Graduate School of Pharmaceutical Sciences, Kyoto University, Sakyo-ku, Kyoto 606-8501, Japan.
J Cell Sci. 2012 Sep 1;125(Pt 17):4049-57. doi: 10.1242/jcs.102913. Epub 2012 Jun 8.
Rab11 is known to associate primarily with perinuclear recycling endosomes and regulate recycling of endocytosed proteins. However, the recycling step in which Rab11 participates remains unknown. We show here that, in addition to causing tubulation of recycling endosomes, Rab11 depletion gives rise to accumulation of recycling carriers containing endocytosed transferrin and transferrin receptor beneath the plasma membrane. We also show that the carriers are transported from perinuclear recycling endosomes to the cell periphery along microtubules. Total internal reflection fluorescence microscopy of cells expressing EGFP-tagged transferrin receptor revealed that Rab11 depletion inhibits tethering and fusion of recycling carriers to the plasma membrane. Depletion of Sec15, which interacts with Rab11, or Exo70, both components of the exocyst tethering complex, leads to essentially the same phenotypes as those of Rab11 depletion. Thus, in addition to its role in recycling processes at perinuclear recycling endosomes, Rab11 is transported along microtubules to the cell periphery through association with recycling carriers, and directly regulates vesicle exocytosis at the plasma membrane in concert with the exocyst.
Rab11 主要与核周再循环内体相关联,并调节内吞蛋白的再循环。然而,Rab11 参与的再循环步骤仍然未知。我们在这里表明,除了导致再循环内体的小管化之外,Rab11 的耗竭还导致含有内吞转铁蛋白和转铁蛋白受体的再循环载体在质膜下积累。我们还表明,载体沿着微管从核周再循环内体运输到细胞边缘。用表达 EGFP 标记的转铁蛋白受体的细胞进行全内反射荧光显微镜观察表明,Rab11 耗竭抑制了再循环载体与质膜的锚定和融合。Sec15 的耗竭,其与 Rab11 相互作用,或 Exo70,外泌体锚定复合物的两个组成部分,导致与 Rab11 耗竭基本相同的表型。因此,Rab11 除了在核周再循环内体的再循环过程中起作用外,还通过与再循环载体的结合沿微管运输到细胞边缘,并与外泌体一起直接调节质膜上的囊泡胞吐作用。