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      Phospho-caveolin-1 mediates integrin-regulated membrane domain internalization.

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          Abstract

          Growth of normal cells is anchorage dependent because signalling through multiple pathways including Erk, phosphatidylinositol-3-OH kinase (PI(3)K) and Rac requires integrin-mediated cell adhesion. Components of these pathways localize to low-density, cholesterol-rich domains in the plasma membrane named 'lipid rafts' or 'cholesterol-enriched membrane microdomains' (CEMM). We previously reported that integrin-mediated adhesion regulates CEMM transport such that cell detachment from the extracellular matrix triggers CEMM internalization and clearance from the plasma membrane. We now report that this internalization is mediated by dynamin-2 and caveolin-1. Internalization requires phosphorylation of caveolin-1 on Tyr 14. A shift in localization of phospho-caveolin-1 from focal adhesions to caveolae induces CEMM internalization upon cell detachment, which mediates inhibition of Erk, PI(3)K and Rac. These data define a novel molecular mechanism for growth and tumour suppression by caveolin-1.

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          Author and article information

          Journal
          Nat. Cell Biol.
          Nature cell biology
          Springer Nature America, Inc
          1465-7392
          1465-7392
          Sep 2005
          : 7
          : 9
          Affiliations
          [1 ] Centro Nacional de Investigaciones Cardiovasculares (CNIC), Madrid 28029, Spain. madelpozo@cnic.es
          Article
          ncb1293 NIHMS5169
          10.1038/ncb1293
          1351395
          16113676
          74c03ec4-add2-418e-bd98-d4c8e19f25e4
          History

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