换能态的浓度通过质量作用定律而增加,可以解释快速重折叠速率的提高。伴侣分子无需增加GroEL的催化作用,从而既可以提高生产折叠过渡的内在重折叠速率,也可以提高动力学捕获的非通路中间体的解折叠速率。版权所有2000学术出版社。

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