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Publication : MAP4K4 regulates integrin-FERM binding to control endothelial cell motility.

First Author  Vitorino P Year  2015
Journal  Nature Volume  519
Issue  7544 Pages  425-30
PubMed ID  25799996 Mgi Jnum  J:220464
Mgi Id  MGI:5634841 Doi  10.1038/nature14323
Citation  Vitorino P, et al. (2015) MAP4K4 regulates integrin-FERM binding to control endothelial cell motility. Nature 519(7544):425-30
abstractText  Cell migration is a stepwise process that coordinates multiple molecular machineries. Using in vitro angiogenesis screens with short interfering RNA and chemical inhibitors, we define here a MAP4K4-moesin-talin-beta1-integrin molecular pathway that promotes efficient plasma membrane retraction during endothelial cell migration. Loss of MAP4K4 decreased membrane dynamics, slowed endothelial cell migration, and impaired angiogenesis in vitro and in vivo. In migrating endothelial cells, MAP4K4 phosphorylates moesin in retracting membranes at sites of focal adhesion disassembly. Epistasis analyses indicated that moesin functions downstream of MAP4K4 to inactivate integrin by competing with talin for binding to beta1-integrin intracellular domain. Consequently, loss of moesin (encoded by the MSN gene) or MAP4K4 reduced adhesion disassembly rate in endothelial cells. Additionally, alpha5beta1-integrin blockade reversed the membrane retraction defects associated with loss of Map4k4 in vitro and in vivo. Our study uncovers a novel aspect of endothelial cell migration. Finally, loss of MAP4K4 function suppressed pathological angiogenesis in disease models, identifying MAP4K4 as a potential therapeutic target.
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