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The Antiparallel Dimerization of Myosin X Imparts Bundle Selectivity for Processive Motility

机译:肌球蛋白X的反平行二聚化赋予了束缚运动选择性的束缚选择性。

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摘要

Myosin X is an unconventional actin-based molecular motor involved in filopodial formation, microtubule-actin filament interaction, and cell migration. Myosin X is an important component of filopodia regulation, localizing to tips of growing filopodia by an unclear targeting mechanism. The native α-helical dimerization domain of myosin X is thought to associate with antiparallel polarity of the two amino acid chains, making myosin X the only myosin that is currently considered to form antiparallel dimers. This study aims to determine if antiparallel dimerization of myosin X imparts selectivity toward actin bundles by comparing the motility of parallel and antiparallel dimers of myosin X on single and fascin-bundled actin filaments. Antiparallel myosin X dimers exhibit selective processivity on fascin-bundled actin and are only weakly processive on single actin filaments below saturating [ATP]. Artificial forced parallel dimers of myosin X are robustly processive on both single and bundled actin, exhibiting no selectivity. To determine the relationship between gating of the reaction steps and observed differences in motility, a mathematical model was developed to correlate the parameters of motility with the biochemical and mechanical kinetics of the dimer. Results from the model, constrained by experimental data, suggest that the probability of binding forward, toward the barbed end of the actin filament, is lower in antiparallel myosin X on single actin filaments compared to fascin-actin bundles and compared to constructs of myosin X with parallel dimerization.
机译:肌球蛋白X是一种非常规的基于肌动蛋白的分子马达,参与​​了丝虫的形成,微管-肌动蛋白丝相互作用和细胞迁移。肌球蛋白X是丝状伪足调节的重要组成部分,通过不清楚的靶向机制定位在生长的丝状伪足的尖端。肌球蛋白X的天然α-螺旋二聚结构域被认为与两条氨基酸链的反平行极性相关,使肌球蛋白X成为目前被认为形成反平行二聚体的唯一肌球蛋白。这项研究旨在确定肌球蛋白X的反平行二聚化是否通过对肌球蛋白X平行和反平行的肌动蛋白丝上平行和反平行的肌球蛋白X的运动性赋予对肌动蛋白束的选择性。反平行肌球蛋白X二聚体对成束束缚的肌动蛋白表现出选择性的合成能力,仅对饱和[ATP]以下的单个肌动蛋白丝具有弱的合成能力。肌球蛋白X的人工强迫平行二聚体对单个肌动蛋白和捆绑肌动蛋白都具有强大的合成能力,没有选择性。为了确定反应步骤的门控与观察到的运动性之间的关系,开发了数学模型以将运动性参数与二聚体的生化动力学和机械动力学相关联。该模型的结果受实验数据的约束,表明与肌成束蛋白-肌动蛋白束相比,与肌动蛋白X的构建体相比,单肌动蛋白丝上的反平行肌球蛋白X朝肌动蛋白丝的带刺端向前结合的可能性更低平行二聚化。

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