首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Brain Myosin V Is a Synaptic Vesicle-associatedMotor Protein: Evidence for a Ca2+-dependent Interactionwith the Synaptobrevin–Synaptophysin Complex
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Brain Myosin V Is a Synaptic Vesicle-associatedMotor Protein: Evidence for a Ca2+-dependent Interactionwith the Synaptobrevin–Synaptophysin Complex

机译:脑肌球蛋白V是与突触囊泡相关。运动蛋白:Ca2 +依赖相互作用的证据。与突触素-突触素复合物

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摘要

Brain myosin V is a member of a widely distributed class of unconventional myosins that may be of central importance to organelle trafficking in all eukaryotic cells. Molecular constituents that target this molecular motor to organelles have not been previously identified. Using a combination of immunopurification, extraction, cross-linking, and coprecipitation assays, we demonstrate that the tail domain of brain myosin V forms a stable complex with the synaptic vesicle membrane proteins, synaptobrevin II and synaptophysin. While myosin V was principally bound to synaptic vesicles during rest, this putative transport complex was promptly disassembled upon the depolarization-induced entry of Ca2+ into intact nerve endings. Coimmunoprecipitation assays further indicate that Ca2+ disrupts the in vitro binding of synaptobrevin II to synaptophysin in the presence but not in the absence of Mg2+. We conclude that hydrophilic forces reversibly couple the myosin V tail to a biochemically defined class of organelles in brain nerve terminals.
机译:脑肌球蛋白V是广泛分布的非常规肌球蛋白类别的成员,这可能对所有真核细胞中的细胞器运输至关重要。先前尚未确定将这种分子马达靶向细胞器的分子成分。使用免疫纯化,提取,交联和共沉淀分析的组合,我们证明脑肌球蛋白V的尾部域与突触囊膜蛋白,突触短纤维蛋白II和突触素形成稳定的复合物。尽管肌球蛋白V在休息时主要与突触小泡结合,但是当去极化诱导的Ca 2 + 进入完整的神经末梢时,这种假定的运输复合物立即被分解。免疫共沉淀试验进一步表明,在存在但不存在Mg 2 + 的情况下,Ca 2 + 破坏了突触壁蛋白II与突触素的体外结合。我们得出的结论是,亲水力可逆地将肌球蛋白V尾部耦合到脑神经末梢的生化定义的细胞器类别。

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