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Publication : The transcription factor ERG regulates a low shear stress-induced anti-thrombotic pathway in the microvasculature.

First Author  Peghaire C Year  2019
Journal  Nat Commun Volume  10
Issue  1 Pages  5014
PubMed ID  31676784 Mgi Jnum  J:282233
Mgi Id  MGI:6378122 Doi  10.1038/s41467-019-12897-w
Citation  Peghaire C, et al. (2019) The transcription factor ERG regulates a low shear stress-induced anti-thrombotic pathway in the microvasculature. Nat Commun 10(1):5014
abstractText  Endothelial cells actively maintain an anti-thrombotic environment; loss of this protective function may lead to thrombosis and systemic coagulopathy. The transcription factor ERG is essential to maintain endothelial homeostasis. Here, we show that inducible endothelial ERG deletion (Erg(iEC-KO)) in mice is associated with spontaneous thrombosis, hemorrhages and systemic coagulopathy. We find that ERG drives transcription of the anticoagulant thrombomodulin (TM), as shown by reporter assays and chromatin immunoprecipitation. TM expression is regulated by shear stress (SS) via Kruppel-like factor 2 (KLF2). In vitro, ERG regulates TM expression under low SS conditions, by facilitating KLF2 binding to the TM promoter. However, ERG is dispensable for TM expression in high SS conditions. In Erg(iEC-KO) mice, TM expression is decreased in liver and lung microvasculature exposed to low SS but not in blood vessels exposed to high SS. Our study identifies an endogenous, vascular bed-specific anticoagulant pathway in microvasculature exposed to low SS.
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