4.4 Article

Gangliosides and β1-Integrin Are Required for Caveolae and Membrane Domains

期刊

TRAFFIC
卷 11, 期 3, 页码 348-360

出版社

WILEY
DOI: 10.1111/j.1600-0854.2009.01022.x

关键词

caveolar endocytosis; caveolin-1; endoglycoceramidase; focal adhesions; glycosphingolipids; sialidase

资金

  1. Mayo Foundation
  2. NIH [GM-22942, GM-60934]

向作者/读者索取更多资源

Caveolae are plasma membrane domains involved in the uptake of certain pathogens and toxins. Internalization of some cell surface integrins occurs via caveolae suggesting caveolae may play a crucial role in modulating integrin-mediated adhesion and cell migration. Here we demonstrate a critical role for gangliosides (sialo-glycosphingolipids) in regulating caveolar endocytosis in human skin fibroblasts. Pretreatment of cells with endoglycoceramidase (cleaves glycosphingolipids) or sialidase (modifies cell surface gangliosides and glycoproteins) selectively inhibited caveolar endocytosis by > 70%, inhibited the formation of plasma membrane domains enriched in sphingolipids and cholesterol ('lipid rafts'), reduced caveolae and caveolin-1 at the plasma membrane by approximately 80%, and blunted activation of beta 1-integrin, a protein required for caveolar endocytosis in these cells. These effects could be reversed by a brief incubation with gangliosides (but not with asialo-gangliosides or other sphingolipids) at 10 degrees C, suggesting that sialo-lipids are critical in supporting caveolar endocytosis. Endoglycoceramidase treatment also caused a redistribution of focal adhesion kinase, paxillin, talin, and PIP Kinase I gamma away from focal adhesions. The effects of sialidase or endoglycoceramidase on membrane domains and the distribution of caveolin-1 could be recapitulated by beta 1-integrin knockdown. These results suggest that both gangliosides and beta 1-integrin are required for maintenance of caveolae and plasma membrane domains.

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