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PMID: 26766444 已发表 · ppublish 英语

Endothelial RSPO3 Controls Vascular Stability and Pruning through Non-canonical WNT/Ca(2+)/NFAT Signaling.

Developmental cell ·第 36 卷 ·第 1 期 ·2016-05-27

Scholz Beate, Korn Claudia, Wojtarowicz Jessica, Mogler Carolin, Augustin Iris, Boutros Michael, Niehrs Christof, Augustin Hellmut G

摘要

The WNT signaling enhancer R-spondin3 (RSPO3) is prominently expressed in the vasculature. Correspondingly, embryonic lethality of Rspo3-deficient mice is caused by vessel remodeling defects. Yet the mechanisms underlying vascular RSPO3 function remain elusive. Inducible endothelial Rspo3 deletion (Rspo3-iECKO) resulted in perturbed developmental and tumor vascular remodeling. Endothelial cell apoptosis and vascular pruning led to reduced microvessel density in Rspo3-iECKO mice. Rspo3-iECKO mice strikingly phenocopied the non-canonical WNT signaling-induced vascular defects of mice deleted for the WNT secretion factor Evi/Wls. An endothelial screen for RSPO3 and EVI/WLS co-regulated genes identified Rnf213, Usp18, and Trim30α. RNF213 targets filamin A and NFAT1 for proteasomal degradation attenuating non-canonical WNT/Ca(2+) signaling. Likewise, USP18 and TRIM5α inhibited NFAT1 activation. Consequently, NFAT protein levels were decreased in endothelial cells of Rspo3-iECKO mice and pharmacological NFAT inhibition phenocopied Rspo3-iECKO mice. The data identify endothelial RSPO3-driven non-canonical WNT/Ca(2+)/NFAT signaling as a critical maintenance pathway of the remodeling vasculature.

关键词
Moyamoya NFAT R-spondin RNF213 RSPO3 WNT angiogenesis non-canonical WNT pathway vascular pruning vascular regression vascular remodeling
文献信息
期刊
Developmental cell
期刊简称
Dev Cell
发表日期
2016-05-27
收录日期
2016-01-15
更新日期
2016-01-15
语言
英语
国家/地区
United States
NLM ID
101120028
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