Lippé R, Miaczynska M, Rybin V, Runge A, Zerial M
Max Planck Institute for Molecular Cell Biology and Genetics, 01307 Dresden, Germany.
Mol Biol Cell. 2001 Jul;12(7):2219-28. doi: 10.1091/mbc.12.7.2219.
Rab GTPases are central elements of the vesicular transport machinery. An emerging view is that downstream effectors of these GTPases are multiprotein complexes that include nucleotide exchange factors to ensure coupling between GTPase activation and effector function. We have previously shown that Rab5, which regulates various steps of transport along the early endocytic pathway, is activated by a complex consisting of Rabex-5, a Rab5 nucleotide exchange factor, and the effector Rabaptin-5. We postulated that the physical association of these two proteins is necessary for their activity in Rab5-dependent endocytic membrane transport. To evaluate the functional implications of such complex formation, we have reconstituted it with the use of recombinant proteins and characterized its properties. First, we show that Rabaptin-5 increases the exchange activity of Rabex-5 on Rab5. Second, Rab5-dependent recruitment of Rabaptin-5 to early endosomes is completely dependent on its physical association with Rabex-5. Third, complex formation between Rabaptin-5 and Rabex-5 is essential for early endosome homotypic fusion. These results reveal a functional synergy between Rabaptin-5 and Rabex-5 in the complex and have implications for the function of analogous complexes for Rab and Rho GTPases.
Rab GTP酶是囊泡运输机制的核心组成部分。一种新出现的观点认为,这些GTP酶的下游效应器是多蛋白复合物,其中包括核苷酸交换因子,以确保GTP酶激活与效应器功能之间的偶联。我们之前已经表明,Rab5调节早期内吞途径中的各种运输步骤,它由Rabex-5(一种Rab5核苷酸交换因子)和效应器Rabaptin-5组成的复合物激活。我们推测这两种蛋白的物理结合对于它们在依赖Rab5的内吞膜运输中的活性是必要的。为了评估这种复合物形成的功能意义,我们使用重组蛋白对其进行了重构并对其特性进行了表征。首先,我们表明Rabaptin-5增加了Rabex-5对Rab5的交换活性。其次,Rab5依赖的Rabaptin-5向早期内体的募集完全依赖于它与Rabex-5的物理结合。第三,Rabaptin-5和Rabex-5之间的复合物形成对于早期内体同型融合至关重要。这些结果揭示了复合物中Rabaptin-5和Rabex-5之间的功能协同作用,并对Rab和Rho GTP酶的类似复合物的功能具有启示意义。