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Rab35调节细胞分裂末期步骤所必需的内吞循环途径。

Rab35 regulates an endocytic recycling pathway essential for the terminal steps of cytokinesis.

作者信息

Kouranti Ilektra, Sachse Martin, Arouche Nassim, Goud Bruno, Echard Arnaud

机构信息

Laboratoire Mécanismes moléculaires du transport intracellulaire, Institut Curie, Centre National de la Recherche Scientifique UMR144, 26 rue d'Ulm, 75248 Paris cedex 05, France.

出版信息

Curr Biol. 2006 Sep 5;16(17):1719-25. doi: 10.1016/j.cub.2006.07.020.

Abstract

Cytokinesis is the final step of cell division and leads to the physical separation of the daughter cells. After the ingression of a cleavage membrane furrow that pinches the mother cell, future daughter cells spend much of the cytokinesis phase connected by an intercellular bridge. Rab proteins are major regulators of intracellular transport in eukaryotes, and here, we report an essential role for human Rab35 in both the stability of the bridge and its final abscission. We find that Rab35, whose function in membrane traffic was unknown, is localized to the plasma membrane and endocytic compartments and controls a fast endocytic recycling pathway. Consistent with a key requirement for Rab35-regulated recycling during cell division, inhibition of Rab35 function leads to the accumulation of endocytic markers on numerous cytoplasmic vacuoles in cells that failed cytokinesis. Moreover, Rab35 is involved in the intercellular bridge localization of two molecules essential for the postfurrowing steps of cytokinesis: the phosphatidylinositol 4,5-bis phosphate (PIP2) lipid and the septin SEPT2. We propose that the Rab35-regulated pathway plays an essential role during the terminal steps of cytokinesis by controlling septin and PIP2 subcellular distribution during cell division.

摘要

胞质分裂是细胞分裂的最后一步,导致子细胞的物理分离。在缢缩膜沟陷入并挤压母细胞后,未来的子细胞在胞质分裂阶段的大部分时间里通过细胞间桥相连。Rab蛋白是真核生物细胞内运输的主要调节因子,在此,我们报道了人类Rab35在桥的稳定性及其最终脱离过程中的重要作用。我们发现,功能未知的Rab35定位于质膜和内吞区室,并控制快速内吞循环途径。与细胞分裂过程中Rab35调节的循环的关键需求一致,抑制Rab35功能会导致胞质分裂失败的细胞中许多细胞质液泡上内吞标记物的积累。此外,Rab35参与了胞质分裂沟后步骤所必需的两种分子的细胞间桥定位:磷脂酰肌醇4,5-二磷酸(PIP2)脂质和septin SEPT2。我们提出,Rab35调节的途径通过在细胞分裂过程中控制septin和PIP2的亚细胞分布,在胞质分裂的末期步骤中发挥重要作用。

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