Department of Cardiovascular Surgery, The First Affiliated Hospital of Nanjing Medical University, Nanjing, 210029, PR China.
Department of Cardiovascular Surgery, The First Affiliated Hospital of Nanjing Medical University, Nanjing, 210029, PR China.
Exp Cell Res. 2022 Feb 1;411(1):112972. doi: 10.1016/j.yexcr.2021.112972. Epub 2021 Dec 14.
Calcification of the bicuspid aortic valve (BAV) involves differential expression of various RNA genes, which is achieved through complex regulatory networks that are controlled in part by transcription factors and microRNAs. We previously found that miR-195-5p regulates the osteogenic differentiation of valvular interstitial cells (VICs) by targeting the TGF-β pathway. However, the transcriptional regulation of miR-195-5p in calcified BAV patients is not yet clear. In this study, stenotic aortic valve tissues from patients with BAVs and tricuspid aortic valves (TAVs) were collected. Candidate transcription factors of miR-195-5p were predicted by bioinformatics analysis and tested in diseased valves and in male porcine VICs. SP2 gene expression and the corresponding protein levels in BAV were significantly lower than those in TAV, and a low SP2 expression level environment in VICs resulted in remarkable increases in RNA expression levels of RUNX2, BMP2, collagen 1, MMP2, and MMP9 and the corresponding proteins. ChIP assays revealed that SP2 directly bound to the transcription promoter region of miR-195-5p. Cotransfection of SP2 shRNA and a miR-195-5p mimic in porcine VICs demonstrated that SP2 repressed SMAD7 expression via miR-195-5p, while knockdown of SP2 increased the mRNA expression of SMAD7 and the corresponding protein and attenuated Smad 2/3 expression. Immunofluorescence staining of diseased valves confirmed that the functional proteins of osteogenesis differentiation, including RUNX2, BMP2, collagen 1, and osteocalcin, were overexpressed in BAVs. In Conclusion, the transcription factor Sp2 is expressed at low levels in VICs from BAV patients, which has a negative impact on miR-195-5p expression by binding its promoter region and partially promotes calcification through a SMAD-dependent pathway.
二尖瓣主动脉瓣(BAV)的钙化涉及各种 RNA 基因的差异表达,这是通过部分受转录因子和 microRNA 控制的复杂调控网络实现的。我们之前发现 miR-195-5p 通过靶向 TGF-β 通路来调节瓣膜间质细胞(VIC)的成骨分化。然而,在钙化的 BAV 患者中,miR-195-5p 的转录调控尚不清楚。在这项研究中,收集了 BAV 患者和三尖瓣主动脉瓣(TAV)狭窄主动脉瓣组织。通过生物信息学分析预测 miR-195-5p 的候选转录因子,并在病变瓣膜和雄性猪 VIC 中进行测试。BAV 中的 SP2 基因表达和相应的蛋白水平明显低于 TAV,而 VIC 中低 SP2 表达水平导致 RUNX2、BMP2、胶原 1、MMP2 和 MMP9 的 RNA 表达水平及其相应蛋白显著增加。ChIP 检测显示 SP2 直接与 miR-195-5p 的转录启动子区域结合。在猪 VIC 中转染 SP2 shRNA 和 miR-195-5p 模拟物表明,SP2 通过 miR-195-5p 抑制 SMAD7 表达,而敲低 SP2 增加了 SMAD7 的 mRNA 表达及其相应蛋白,并减弱了 Smad 2/3 的表达。病变瓣膜的免疫荧光染色证实,包括 RUNX2、BMP2、胶原 1 和骨钙素在内的成骨分化功能蛋白在 BAV 中过度表达。总之,BAV 患者 VIC 中的转录因子 Sp2 表达水平较低,通过结合其启动子区域对 miR-195-5p 的表达产生负面影响,并通过 SMAD 依赖性途径部分促进钙化。