Cardiovascular Biology Research Program, Oklahoma Medical Research Foundation, Oklahoma City, Oklahoma, USA.
Mol Cell Biol. 2012 Apr;32(7):1312-20. doi: 10.1128/MCB.06222-11. Epub 2012 Jan 30.
Canonical Wnt signaling plays an important role in embryonic and postnatal blood vessel development. We previously reported that the chromatin-remodeling enzyme BRG1 promotes vascular Wnt signaling. Vascular deletion of Brg1 results in aberrant yolk sac blood vessel morphology, which is rescued by pharmacological stimulation of Wnt signaling with lithium chloride (LiCl). We have now generated embryos lacking the chromatin-remodeling enzyme Chd4 in vascular endothelial cells. Unlike Brg1 mutants, Chd4 mutant embryos had normal yolk sac vascular morphology. However, concomitant deletion of Chd4 and Brg1 rescued vascular abnormalities seen in Brg1 mutant yolk sacs to the same extent as LiCl treatment. We hypothesized that Wnt signaling was upregulated in Chd4 mutant yolk sac vasculature. Indeed, we found that Chd4 deletion resulted in upregulation of the Wnt-responsive transcription factor Tcf7 and an increase in Wnt target gene expression in endothelial cells. Furthermore, we identified one Wnt target gene, Pitx2, that was downregulated in Brg1 mutant endothelial cells but was rescued following LiCl treatment and in Brg1 Chd4 double mutant vasculature, suggesting that PITX2 helps to mediate the restoration of yolk sac vascular remodeling under both conditions. We conclude that BRG1 and CHD4 antagonistically modulate Wnt signaling in developing yolk sac vessels to mediate normal vascular remodeling.
经典 Wnt 信号通路在胚胎期和出生后的血管发育中发挥着重要作用。我们之前的研究表明,染色质重塑酶 BRG1 可促进血管 Wnt 信号通路。血管特异性敲除 Brg1 导致卵黄囊血管形态异常,这种异常可通过氯化锂(LiCl)刺激 Wnt 信号通路得到挽救。我们现在生成了血管内皮细胞中缺乏染色质重塑酶 Chd4 的胚胎。与 Brg1 突变体不同,Chd4 突变体胚胎的卵黄囊血管形态正常。然而,Chd4 和 Brg1 的同时缺失挽救了 Brg1 突变体卵黄囊血管中的血管异常,其效果与 LiCl 处理相当。我们假设 Wnt 信号在 Chd4 突变体卵黄囊血管中被上调。事实上,我们发现 Chd4 的缺失导致 Wnt 反应性转录因子 Tcf7 的上调,并增加了内皮细胞中的 Wnt 靶基因表达。此外,我们鉴定出一个 Wnt 靶基因 Pitx2,它在 Brg1 突变体的内皮细胞中下调,但在 LiCl 处理和 Brg1 Chd4 双突变体血管中得到挽救,这表明 PITX2 有助于介导两种情况下卵黄囊血管重塑的恢复。我们的结论是,BRG1 和 CHD4 拮抗地调节发育中的卵黄囊血管中的 Wnt 信号通路,以介导正常的血管重塑。