Department of Cardiology, Xinhua Hospital, School of Medicine, Shanghai Jiao Tong University, #1665 Kongjiang Road, Shanghai 200082, China.
Department of Cardiology, Quanzhou Hospital of Traditional Chinese Medicine, #388 SunJiang Road, Quanzhou 362000, China.
Biomolecules. 2022 Oct 27;12(11):1574. doi: 10.3390/biom12111574.
Cardiac fibrosis is an important pathological process in many diseases. Wdr5 catalyzes the trimethylation of lysine K4 on histone H3. The effects of Wdr5 on the cardiac fibrosis phenotype and the activation or transformation of cardiac fibroblasts were investigated by Ang-II-infused mice by osmotic mini-pump and isolated primary neonatal rat cardiac fibroblasts. We found that the Wdr5 expression and histone H3K4me3 modification were significantly increased in Ang-II-infused mice. By stimulating primary neonatal rat cardiac fibroblasts with Ang II, we detected that the expression of Wdr5 and H3K4me3 modification were also significantly increased. Two Wdr5-specific inhibitors, and the lentivirus that transfected Sh-Wdr5, were used to treat primary mouse cardiac fibroblasts, which not only inhibited the histone methylation by Wdr5 but also significantly reduced the activation and migration ability of Ang-II-treated fibroblasts. To explore its mechanism, we found that the inhibition of Wdr5 increased the expression of P53, P21. Cut&Tag-qPCR showed that the inhibition of Wdr5 significantly reduced the enrichment of H3K4me3 in the Mdm2 promoter region. For in vivo experiments, we finally proved that the Wdr5 inhibitor OICR9429 significantly reduced Ang-II-induced cardiac fibrosis and increased the expression of P21 in cardiac fibroblasts. Inhibition of Wdr5 may mediate cardiac fibroblast cycle arrest through the Mdm2/P53/P21 pathway and alleviate cardiac fibrosis.
心肌纤维化是许多疾病中的一个重要病理过程。Wdr5 催化组蛋白 H3 赖氨酸 K4 的三甲基化。通过 Ang-II 渗透微型泵和分离的原代新生大鼠心肌成纤维细胞,研究了 Wdr5 对心脏纤维化表型和心肌成纤维细胞激活或转化的影响。我们发现 Ang-II 输注小鼠的 Wdr5 表达和组蛋白 H3K4me3 修饰显著增加。通过用 Ang II 刺激原代新生大鼠心肌成纤维细胞,我们检测到 Wdr5 的表达和 H3K4me3 修饰也显著增加。使用两种 Wdr5 特异性抑制剂和转染 Sh-Wdr5 的慢病毒处理原代小鼠心肌成纤维细胞,不仅抑制了 Wdr5 的组蛋白甲基化,而且显著降低了 Ang-II 处理的成纤维细胞的激活和迁移能力。为了探讨其机制,我们发现抑制 Wdr5 增加了 P53、P21 的表达。Cut&Tag-qPCR 显示,抑制 Wdr5 显著降低了 H3K4me3 在 Mdm2 启动子区域的富集。对于体内实验,我们最终证明 Wdr5 抑制剂 OICR9429 显著减少了 Ang-II 诱导的心脏纤维化,并增加了心脏成纤维细胞中 P21 的表达。抑制 Wdr5 可能通过 Mdm2/P53/P21 通路介导心肌成纤维细胞周期停滞并减轻心脏纤维化。