Semaphorin 6A regulates angiogenesis by modulating VEGF signaling

M Segarra, H Ohnuki, D Maric… - Blood, The Journal …, 2012 - ashpublications.org
M Segarra, H Ohnuki, D Maric, O Salvucci, X Hou, A Kumar, X Li, G Tosato
Blood, The Journal of the American Society of Hematology, 2012ashpublications.org
Formation of new vessels during development and in the mature mammal generally
proceeds through angiogenesis. Although a variety of molecules and signaling pathways
are known to underlie endothelial cell sprouting and remodeling during angiogenesis, many
aspects of this complex process remain unexplained. Here we show that the transmembrane
semaphorin6A (Sema6A) is expressed in endothelial cells, and regulates endothelial cell
survival and growth by modulating the expression and signaling of VEGFR2, which is known …
Abstract
Formation of new vessels during development and in the mature mammal generally proceeds through angiogenesis. Although a variety of molecules and signaling pathways are known to underlie endothelial cell sprouting and remodeling during angiogenesis, many aspects of this complex process remain unexplained. Here we show that the transmembrane semaphorin6A (Sema6A) is expressed in endothelial cells, and regulates endothelial cell survival and growth by modulating the expression and signaling of VEGFR2, which is known to maintain endothelial cell viability by autocrine VEGFR signaling. The silencing of Sema6A in primary endothelial cells promotes cell death that is not rescued by exogenous VEGF-A or FGF2, attributable to the loss of prosurvival signaling from endogenous VEGF. Analyses of mouse tissues demonstrate that Sema6A is expressed in angiogenic and remodeling vessels. Mice with null mutations of Sema6A exhibit significant defects in hyaloid vessels complexity associated with increased endothelial cell death, and in retinal vessels development that is abnormally reduced. Adult Sema6A-null mice exhibit reduced tumor, matrigel, and choroidal angiogenesis compared with controls. Sema6A plays important roles in development of the nervous system. Here we show that it also regulates vascular development and adult angiogenesis.
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