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Overlap of cargo binding sites on myosin V coordinates the inheritance of diverse cargoes

机译:肌球蛋白V上货物结合位点的重叠可协调各种货物的遗传

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摘要

During cell division, organelles are distributed to distinct locations at specific times. For the yeast vacuole, the myosin V motor, Myo2, and its vacuole-specific cargo adaptor, Vac17, regulate where the vacuole is deposited and the timing of vacuole movement. In this paper, we show that Mmr1 functions as a mitochondria-specific cargo adaptor early in the cell cycle and that Mmr1 binds Myo2 at the site that binds Vac17. We demonstrate that Vac17 and Mmr1 compete for binding at this site. Unexpectedly, this competition regulates the volume of vacuoles and mitochondria inherited by the daughter cell. Furthermore, eight of the nine known Myo2 cargo adaptors overlap at one of two sites. Vac17 and Mmr1 overlap at one site, whereas Ypt11 and Kar9 bind subsets of residues that also bind Ypt31/Ypt32, Sec4, and Inp2. These observations predict that competition for access to Myo2 may be a common mechanism to coordinate the inheritance of diverse cargoes.
机译:在细胞分裂期间,细胞器在特定时间分布到不同的位置。对于酵母液泡,肌球蛋白V马达Myo2及其液泡特异性载物适配器Vac17调节液泡的沉积位置和液泡移动的时间。在本文中,我们显示Mmr1在细胞周期的早期起线粒体特异性货物衔接子的作用,并且Mmr1在结合Vac17的位点结合Myo2。我们证明了Vac17和Mmr1在该位点竞争结合。出乎意料的是,这种竞争调节子细胞遗传的液泡和线粒体的体积。此外,九个已知的Myo2货物适配器中的八个在两个位置之一重叠。 Vac17和Mmr1在一个位点重叠,而Ypt11和Kar9结合残基的子集,这些残基也结合Ypt31 / Ypt32,Sec4和Inp2。这些观察结果表明,争夺Myo2的竞争可能是协调各种货物遗传的通用机制。

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