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Syx, a RhoA guanine exchange factor, is essential for angiogenesis in Vivo.


ABSTRACT: Rho GTPases play an important and versatile role in several biological processes. In this study, we identified the zebrafish ortholog of the mammalian Rho A guanine exchange factor, synectin-binding guanine exchange factor (Syx), and determined its in vivo function in the zebrafish and the mouse. We found that Syx is expressed specifically in the vasculature of these organisms. Loss-of-function studies in the zebrafish and mouse point to a specific role for Syx in angiogenic sprouting in the developing vascular bed. Importantly, vasculogenesis and angioblast differentiation steps were unaffected in syx knockdown zebrafish embryos, and the vascular sprouting defects were partially rescued by the mouse ortholog. Syx knockdown in vitro impairs vascular endothelial growth factor-A-induced endothelial cell migration and angiogenesis. We have also uncovered a potential mechanism of endothelial sprout guidance in which angiomotin, a component of endothelial cell junctions, plays an additive role with Syx in directing endothelial sprouts. These results identify Syx as an essential contributor to angiogenesis in vivo.

SUBMITTER: Garnaas MK 

PROVIDER: S-EPMC2758496 | biostudies-literature | 2008 Sep

REPOSITORIES: biostudies-literature

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Syx, a RhoA guanine exchange factor, is essential for angiogenesis in Vivo.

Garnaas Maija K MK   Moodie Karen L KL   Liu Miao-liang ML   Samant Ganesh V GV   Li Keguo K   Marx Ruth R   Baraban Jay M JM   Horowitz Arie A   Ramchandran Ramani R  

Circulation research 20080828 7


Rho GTPases play an important and versatile role in several biological processes. In this study, we identified the zebrafish ortholog of the mammalian Rho A guanine exchange factor, synectin-binding guanine exchange factor (Syx), and determined its in vivo function in the zebrafish and the mouse. We found that Syx is expressed specifically in the vasculature of these organisms. Loss-of-function studies in the zebrafish and mouse point to a specific role for Syx in angiogenic sprouting in the dev  ...[more]

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