Nan Jinliang, Hu Hengxun, Sun Yong, Zhu Lianlian, Wang Yingchao, Zhong Zhiwei, Zhao Jing, Zhang Na, Wang Ya, Wang Yaping, Ye Jian, Zhang Ling, Hu Xinyang, Zhu Wei, Wang Jian'an
From the Cardiovascular Key Laboratory of Zhejiang Province, Department of Cardiology (J.N., H.H., Y.S., L.Z., Y.W., Z.Z., J.Z., N.Z., Y.W., Y.W., J.Y., L.Z., X.H., W.Z., J.W.) and Clinical Research Center (L.Z., Y.W., Z.Z., J.Z.), The Second Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou, China.
Circ Res. 2017 Aug 4;121(4):392-410. doi: 10.1161/CIRCRESAHA.117.311143. Epub 2017 Jun 21.
Mitochondria are important cellular organelles and play essential roles in maintaining cell structure and function. Emerging evidence indicates that in addition to having proinflammatory and proapoptotic effects, TNFα (tumor necrosis factor α) can, under certain circumstances, promote improvements in mitochondrial integrity and function, phenomena that can be ascribed to the existence of TNFR2 (TNFα receptor 2).
The present study aimed to investigate whether and how TNFR2 activation mediates the effects of TNFα on mitochondria.
Freshly isolated neonatal mouse cardiac myocytes treated with shRNA targeting TNFR1 were used to study the effects of TNFR2 activation on mitochondrial function. Neonatal mouse cardiac myocytes exhibited increases in mitochondrial fusion, a change that was associated with increases in mitochondrial membrane potential, intracellular ATP levels, and oxygen consumption capacity. Importantly, TNFR2 activation-induced increases in OPA1 (optic atrophy 1) protein expression were responsible for the above enhancements, and these changes could be attenuated using siRNA targeting OPA1. Moreover, both Stat3 and RelA bound to the promoter region of OPA1 and their interactions synergistically upregulated OPA1 expression at the transcriptional level. Stat3 acetylation at lysine 370 or lysine 383 played a key role in the ability of Stat3 to form a supercomplex with RelA. Meanwhile, p300 modulated Stat3 acetylation in HEK293T (human embryonic kidney 293T) cells, and p300-mediated Stat3/RelA interactions played an indispensable role in OPA1 upregulation. Finally, TNFR2 activation exerted beneficial effects on OPA1 expression in an in vivo transverse aortic constriction model, whereby TNFR1-knockout mice exhibited better outcomes than in mice with both TNFR1 and TNFR2 knocked out.
TNFR2 activation protects cardiac myocytes against stress by upregulating OPA1 expression. This process was facilitated by p300-mediated Stat3 acetylation and Stat3/RelA interactions, leading to improvements in mitochondrial morphology and function.
线粒体是重要的细胞器,在维持细胞结构和功能方面发挥着至关重要的作用。新出现的证据表明,肿瘤坏死因子α(TNFα)除了具有促炎和促凋亡作用外,在某些情况下还能促进线粒体完整性和功能的改善,这些现象可归因于TNFα受体2(TNFR2)的存在。
本研究旨在探讨TNFR2激活是否以及如何介导TNFα对线粒体的影响。
用靶向TNFR1的短发夹RNA(shRNA)处理新鲜分离的新生小鼠心肌细胞,以研究TNFR2激活对线粒体功能的影响。新生小鼠心肌细胞的线粒体融合增加,这种变化与线粒体膜电位、细胞内ATP水平和氧消耗能力的增加有关。重要的是,TNFR2激活诱导的视神经萎缩蛋白1(OPA1)蛋白表达增加是上述增强的原因,并且使用靶向OPA1的小干扰RNA(siRNA)可以减弱这些变化。此外,信号转导和转录激活因子3(Stat3)和RelA都与OPA1的启动子区域结合,它们的相互作用在转录水平上协同上调OPA1的表达。Stat3赖氨酸370或赖氨酸383位点的乙酰化在Stat3与RelA形成超复合物的能力中起关键作用。同时,p300在人胚肾293T(HEK293T)细胞中调节Stat3的乙酰化,并且p300介导的Stat3/RelA相互作用在OPA1上调中起不可或缺的作用。最后,在体内横向主动脉缩窄模型中,TNFR2激活对OPA1表达产生有益影响,其中TNFR1基因敲除小鼠比TNFR1和TNFR2均敲除的小鼠表现出更好的结果。
TNFR2激活通过上调OPA1表达保护心肌细胞免受应激。这一过程由p300介导的Stat3乙酰化和Stat3/RelA相互作用促进,导致线粒体形态和功能的改善。