Itoh Takashi, Watabe Akiko, Toh-E Akio, Matsui Yasushi
Department of Biological Sciences, Graduate School of Science, University of Tokyo, Hongo, Tokyo 113-0033, Japan.
Mol Cell Biol. 2002 Nov;22(22):7744-57. doi: 10.1128/MCB.22.22.7744-7757.2002.
We identified Ypt11p, a rab-type small GTPase, by its functional and two-hybrid interaction with Myo2p, a class V myosin of the budding yeast Saccharomyces cerevisiae. The tail domain of Myo2p was coimmunoprecipitated with Ypt11p, suggesting that Ypt11p forms a complex with Myo2p at its tail domain in vivo. Mutational analysis of YPT11 suggests that Myo2p is a putative effector of Ypt11p. Deletion of YPT11 induced partial delay of mitochondrial transmission to the bud, and overexpression of YPT11 resulted in mitochondrial accumulation in the bud, indicating that Ypt11p acts positively on mitochondrial distribution toward the bud. We isolated two myo2 mutants, myo2-338 and myo2-573, which showed genetic interactions with YPT11. The myo2-573 mutation, identified by a synthetic lethal interaction with ypt11-null, induced a defect in mitochondrial distribution toward the bud, indicating that Myo2p plays a crucial role in polarized distribution of mitochondria. The myo2-338 mutation was identified as the mutation that abolished the effect of overexpressed YPT11, such as the Ypt11p-dependent accumulation of mitochondria in the bud, and the affinity of Myo2p for Ypt11p was reduced. These results indicate that complex formation of Ypt11p with Myo2p accelerates the function of Myo2p for mitochondrial distribution toward the bud.
我们通过与酿酒酵母(Saccharomyces cerevisiae)的V类肌球蛋白Myo2p的功能及双杂交相互作用,鉴定出一种rab型小GTP酶Ypt11p。Myo2p的尾部结构域与Ypt11p进行了共免疫沉淀,这表明Ypt11p在体内其尾部结构域与Myo2p形成了复合物。对YPT11的突变分析表明,Myo2p是Ypt11p的一个假定效应器。YPT11的缺失导致线粒体向芽的传递出现部分延迟,而YPT11的过表达导致线粒体在芽中积累,这表明Ypt11p对线粒体向芽的分布起正向作用。我们分离出了两个myo2突变体,myo2 - 338和myo2 - 573,它们与YPT11存在遗传相互作用。通过与ypt11缺失的合成致死相互作用鉴定出的myo2 - 573突变,导致线粒体向芽的分布出现缺陷,这表明Myo2p在线粒体的极性分布中起关键作用。myo2 - 338突变被鉴定为消除过表达YPT11效应的突变,例如芽中Ypt11p依赖性的线粒体积累,并且Myo2p与Ypt11p的亲和力降低。这些结果表明,Ypt11p与Myo2p的复合物形成加速了Myo2p对线粒体向芽分布的功能。