Department of Biology/Chemistry, University of Osnabrück, Germany.
Curr Biol. 2010 Sep 28;20(18):1654-9. doi: 10.1016/j.cub.2010.08.002.
Rab GTPases coordinate membrane fusion reactions [1]. Rab-GDP requires a guanine nucleotide exchange factor (GEF) for its conversion to the active GTP form. It then binds to effectors such as multimeric tethering complexes and supports fusion [2]. GTPase-activating proteins (GAPs) promote GTP hydrolysis to inactivate the Rab. GEFs are thus critical activators of fusion reactions [3, 4]. The Rab GEF family is diverse, ranging from multimeric complexes [5] to monomeric GEFs [6-9]. At the late endosome, Rab7 activation is critical for endosomal maturation. The yeast Rab7 homolog Ypt7 binds to the homotypic fusion and protein sorting (HOPS) complex [10, 11]. Its subunit Vps39/Vam6 has been proposed as a GEF for Ypt7 [12] and the Rag GTPase Gtr1 [13], but other genetic evidence has implicated the endosomal protein Ccz1 as a GEF for Ypt7 [14]. Ccz1 and its binding partner Mon1 have been linked to endosomal transport and maturation [15-20]. We now provide evidence that the dimeric Mon1-Ccz1 complex is the Rab7/Ypt7 GEF. The Mon1-Ccz1 complex, but neither protein alone, counteracts GAP function in vivo, rescues in vitro fusion of vacuoles carrying Ypt7-GDP, and promotes nucleotide exchange on Ypt7 independently of Vps39/HOPS. Our data indicate that the Mon1-Ccz1 complex triggers endosomal maturation by activating Ypt7 on late endosomes.
Rab GTPases 协调膜融合反应 [1]。Rab-GDP 需要鸟嘌呤核苷酸交换因子 (GEF) 才能转化为活性 GTP 形式。然后,它与多聚体 tethering 复合物等效应物结合,支持融合 [2]。GTPase-activating proteins (GAPs) 促进 GTP 水解,从而使 Rab 失活。因此,GEF 是融合反应的关键激活剂 [3,4]。Rab GEF 家族多种多样,从多聚体复合物 [5] 到单体 GEF [6-9]。在晚期内体中,Rab7 的激活对于内体成熟至关重要。酵母 Rab7 同源物 Ypt7 与同源融合和蛋白分选 (HOPS) 复合物结合 [10,11]。其亚基 Vps39/Vam6 被提议为 Ypt7 的 GEF [12] 和 Rag GTPase Gtr1 [13],但其他遗传证据表明内体蛋白 Ccz1 是 Ypt7 的 GEF [14]。Ccz1 和其结合伴侣 Mon1 与内体运输和成熟有关 [15-20]。我们现在提供的证据表明,二聚体 Mon1-Ccz1 复合物是 Rab7/Ypt7 GEF。Mon1-Ccz1 复合物,但不是单独的蛋白质,在体内拮抗 GAP 功能,挽救体外携带 Ypt7-GDP 的液泡融合,并独立于 Vps39/HOPS 促进 Ypt7 的核苷酸交换。我们的数据表明,Mon1-Ccz1 复合物通过在晚期内体上激活 Ypt7 来触发内体成熟。