Fagarasanu Andrei, Mast Fred D, Knoblach Barbara, Jin Yui, Brunner Matthew J, Logan Michael R, Glover J N Mark, Eitzen Gary A, Aitchison John D, Weisman Lois S, Rachubinski Richard A
Department of Cell Biology and 2 Department of Biochemistry, University of Alberta, Edmonton, Alberta T6G2H7, Canada.
J Cell Biol. 2009 Aug 24;186(4):541-54. doi: 10.1083/jcb.200904050. Epub 2009 Aug 17.
In Saccharomyces cerevisiae, the class V myosin motor Myo2p propels the movement of most organelles. We recently identified Inp2p as the peroxisome-specific receptor for Myo2p. In this study, we delineate the region of Myo2p devoted to binding peroxisomes. Using mutants of Myo2p specifically impaired in peroxisome binding, we dissect cell cycle-dependent and peroxisome partitioning-dependent mechanisms of Inp2p regulation. We find that although total Inp2p levels oscillate with the cell cycle, Inp2p levels on individual peroxisomes are controlled by peroxisome inheritance, as Inp2p aberrantly accumulates and decorates all peroxisomes in mother cells when peroxisome partitioning is abolished. We also find that Inp2p is a phosphoprotein whose level of phosphorylation is coupled to the cell cycle irrespective of peroxisome positioning in the cell. Our findings demonstrate that both organelle positioning and cell cycle progression control the levels of organelle-specific receptors for molecular motors to ultimately achieve an equidistribution of compartments between mother and daughter cells.
在酿酒酵母中,V类肌球蛋白马达蛋白Myo2p推动大多数细胞器的移动。我们最近鉴定出Inp2p是Myo2p的过氧化物酶体特异性受体。在本研究中,我们描绘了Myo2p中负责结合过氧化物酶体的区域。利用在过氧化物酶体结合方面特异性受损的Myo2p突变体,我们剖析了Inp2p调控的细胞周期依赖性和过氧化物酶体分配依赖性机制。我们发现,尽管Inp2p的总水平随细胞周期振荡,但单个过氧化物酶体上的Inp2p水平由过氧化物酶体遗传控制,因为当废除过氧化物酶体分配时,Inp2p会异常积累并装饰母细胞中的所有过氧化物酶体。我们还发现Inp2p是一种磷蛋白,其磷酸化水平与细胞周期相关,而与过氧化物酶体在细胞中的定位无关。我们的研究结果表明,细胞器定位和细胞周期进程都控制着分子马达细胞器特异性受体的水平,最终实现母细胞和子细胞之间细胞器的均匀分布。