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Coiled-Coil–Mediated Dimerization Is Not Required for Myosin VI to Stabilize Actin during Spermatid Individualization in Drosophila melanogaster

机译:在果蝇的精子个体化过程中,对于肌球蛋白VI稳定肌动蛋白,不需要线圈缠绕介导的二聚化。

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Myosin VI is a pointed-end–directed actin motor that is thought to function as both a transporter of cargoes and an anchor, capable of binding cellular components to actin for long periods. Dimerization via a predicted coiled coil was hypothesized to regulate activity and motor properties. However, the importance of the coiled-coil sequence has not been tested in vivo. We used myosin VI's well-defined role in actin stabilization during Drosophila spermatid individualization to test the importance in vivo of the predicted coiled coil. If myosin VI functions as a dimer, a forced dimer should fully rescue myosin VI loss of function defects, including actin stabilization, actin cone movement, and cytoplasmic exclusion by the cones. Conversely, a molecule lacking the coiled coil should not rescue at all. Surprisingly, neither prediction was correct, because each rescued partially and the molecule lacking the coiled coil functioned better than the forced dimer. In extracts, no cross-linking into higher molecular weight forms indicative of dimerization was observed. In addition, a sequence required for altering nucleotide kinetics to make myosin VI dimers processive is not required for myosin VI's actin stabilization function. We conclude that myosin VI does not need to dimerize via the predicted coiled coil to stabilize actin in vivo.
机译:肌球蛋白VI是一种尖端的肌动蛋白马达,被认为既可以充当货物的运输者,又可以充当锚,能够长时间将细胞成分与肌动蛋白结合。假设通过预测的卷曲螺旋二聚化以调节活性和运动特性。但是,线圈螺旋序列的重要性尚未在体内进行测试。我们在果蝇精子个体化过程中使用肌球蛋白VI在肌动蛋白稳定中的明确作用来测试预测的卷曲螺旋在体内的重要性。如果肌球蛋白VI用作二聚体,则强制二聚体应完全挽救肌球蛋白VI的功能缺失,包括肌动蛋白稳定,肌动蛋白视锥运动和视锥细胞质排斥。相反,缺少螺旋形线圈的分子根本不应该拯救。出人意料的是,这两个预测都不正确,因为每个分子都能部分挽救并且缺少卷曲螺旋的分子比强制二聚体的功能更好。在提取物中,未观察到交联成指示二聚化的较高分子量形式。另外,对于肌球蛋白VI的肌动蛋白稳定功能,不需要改变核苷酸动力学以使肌球蛋白VI二聚体持续进行所需的序列。我们得出结论,肌球蛋白VI不需要通过预测的卷曲螺旋二聚来稳定肌动蛋白在体内。

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