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Publication : AmotL2 links VE-cadherin to contractile actin fibres necessary for aortic lumen expansion.

First Author  Hultin S Year  2014
Journal  Nat Commun Volume  5
Pages  3743 PubMed ID  24806444
Mgi Jnum  J:226656 Mgi Id  MGI:5698028
Doi  10.1038/ncomms4743 Citation  Hultin S, et al. (2014) AmotL2 links VE-cadherin to contractile actin fibres necessary for aortic lumen expansion. Nat Commun 5:3743
abstractText  The assembly of individual endothelial cells into multicellular tubes is a complex morphogenetic event in vascular development. Extracellular matrix cues and cell-cell junctional communication are fundamental to tube formation. Together they determine the shape of endothelial cells and the tubular structures that they ultimately form. Little is known regarding how mechanical signals are transmitted between cells to control cell shape changes during morphogenesis. Here we provide evidence that the scaffold protein amotL2 is needed for aortic vessel lumen expansion. Using gene inactivation strategies in zebrafish, mouse and endothelial cell culture systems, we show that amotL2 associates to the VE-cadherin adhesion complex where it couples adherens junctions to contractile actin fibres. Inactivation of amotL2 dissociates VE-cadherin from cytoskeletal tensile forces that affect endothelial cell shape. We propose that the VE-cadherin/amotL2 complex is responsible for transmitting mechanical force between endothelial cells for the coordination of cellular morphogenesis consistent with aortic lumen expansion and function.
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