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Ensembles of Bidirectional Kinesin Cin8 Produce Additive Forces in Both Directions of Movement

机译:双向驱动蛋白Cin8的集合在两个运动方向上产生加力

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摘要

Most kinesin motors move in only one direction along microtubules. Members of the kinesin-5 subfamily were initially described as unidirectional plus-end-directed motors and shown to produce piconewton forces. However, some fungal kinesin-5 motors are bidirectional. The force production of a bidirectional kinesin-5 has not yet been measured. Therefore, it remains unknown whether the mechanism of the unconventional minus-end-directed motility differs fundamentally from that of plus-end-directed stepping. Using force spectroscopy, we have measured here the forces that ensembles of purified budding yeast kinesin-5 Cin8 produce in microtubule gliding assays in both plus- and minus-end direction. Correlation analysis of pause forces demonstrated that individual Cin8 molecules produce additive forces in both directions of movement. In ensembles, Cin8 motors were able to produce single-motor forces up to a magnitude of ∼1.5 pN. Hence, these properties appear to be conserved within the kinesin-5 subfamily. Force production was largely independent of the directionality of movement, indicating similarities between the motility mechanisms for both directions. These results provide constraints for the development of models for the bidirectional motility mechanism of fission yeast kinesin-5 and provide insight into the function of this mitotic motor.
机译:大多数驱动蛋白马达沿着微管仅在一个方向上移动。 kinesin-5亚家族的成员最初被描述为单向正向定向电动机,并显示会产生微微力。但是,某些真菌kinesin-5电动机是双向的。尚未测量双向驱动蛋白5的作用力。因此,未知的非负端运动的机理与正端步进的运动是否根本不同尚不清楚。使用力谱法,我们在这里测量了在微管滑动试验中正负方向的纯化芽芽酵母驱动蛋白5 Cin8产生的合力。停顿力的相关分析表明,单个Cin8分子在两个运动方向上都产生加力。在合奏中,Cin8电机能够产生最大约为1.5 pN的单电机力。因此,这些特性似乎在驱动蛋白5亚家族中是保守的。力的产生在很大程度上与运动的方向无关,表明两个方向的动力机制之间相似。这些结果为裂变酵母驱动蛋白-5的双向运动机制模型的开发提供了限制,并提供了对此有丝分裂运动的功能的见解。

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