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Direct observation of intermediate states during the stepping motion of kinesin-1

机译:直接观察kinesin-1步进运动期间的中间状态

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摘要

The dimeric motor protein kinesin-1 walks along microtubules by alternatingly hydrolyzing ATP and moving two motor domains ('heads'). Nanometer-precision single-molecule studies demonstrated that kinesin takes regular 8-nm steps upon hydrolysis of each ATP; however, the intermediate states between steps have not been directly visualized. Here, we employed high-temporal resolution dark-field microscopy to directly visualize the binding and unbinding of kinesin heads to or from microtubules during processive movement. Our observations revealed that upon unbinding from microtubules, the labeled heads were displaced rightward and underwent tethered diffusive movement. Structural and kinetic analyses of wild-type and mutant kinesins with altered neck linker lengths provided evidence that rebinding of the unbound head to the rear-binding site is prohibited by a tension increase in the neck linker and that ATP hydrolysis by the leading head is suppressed when both heads are bound to the microtubule, thereby explaining how the two heads coordinate to move in a hand-over-hand manner.
机译:二聚体运动蛋白kinesin-1通过交替水解ATP并移动两个运动域(“头部”)而沿着微管移动。纳米级精密单分子研究表明,在水解每种ATP时,驱动蛋白会以规则的8 nm步距移动。但是,步骤之间的中间状态尚未直接显示。在这里,我们采用了高温分辨率的暗视野显微镜,以直观地观察在进行性运动过程中,驱动蛋白头与微管之间的结合和非结合。我们的观察表明,从微管上解开后,标记的头部向右移动并进行了束缚的扩散运动。结构和动力学分析的野生型和突变型驱动蛋白的颈部接头长度改变提供了证据,证明未结合的头部重新结合到后结合位点被颈部接头的张力增加所禁止,并且前导头的ATP水解受到抑制当两个头都绑定到微管时,从而说明两个头如何协调以交接的方式移动。

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