The First Affiliated Hospital, Guangzhou University of Chinese Medicine, Guangzhou, 510405, China.
The First Clinical Medical School, Guangzhou University of Chinese Medicine, Guangzhou, 510405, China.
Cell Death Dis. 2020 Jul 24;11(7):574. doi: 10.1038/s41419-020-02777-3.
Chronic heart failure (CHF) is the final outcome of many cardiovascular diseases, and is a severe health issue faced by the elderly population. Mixed lineage kinase 3 (MLK3), a member of MAP3K family, is associated with aging, inflammation, oxidative stress, and related diseases, such as CHF. MLK3 has also been reported to play an important role in protecting against cardiomyocyte injury; however, its function in myocardial fibrosis is unknown. To investigate the role of MLK3 in myocardial fibrosis, we inhibited the expression of MLK3, and examined cardiac function and remodeling in TAC mice. In addition, we assessed the expression of MLK3 protein in ventricular cells and its downstream associated protein. We found that MLK3 mainly regulates NF-κB/NLRP3 signaling pathway-mediated inflammation and that pyroptosis causes myocardial fibrosis in the early stages of CHF. Similarly, MLK3 mainly regulates the JNK/p53 signaling pathway-mediated oxidative stress and that ferroptosis causes myocardial fibrosis in the advanced stages of CHF. We also found that promoting the expression of miR-351 can inhibit the expression of MLK3, and significantly improve cardiac function in mice subjected to TAC. These results suggest the pyroptosis and ferroptosis induced by MLK3 signaling in cardiomyocytes are essential for adverse myocardial fibrosis, in response to pressure overload. Furthermore, miR-351, which has a protective effect on ventricular remodeling in heart failure caused by pressure overload, may be a key target for the regulation of MLK3.
慢性心力衰竭(CHF)是许多心血管疾病的最终结果,也是老年人群面临的严重健康问题。混合谱系激酶 3(MLK3)是 MAP3K 家族的一员,与衰老、炎症、氧化应激和相关疾病有关,如 CHF。据报道,MLK3 还在保护心肌细胞损伤方面发挥着重要作用;然而,其在心肌纤维化中的功能尚不清楚。为了研究 MLK3 在心肌纤维化中的作用,我们抑制了 MLK3 的表达,并在 TAC 小鼠中检查了心脏功能和重塑。此外,我们评估了心室细胞中 MLK3 蛋白的表达及其下游相关蛋白。我们发现 MLK3 主要调节 NF-κB/NLRP3 信号通路介导的炎症,而细胞焦亡在 CHF 的早期阶段导致心肌纤维化。同样,MLK3 主要调节 JNK/p53 信号通路介导的氧化应激,铁死亡在 CHF 的晚期阶段导致心肌纤维化。我们还发现,促进 miR-351 的表达可以抑制 MLK3 的表达,并显著改善 TAC 小鼠的心脏功能。这些结果表明,心肌细胞中 MLK3 信号诱导的细胞焦亡和铁死亡对压力超负荷引起的不良心肌纤维化至关重要。此外,miR-351 对压力超负荷引起的心力衰竭心室重构具有保护作用,可能是调节 MLK3 的关键靶点。