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F-actin disassembly factor MICAL1 binding to Myosin Va mediates cargo unloading during cytokinesis

机译:F-肌动蛋白拆卸因子Mical1与肌球蛋白VA的结合介导Cytokinesis期间的货物卸载

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Motor-mediated intracellular trafficking requires motors to position cargoes at proper locations. Myosin Va (MyoVa), an actin-based motor, is a classic model for studying cargo transport. However, the molecular basis underlying cargo unloading in MyoVa-mediated transport has remained enigmatic. We have identified MICAL1, an F-actin disassembly regulator, as a binding partner of MyoVa and shown that MICAL1-MyoVa interaction is critical for localization of MyoVa at the midbody. By binding to MICAL1, MyoVa-mediated transport is terminated, resulting in vesicle unloading at the midbody for efficient cytokinesis. The MyoVa/MICAL1 complex structure reveals that MICAL1 and F-actin assembly factors, Spires, share an overlapped binding surface on MyoVa, suggesting a regulatory role of F-actin dynamics in cargo unloading. Down-regulating F-actin disassembly by a MICAL1 mutant significantly reduces MyoVa and vesicles accumulating at the midbody. Collectively, our findings demonstrate that MyoVa binds to MICAL1 at the midbody destination and triggers F-actin disassembly to unload the vesicle cargo.
机译:电动机介导的细胞内贩运需要电机在适当的位置定位货物。肌球蛋白VA(Myova)是一种基于肌动蛋白的电动机,是学习货物运输的经典模型。然而,Myova介导的运输中的货物卸载的分子基础仍然是神秘的。我们已经确定了Mical1,一种F-actin脱索调节剂,作为Myova的结合伴侣,并表明Micali1-Myova互动对于Myova在中间人的定位至关重要。通过与Mical1结合,终止Myova介导的转运,导致囊泡卸载在中间体以获得有效的细胞因子。 Myova / Mical1复杂结构表明,Mical1和F-Actin组装因子,尖刺,在Myova上共享重叠的装订表面,表明F-Actin动态在货物卸货中的监管作用。通过MICAL1突变体拆卸的下调F-actin拆卸显着减少了Myova和积累在山体上的囊泡。统称,我们的研究结果表明Myova在米特目的地的Mical1绑定并触发F-Actin拆卸以卸载囊泡货物。

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