Clathrin light chains are required for the gyrating-clathrin recycling pathway and thereby promote cell migration

网格蛋白 内吞作用 细胞生物学 内体 受体介导的内吞作用 转铁蛋白受体 整合素 细胞迁移 菲拉明 RAC1 转铁蛋白 肌动蛋白 生物 化学 受体 细胞 信号转导 细胞骨架 生物化学 细胞内
作者
Sophia R. Majeed,Lavanya Vasudevan,Chih‐Ying Chen,Yi Luo,Jorge Antonio Orozco Torres,Timothy Evans,Andrew Sharkey,Amy B. Foraker,Nicole M. Wong,Christopher Esk,Theresa A. Freeman,Ashley Moffett,James H. Keen,Frances M. Brodsky
出处
期刊:Nature Communications [Nature Portfolio]
卷期号:5 (1): 3891-3891 被引量:52
标识
DOI:10.1038/ncomms4891
摘要

The clathrin light chain (CLC) subunits participate in several membrane traffic pathways involving both clathrin and actin, through binding the actin-organizing huntingtin-interacting proteins (Hip). However, CLCs are dispensable for clathrin-mediated endocytosis of many cargoes. Here we observe that CLC depletion affects cell migration through Hip binding and reduces surface expression of β1-integrin by interference with recycling following normal endocytosis of inactive β1-integrin. CLC depletion and expression of a modified CLC also inhibit the appearance of gyrating (G)-clathrin structures, known mediators of rapid recycling of transferrin receptor from endosomes. Expression of the modified CLC reduces β1-integrin and transferrin receptor recycling, as well as cell migration, implicating G-clathrin in these processes. Supporting a physiological role for CLC in migration, the CLCb isoform of CLC is upregulated in migratory human trophoblast cells during uterine invasion. Together, these studies establish CLCs as mediating clathrin–actin interactions needed for recycling by G-clathrin during migration. Clathrin light chain (CLC) subunits are dispensable for clathrin-mediated endocytosis of a number of cargoes. Majeed et al. report that CLCs are however required for gyrating-clathrin-dependent recycling of inactive β1-integrins, the absence of which impairs cell migration.
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