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Myosin VI Must Dimerize and Deploy Its Unusual Lever Arm in Order to Perform Its Cellular Roles

机译:Myosin VI必须进行二聚化并展开其不寻常的杠杆臂才能发挥其细胞作用

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摘要

It is unclear if the reverse-direction myosin, myosin VI, functions as a monomer or dimer in cells and how it generates large movements on actin. We deleted a stable, single α-helix (SAH) domain that has been proposed to function as part of a lever arm to amplify movements, without impact on in vitro movement or in vivo functions. A myosin VI construct that used this SAH domain as part of its lever arm was able to take large steps in vitro, but did not rescue in vivo functions. It was necessary for myosin VI to internally dimerize, triggering unfolding of a three-helix bundle and calmodulin binding in order to step normally in vitro and rescue endocytosis and Golgi morphology in myosin VI-null fibroblasts. A model for myosin VI emerges in which cargo binding triggers dimerization and unfolds the three-helix bundle to create a lever arm essential for in vivo functions.
机译:尚不清楚反向肌球蛋白,肌球蛋白VI是否在细胞中起单体或二聚体的作用,以及它如何在肌动蛋白上产生大的运动。我们删除了一个稳定的单个α-螺旋(SAH)结构域,该结构域已被提议作为杠杆臂的一部分来放大运动,而对体外运动或体内功能没有影响。使用该SAH结构域作为其杠杆臂一部分的肌球蛋白VI构建体能够在体外采取较大步骤,但无法挽救体内功能。肌球蛋白VI必须在内部进行二聚化,触发三螺旋束的解开并与钙调蛋白结合,才能正常地在体外步进并挽救肌球蛋白VI无效的成纤维细胞的内吞作用和高尔基体形态。出现了一种肌球蛋白VI模型,其中货物结合触发二聚化并展开三螺旋束,以创建对于体内功能至关重要的杠杆臂。

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