Section of Surgical Sciences and the Epithelial Biology Center, Vanderbilt University School of Medicine, Nashville, TN, USA.
Traffic. 2014 Mar;15(3):292-308. doi: 10.1111/tra.12146. Epub 2014 Jan 22.
A tripartite association of Rab11a with both Rab11-FIP2 and MYO5B regulates recycling endosome trafficking. We sought to define the intermolecular interactions required between Rab11-FIP2 and MYO5B. Using a random mutagenesis strategy, we identified point mutations at S229P or G233E in Rab11-FIP2 that caused loss of interaction with MYO5B in yeast two-hybrid assays as well as loss of interaction of Rab11-FIP2(129-356) with MYO5B tail when expressed in HeLa cells. Single mutations or the double S229P/G233E mutation failed to alter the association of full-length Rab11-FIP2 with MYO5B tail in HeLa cells. While EGFP-Rab11-FIP2 wild type colocalized with endogenous MYO5B staining in MDCK cells, EGFP-Rab11-FIP2(S229P/G233E) showed a significant decrease in localization with endogenous MYO5B. Analysis of Rab11a-containing vesicle movement in live HeLa cells demonstrated that when the MYO5B/Rab11-FIP2 association is perturbed by mutation or by Rab11-FIP2 knockdown, vesicle movement is increased in both speed and track length, consistent with an impairment of MYO5B tethering at the cytoskeleton. These results support a critical role for the interaction of MYO5B with Rab11-FIP2 in stabilizing the functional complex with Rab11a, which regulates dynamic movements of membrane recycling vesicles.
Rab11a 与 Rab11-FIP2 和 MYO5B 的三聚体复合物调节循环内体运输。我们试图确定 Rab11-FIP2 和 MYO5B 之间所需的分子间相互作用。使用随机诱变策略,我们鉴定出 Rab11-FIP2 中的 S229P 或 G233E 点突变,在酵母双杂交测定中导致与 MYO5B 相互作用丧失,并且当在 HeLa 细胞中表达时,Rab11-FIP2(129-356)与 MYO5B 尾部的相互作用丧失。单个突变或双 S229P/G233E 突变未能改变全长 Rab11-FIP2 与 HeLa 细胞中 MYO5B 尾部的关联。虽然 EGFP-Rab11-FIP2 野生型与 MDCK 细胞中内源性 MYO5B 染色共定位,但 EGFP-Rab11-FIP2(S229P/G233E)与内源性 MYO5B 的共定位显著减少。在活 HeLa 细胞中分析含有 Rab11a 的囊泡运动的分析表明,当 MYO5B/Rab11-FIP2 相互作用被突变或 Rab11-FIP2 敲低干扰时,囊泡运动的速度和轨迹长度都增加,这与 MYO5B 在细胞骨架上的固定受到损害一致。这些结果支持 MYO5B 与 Rab11-FIP2 的相互作用在稳定与 Rab11a 调节膜回收囊泡动态运动的功能复合物中起关键作用。