Heidtman Matthew, Chen Catherine Z, Collins Ruth N, Barlowe Charles
Department of Biochemistry, Dartmouth Medical School, Hanover, NH 03755, USA.
J Cell Biol. 2003 Oct 13;163(1):57-69. doi: 10.1083/jcb.200306118.
Yeast Ypt1p-interacting protein (Yip1p) belongs to a conserved family of transmembrane proteins that interact with Rab GTPases. We encountered Yip1p as a constituent of ER-derived transport vesicles, leading us to hypothesize a direct role for this protein in transport through the early secretory pathway. Using a cell-free assay that recapitulates protein transport from the ER to the Golgi complex, we find that affinity-purified antibodies directed against the hydrophilic amino terminus of Yip1p potently inhibit transport. Surprisingly, inhibition is specific to the COPII-dependent budding stage. In support of this in vitro observation, strains bearing the temperature-sensitive yip1-4 allele accumulate ER membranes at a nonpermissive temperature, with no apparent accumulation of vesicle intermediates. Genetic interaction analyses of the yip1-4 mutation corroborate a function in ER budding. Finally, ordering experiments show that preincubation of ER membranes with COPII proteins decreases sensitivity to anti-Yip1p antibodies, indicating an early requirement for Yip1p in vesicle formation. We propose that Yip1p has a previously unappreciated role in COPII vesicle biogenesis.
酵母Ypt1p相互作用蛋白(Yip1p)属于与Rab GTP酶相互作用的保守跨膜蛋白家族。我们发现Yip1p是内质网衍生运输小泡的组成成分,这使我们推测该蛋白在早期分泌途径的运输中起直接作用。使用一种概括从内质网到高尔基体复合物蛋白质运输的无细胞检测方法,我们发现针对Yip1p亲水性氨基末端的亲和纯化抗体能有效抑制运输。令人惊讶的是,抑制作用对依赖COPII的出芽阶段具有特异性。为支持这一体外观察结果,携带温度敏感型yip1 - 4等位基因的菌株在非允许温度下积累内质网膜,而没有明显的小泡中间体积累。yip1 - 4突变的遗传相互作用分析证实其在内质网出芽中的功能。最后,排序实验表明内质网膜与COPII蛋白预孵育会降低对抗Yip1p抗体的敏感性,表明Yip1p在小泡形成早期是必需的。我们提出Yip1p在COPII小泡生物发生中具有先前未被认识的作用。