Niu Fengfeng, Sun Kang, Wei Wenjie, Yu Cong, Wei Zhiyi
Department of Biology, Southern University of Science and Technology, Shenzhen, Guangdong, China.
Academy for Advanced Interdisciplinary Studies, Southern University of Science and Technology, Shenzhen, Guangdong, China.
Sci Adv. 2020 Nov 6;6(45). doi: 10.1126/sciadv.abb1307. Print 2020 Nov.
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.
由马达蛋白介导的细胞内运输需要马达蛋白将货物定位在合适的位置。肌球蛋白Va(MyoVa)是一种基于肌动蛋白的马达蛋白,是研究货物运输的经典模型。然而,在MyoVa介导的运输过程中货物卸载的分子基础仍然是个谜。我们已经鉴定出F-肌动蛋白解聚调节因子MICAL1作为MyoVa的结合伴侣,并表明MICAL1与MyoVa的相互作用对于MyoVa定位在中体至关重要。通过与MICAL1结合,MyoVa介导的运输终止,导致囊泡在中体卸载以实现有效的胞质分裂。MyoVa/MICAL1复合物结构表明,MICAL1和F-肌动蛋白组装因子Spires在MyoVa上共享一个重叠的结合表面,这表明F-肌动蛋白动力学在货物卸载中具有调节作用。通过MICAL1突变体下调F-肌动蛋白解聚显著减少了MyoVa和囊泡在中体的积累。总的来说,我们的研究结果表明,MyoVa在中体目的地与MICAL1结合,并触发F-肌动蛋白解聚以卸载囊泡货物。