[PDF][PDF] Regulation of β1 integrin-Klf2-mediated angiogenesis by CCM proteins

M Renz, C Otten, E Faurobert, F Rudolph, Y Zhu… - Developmental cell, 2015 - cell.com
M Renz, C Otten, E Faurobert, F Rudolph, Y Zhu, G Boulday, J Duchene, M Mickoleit…
Developmental cell, 2015cell.com
Mechanotransduction pathways are activated in response to biophysical stimuli during the
development or homeostasis of organs and tissues. In zebrafish, the blood-flow-sensitive
transcription factor Klf2a promotes VEGF-dependent angiogenesis. However, the means by
which the Klf2a mechanotransduction pathway is regulated to prevent continuous
angiogenesis remain unknown. Here we report that the upregulation of klf2 mRNA causes
enhanced egfl7 expression and angiogenesis signaling, which underlies cardiovascular …
Summary
Mechanotransduction pathways are activated in response to biophysical stimuli during the development or homeostasis of organs and tissues. In zebrafish, the blood-flow-sensitive transcription factor Klf2a promotes VEGF-dependent angiogenesis. However, the means by which the Klf2a mechanotransduction pathway is regulated to prevent continuous angiogenesis remain unknown. Here we report that the upregulation of klf2 mRNA causes enhanced egfl7 expression and angiogenesis signaling, which underlies cardiovascular defects associated with the loss of cerebral cavernous malformation (CCM) proteins in the zebrafish embryo. Using CCM-protein-depleted human umbilical vein endothelial cells, we show that the misexpression of KLF2 mRNA requires the extracellular matrix-binding receptor β1 integrin and occurs in the absence of blood flow. Downregulation of β1 integrin rescues ccm mutant cardiovascular malformations in zebrafish. Our work reveals a β1 integrin-Klf2-Egfl7-signaling pathway that is tightly regulated by CCM proteins. This regulation prevents angiogenic overgrowth and ensures the quiescence of endothelial cells.
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