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She1 affects dynein through direct interactions with the microtubule and the dynein microtubule-binding domain

机译:She1通过与微管和动力蛋白微管结合域的直接相互作用影响动力蛋白

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摘要

Cytoplasmic dynein is an enormous minus end-directed microtubule motor. Rather than existing as bare tracks, microtubules are bound by numerous microtubule-associated proteins (MAPs) that have the capacity to affect various cellular functions, including motor-mediated transport. One such MAP is She1, a dynein effector that polarizes dynein-mediated spindle movements in budding yeast. Here, we characterize the molecular basis by which She1 affects dynein, providing the first such insight into which a MAP can modulate motor motility. We find that She1 affects the ATPase rate, microtubule-binding affinity, and stepping behavior of dynein, and that microtubule binding by She1 is required for its effects on dynein motility. Moreover, we find that She1 directly contacts the microtubule-binding domain of dynein, and that their interaction is sensitive to the nucleotide-bound state of the motor. Our data support a model in which simultaneous interactions between the microtubule and dynein enables She1 to directly affect dynein motility.
机译:细胞质动力蛋白是一个巨大的负向末端微管马达。微管不是由裸露的轨道存在,而是由众多微管相关蛋白(MAP)结合,这些蛋白具有影响各种细胞功能的能力,包括运动介导的转运。一种这样的MAP是She1,它是一种动力蛋白,可以使发芽酵母中动力蛋白介导的纺锤运动极化。在这里,我们表征了She1影响动力蛋白的分子基础,首次提供了MAP可以调节运动性的见解。我们发现She1影响ATP酶的速率,微管结合亲和力和达因的步进行为,She1对微管的结合是其对达因运动的影响所必需的。此外,我们发现She1直接接触动力蛋白的微管结合域,并且它们的相互作用对电机的核苷酸结合状态敏感。我们的数据支持一种模型,其中微管和动力蛋白之间的同时相互作用使She1直接影响动力蛋白的动力。

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