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Regulation of bi-directional movement of single kinesin-5 Cin8 molecules

机译:单驱动蛋白5 Cin8分子的双向运动调控

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摘要

Kinesin-5 mechanoenzymes drive mitotic spindle dynamics as slow, processive microtubule (MT)-plus-end directed motors. Surprisingly, the Saccharomyces cerevisiae kinesin-5 Cin8 was recently found to be bi-directional: it can move processively in bothdirections on MTs. Two hypotheses have been suggested for the mechanism of the directionality switch: (1) single molecules of Cin8 are intrinsically minus-end directed, but mechanical coupling between two or more motors triggers the switch; (2) a singlemotor can switch direction, and "cargo binding" i.e., binding between two MTs triggers the switch to plus-end motility. Single-molecule fluorescence data we published recently, and augment here, favor hypothesis (2). In low-ionic-strength conditions, single molecules of Cin8 move in both minus- and plus-end directions. Fluorescence photo bleaching data rule out aggregation of Cin8 while they move in the plus and in the minus direction. The evidence thus points toward cargo regulation of directionality,which is likely to be related to cargo regulation in other kinesins. The molecular mechanisms of this regulation, however, remain to be elucidated.
机译:Kinesin-5机械酶作为慢速,进行性微管(MT)加末端定向电机驱动有丝分裂纺锤体动力学。令人惊讶的是,最近发现酿酒酵母驱动蛋白5 Cin8是双向的:它可以在MTs上双向前进。对于方向性开关的机理,提出了两个假设:(1)Cin8的单分子本质上是负端导向的,但是两个或多个电机之间的机械耦合会触发该开关; (2)单电机可以切换方向,“货物捆绑”即两个MT之间的捆绑触发了向正向运动的切换。我们最近发表的单分子荧光数据在这里得到了补充(假设2)。在低离子强度条件下,Cin8的单分子沿负端和正端方向移动。荧光照片漂白数据排除了Cin8在正向和负向移动时的聚集。因此,证据指向了方向性的货物调节,这可能与其他驱动蛋白的货物调节有关。但是,该调节的分子机理尚待阐明。

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