Stroke-associated intergenic variants modulate a human FOXF2 transcriptional enhancer

增强子 索克斯10 斑马鱼 飞行1 转录因子 生物 CTCF公司 单核苷酸多态性 遗传学 壁细胞 基因 癌症研究 内皮干细胞 基因型 体外
作者
Jae-Ryeon Ryu,Suchit Ahuja,Corey R. Arnold,Kyle Potts,Aniket Mishra,Qiong Yang,Muralidharan Sargurupremraj,Douglas J. Mahoney,Sudha Seshadri,Stéphanie Debette,Sarah J. Childs
出处
期刊:Proceedings of the National Academy of Sciences of the United States of America [National Academy of Sciences]
卷期号:119 (35)
标识
DOI:10.1073/pnas.2121333119
摘要

SNPs associated with human stroke risk have been identified in the intergenic region between Forkhead family transcription factors FOXF2 and FOXQ1, but we lack a mechanism for the association. FoxF2 is expressed in vascular mural pericytes and is important for maintaining pericyte number and stabilizing small vessels in zebrafish. The stroke-associated SNPs are located in a previously unknown transcriptional enhancer for FOXF2, functional in human cells and zebrafish. We identify critical enhancer regions for FOXF2 gene expression, including binding sites occupied by transcription factors ETS1, RBPJ, and CTCF. rs74564934, a stroke-associated SNP adjacent to the ETS1 binding site, decreases enhancer function, as does mutation of RPBJ sites. rs74564934 is significantly associated with the increased risk of any stroke, ischemic stroke, small vessel stroke, and elevated white matter hyperintensity burden in humans. Foxf2 has a conserved function cross-species and is expressed in vascular mural pericytes of the vessel wall. Thus, stroke-associated SNPs modulate enhancer activity and expression of a regulator of vascular stabilization, FOXF2, thereby modulating stroke risk.
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