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Setting the chaperonin timer: A two-stroke, two-speed, protein machine

机译:设置伴侣计时器:两冲程,两速,蛋白质机器

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摘要

In a study of the timing mechanism of the chaperonin nanomachine we show that the hemicycle time (HCT) is determined by the mean residence time (MRT) of GroES on the cis ring of GroEL. In turn, this is governed by allosteric interactions within the trans ring of GroEL. Ligands that enhance the R (relaxed) state (residual ADP, the product of the previous hemicycle, and K+) extend the MRT and the HCT, whereas ligands that enhance the T (taut) state (unfolded substrate protein, SP) decrease the MRT and the HCT. In the absence of SP, the chaperonin machine idles in the resting state, but in the presence of SP it operates close to the speed limit, set by the rate of ATP hydrolysis by the cis ring. Thus, the conformational states of the trans ring largely control the speed of the complete chaperonin cycle.
机译:在对伴侣蛋白纳米机的计时机制的研究中,我们表明半循环时间(HCT)由GroES在GroEL顺式环上的平均停留时间(MRT)决定。反过来,这由GroEL的跨环内的变构相互作用决定。增强R(松弛)状态的配体(残留的ADP,先前半环的产物和K +)扩展了MRT和HCT,而增强T(绷紧)状态(未折叠的底物蛋白,SP)的配体降低了MRT和HCT。在没有SP的情况下,伴侣蛋白机器在静止状态下处于空闲状态,但是在有SP的情况下,其运行速度接近由顺式环的ATP水解速率设定的速度极限。因此,反式环的构象状态在很大程度上控制了完整的伴侣蛋白循环的速度。

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