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Backsteps induced by nucleotide analogs suggest the front head of kinesin is gated by strain

机译:核苷酸类似物引起的退步提示驱动蛋白的前端被菌株控制

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摘要

The two-headed kinesin motor harnesses the energy of ATP hydrolysis to take 8-nm steps, walking processively along a microtubule, alternately stepping with each of its catalytic heads in a hand-over-hand fashion. Two persistent challenges for models of kinesin motility are to explain how the two heads are coordinated (“gated”) and when the translocation step occurs relative to other events in the mechanochemical reaction cycle. To investigate these questions, we used a precision optical trap to measure the single-molecule kinetics of kinesin in the presence of substrate analogs beryllium fluoride or adenylyl-imidodiphosphate. We found that normal stepping patterns were interspersed with long pauses induced by analog binding, and that these pauses were interrupted by short-lived backsteps. After a pause, processive stepping could only resume once the kinesin molecule took an obligatory, terminal backstep, exchanging the positions of its front and rear heads, presumably to allow release of the bound analog from the new front head. Preferential release from the front head implies that the kinetics of the two heads are differentially affected when both are bound to the microtubule, presumably by internal strain that is responsible for the gating. Furthermore, we found that ATP binding was required to reinitiate processive stepping after the terminal backstep. Together, our results support stepping models in which ATP binding triggers the mechanical step and the front head is gated by strain.
机译:双头驱动蛋白马达利用ATP水解的能量采取8 nm的步长,沿着微管顺序地行走,并以交接的方式交替地踩着其每个催化头。驱动蛋白运动模型的两个持续挑战是解释两个头如何协调(“门控”)以及何时相对于机械化学反应周期中的其他事件发生易位步骤。为了研究这些问题,我们在底物类似物氟化铍或腺苷酰亚胺二磷酸酯存在的情况下,使用精密的光阱来测量驱动蛋白的单分子动力学。我们发现正常的步进模式散布着由模拟绑定引起的长时间停顿,并且这些停顿被短暂的后步中断。停顿后,只有在驱动蛋白分子采取了强制性的最终后退步骤,交换其前,后头部的位置后,才能恢复进行性步进,以使结合的类似物从新的前头部释放出来。从前头部优先释放意味着,当两个头部都绑定到微管时,两个头部的动力学会受到不同的影响,这大概是由负责门控的内部应变引起的。此外,我们发现ATP结合是终端退步后重新开始进行性一步所必需的。总之,我们的结果支持步进模型,在该模型中,ATP结合触发了机械步进,而前端则受到应变的约束。

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