Department of Anesthesiology & Perioperative Medicine.
Division of Pulmonary & Critical Care Medicine.
JCI Insight. 2023 May 8;8(9):e168655. doi: 10.1172/jci.insight.168655.
Myocardial fibrosis and calcification associate with adverse outcomes in nonischemic heart failure. Cardiac fibroblasts (CF) transition into myofibroblasts (MF) and osteogenic fibroblasts (OF) to promote myocardial fibrosis and calcification. However, common upstream mechanisms regulating both CF-to-MF transition and CF-to-OF transition remain unknown. microRNAs are promising targets to modulate CF plasticity. Our bioinformatics revealed downregulation of miR-129-5p and upregulation of its targets small leucine-rich proteoglycan Asporin (ASPN) and transcription factor SOX9 as common in mouse and human heart failure (HF). We experimentally confirmed decreased miR-129-5p and enhanced SOX9 and ASPN expression in CF in human hearts with myocardial fibrosis and calcification. miR-129-5p repressed both CF-to-MF and CF-to-OF transition in primary CF, as did knockdown of SOX9 and ASPN. Sox9 and Aspn are direct targets of miR-129-5p that inhibit downstream β-catenin expression. Chronic Angiotensin II infusion downregulated miR-129-5p in CF in WT and TCF21-lineage CF reporter mice, and it was restored by miR-129-5p mimic. Importantly, miR-129-5p mimic not only attenuated progression of myocardial fibrosis, calcification marker expression, and SOX9 and ASPN expression in CF but also restored diastolic and systolic function. Together, we demonstrate miR-129-5p/ASPN and miR-129-5p/SOX9 as potentially novel dysregulated axes in CF-to-MF and CF-to-OF transition in myocardial fibrosis and calcification and the therapeutic relevance of miR-129-5p.
心肌纤维化和钙化与非缺血性心力衰竭的不良结局相关。心脏成纤维细胞(CF)向肌成纤维细胞(MF)和成骨成纤维细胞(OF)转化,促进心肌纤维化和钙化。然而,调节 CF 向 MF 转化和 CF 向 OF 转化的常见上游机制仍不清楚。microRNAs 是调节 CF 可塑性的有前途的靶点。我们的生物信息学分析显示,miR-129-5p 下调和其靶基因小富含亮氨酸的蛋白聚糖 Asporin(ASPN)和转录因子 SOX9 在小鼠和人类心力衰竭(HF)中上调。我们通过实验证实,在人类心肌纤维化和钙化的心脏中,CF 中的 miR-129-5p 减少,SOX9 和 ASPN 表达增强。miR-129-5p 抑制 CF 向 MF 和 CF 向 OF 的转化,SOX9 和 ASPN 的敲低也是如此。Sox9 和 Aspn 是 miR-129-5p 的直接靶基因,可抑制下游β-catenin 的表达。慢性血管紧张素 II 输注下调了 WT 和 TCF21 谱系 CF 报告小鼠 CF 中的 miR-129-5p,miR-129-5p 模拟物可恢复其表达。重要的是,miR-129-5p 模拟物不仅减轻了 CF 中心肌纤维化、钙化标志物表达、SOX9 和 ASPN 表达的进展,而且恢复了舒张和收缩功能。综上所述,我们证明了 miR-129-5p/ASPN 和 miR-129-5p/SOX9 作为心肌纤维化和钙化中 CF 向 MF 和 CF 向 OF 转化的潜在新失调轴,以及 miR-129-5p 的治疗相关性。