Liu Chun, Shen Mengcheng, Tan Wilson L W, Chen Ian Y, Liu Yu, Yu Xuan, Yang Huaxiao, Zhang Angela, Liu Yanxia, Zhao Ming-Tao, Ameen Mohamed, Zhang Mao, Gross Eric R, Qi Lei S, Sayed Nazish, Wu Joseph C
Stanford Cardiovascular Institute, Stanford University, Stanford, CA, USA.
Department of Medicine (Division of Cardiology), Stanford University, Stanford, CA, USA.
Nat Cardiovasc Res. 2023 May;2(5):467-485. doi: 10.1038/s44161-023-00267-1. Epub 2023 May 8.
The pleiotropic benefits of statins in cardiovascular diseases that are independent of their lipid-lowering effects have been well documented, but the underlying mechanisms remain elusive. Here we show that simvastatin significantly improves human induced pluripotent stem cell-derived endothelial cell functions in both baseline and diabetic conditions by reducing chromatin accessibility at transcriptional enhanced associate domain elements and ultimately at endothelial-to-mesenchymal transition (EndMT)-regulating genes in a yes-associated protein (YAP)-dependent manner. Inhibition of geranylgeranyltransferase (GGTase) I, a mevalonate pathway intermediate, repressed YAP nuclear translocation and YAP activity via RhoA signaling antagonism. We further identified a previously undescribed enhancer downstream of statin-YAP signaling that promotes the EndMT process. Thus, inhibition of any component of the GGTase-RhoA-YAP-SRY box transcription factor 9 (SOX9) signaling axis was shown to rescue EndMT-associated endothelial dysfunction both in vitro and in vivo, especially under diabetic conditions. Overall, our study reveals an epigenetic modulatory role for simvastatin in repressing EndMT to confer protection against endothelial dysfunction.
他汀类药物在心血管疾病中具有多效性益处,且这些益处独立于其降脂作用,这一点已有充分记录,但潜在机制仍不清楚。在此我们表明,辛伐他汀通过以Yes相关蛋白(YAP)依赖的方式降低转录增强关联结构域元件处的染色质可及性,并最终降低内皮-间充质转化(EndMT)调控基因处的染色质可及性,在基线和糖尿病条件下均显著改善人诱导多能干细胞衍生的内皮细胞功能。抑制香叶基香叶基转移酶(GGTase)I(甲羟戊酸途径中间体),通过RhoA信号拮抗作用抑制YAP核转位和YAP活性。我们进一步鉴定了他汀-YAP信号下游一个先前未描述的增强子,其促进EndMT过程。因此,抑制GGTase-RhoA-YAP-SRY盒转录因子9(SOX9)信号轴的任何组分,在体外和体内均显示可挽救EndMT相关的内皮功能障碍,尤其是在糖尿病条件下。总体而言,我们的研究揭示了辛伐他汀在抑制EndMT以赋予内皮功能障碍保护方面的表观遗传调节作用。