EHD1调节β1整合素的内体运输:对粘着斑、细胞铺展和迁移的影响。

EHD1 regulates beta1 integrin endosomal transport: effects on focal adhesions, cell spreading and migration.

作者信息

Jović Marko, Naslavsky Naava, Rapaport Debora, Horowitz Mia, Caplan Steve

机构信息

Department of Biochemistry and Molecular Biology and Eppley Cancer Center, University of Nebraska Medical Center, Omaha, NE 68198-5870, USA.

出版信息

J Cell Sci. 2007 Mar 1;120(Pt 5):802-14. doi: 10.1242/jcs.03383. Epub 2007 Feb 6.

Abstract

beta1 integrins bind to the extracellular matrix and stimulate signaling pathways leading to crucial cellular functions, including proliferation, apoptosis, cell spreading and migration. Consequently, control of beta1 integrin function depends upon its subcellular localization, and recent studies have begun to unravel the complex regulatory mechanisms involved in integrin trafficking. We report that the C-terminal Eps15-homology (EH) domain-containing protein EHD1 plays an important role in regulating beta1 integrin transport. Initially, we demonstrated that RNAi-knockdown of Ehd1 results in impaired recycling of beta1 integrins and their accumulation in a transferrin-containing endocytic recycling compartment. Mouse embryonic fibroblast (MEF) cells derived from EHD1-knockout mice (Ehd1(-/-) MEF) exhibited lower overall levels of beta1 integrins on the plasma membrane, but higher cell-surface-expressed activated beta1 integrins, and larger, more prominent focal adhesions resulting from slower kinetics of focal adhesion disassembly. In addition, both migration and cell spreading on fibronectin were impaired in Ehd1(-/-) MEF cells, and these defects could be similarly induced by EHD1-RNAi treatment of normal Ehd1(+/+) MEF cells. They could also be rescued by transfection of wild-type EHD1 into Ehd1(-/-) MEF cells. Our data support a role for EHD1 in beta1 integrin recycling, and demonstrate a requirement for EHD1 in integrin-mediated downstream functions.

摘要

β1整合素与细胞外基质结合并刺激信号通路,从而引发包括增殖、凋亡、细胞铺展和迁移在内的关键细胞功能。因此,β1整合素功能的调控取决于其亚细胞定位,并且最近的研究已开始揭示整合素运输中涉及的复杂调控机制。我们报道含C末端Eps15同源(EH)结构域的蛋白EHD1在调节β1整合素运输中起重要作用。最初,我们证明Ehd1的RNA干扰敲低会导致β1整合素的再循环受损,并使其在含转铁蛋白的内吞再循环区室中积累。源自EHD1基因敲除小鼠(Ehd1(-/-) MEF)的小鼠胚胎成纤维细胞(MEF)在质膜上的β1整合素总体水平较低,但细胞表面表达的活化β1整合素水平较高,且粘着斑更大、更明显,这是由于粘着斑解体动力学较慢所致。此外,Ehd1(-/-) MEF细胞在纤连蛋白上的迁移和细胞铺展均受损,并且用EHD1-RNAi处理正常Ehd1(+/+) MEF细胞也可类似地诱导这些缺陷。将野生型EHD1转染到Ehd1(-/-) MEF细胞中也可挽救这些缺陷。我们的数据支持EHD1在β1整合素再循环中的作用,并证明整合素介导的下游功能需要EHD1。

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