Horiuchi H, Lippé R, McBride H M, Rubino M, Woodman P, Stenmark H, Rybin V, Wilm M, Ashman K, Mann M, Zerial M
European Molecular Biology Laboratory, Heidelberg, Germany.
Cell. 1997 Sep 19;90(6):1149-59. doi: 10.1016/s0092-8674(00)80380-3.
The small GTPase Rab5 plays an essential role in endocytic traffic. Rab GDP dissociation inhibitor delivers Rab5 to the membrane, where a nucleotide exchange activity allows recruitment of an effector protein, Rabaptin-5. Here we uncovered a novel 60 kDa Rab5-binding protein, Rabex-5. Rabex-5 forms a tight physical complex with Rabaptin-5, and this complex is essential for endocytic membrane fusion. Sequencing of mammalian Rabex-5 by nanoelectrospray mass spectrometry and cloning revealed striking homology to Vps9p, a yeast protein implicated in endocytic traffic. Rabex-5 displays GDP/GTP exchange activity on Rab5 upon delivery of the GTPase to the membrane. This demonstrates that a soluble exchange factor coupled to a Rab effector translocates from cytosol to the membrane, where the complex stabilizes the GTPase in the active state.
小GTP酶Rab5在内吞运输中起关键作用。Rab GDP解离抑制剂将Rab5转运至膜上,在那里一种核苷酸交换活性促使效应蛋白Rabaptin-5的募集。在此,我们发现了一种新的60 kDa Rab5结合蛋白Rabex-5。Rabex-5与Rabaptin-5形成紧密的物理复合物,且该复合物对于内吞膜融合至关重要。通过纳米电喷雾质谱法对哺乳动物Rabex-5进行测序并克隆,结果显示其与Vps9p具有显著同源性,Vps9p是一种参与内吞运输的酵母蛋白。当GTP酶转运至膜上时,Rabex-5在Rab5上表现出GDP/GTP交换活性。这表明与Rab效应器偶联的可溶性交换因子从胞质溶胶转运至膜上,在膜上该复合物将GTP酶稳定于活性状态。