首页> 外文期刊>Free Radical Biology and Medicine: The Official Journal of the Oxygen Society >EphB2 signaling-mediated Sirt3 expression reduces MSC senescence by maintaining mitochondrial ROS homeostasis
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EphB2 signaling-mediated Sirt3 expression reduces MSC senescence by maintaining mitochondrial ROS homeostasis

机译:EphB2信号介导的SIRT3表达通过维持线粒体ROS稳态来降低MSC衰老

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摘要

Abstract Disruption of mitochondrial reactive oxygen species (mtROS) homeostasis is a key factor inducing UCB-MSC senescence. Accordingly, preventing mtROS accumulation will help in suppressing the UCB-MSC senescence. In this study, we observed that the expressions of EphrinB2 and EphB2 were inversely regulated by UCB-MSC passage-dependent manner. EphB2 signaling induced mitochondrial translocation of Sirt3. The knockdown of SIRT3 inhibited the effect of EphB2 signaling in UCB-MSCs. Subsequently, EphrinB2-Fc induced the nuclear translocation of Nrf-2 via c-Src phosphorylation dependent manner, and Sirt3 expression was regulated by Nrf-2. Among Sirt3 target genes, EphB2 signaling increased MnSOD and reduced the mtROS level in UCB-MSCs. Furthermore, the deacetylase effect of Sirt3 enhanced the MnSOD activity by deacetylation at the lysine 68 residue and therapeutic effect of UCB-MSCs on skin-wound healing was increased by EphB2 activation. In conclusion, the EphB2 can serve as a novel target for the optimizing the therapeutic use of UCB-MSCs in wound repair by MnSOD-mediated mtROS scavenging through EphB2/c-Src signaling pathway and Nrf-2-dependent Sirt3 expression. Graphical abstract Display Omitted Highlights ? Expression level of EphB2 was decreased in the aging process of UCB-MSCs. ? EphB2 signaling inhibited the senescence of UCB-MSCs via increasing mitochondrial Sirt3. ? EphB2 signaling-mediated Sirt3 expression was regulated by Nrf-2 nuclear translocation. ? EphB2 signaling increased MnSOD activity via deacetylation activity of Sirt3. ? EphB2 signaling maintained mitochondrial ROS homeostasis of UCB-MSCs.
机译:摘要线粒体活性氧(MTROS)稳态的破坏是诱导UCB-MSC衰老的关键因素。因此,防止MTROS积累将有助于抑制UCB-MSC衰老。在这项研究中,我们观察到EphrinB2和EphB2的表达通过UCB-MSC通道依赖性方式反常调节。 EphB2信号传导诱导SIRT3的线粒体易位。 SIRT3的敲低抑制了EPHB2信令在UCB-MSC中的影响。随后,EphrinB2-Fc通过C-SRC磷酸化依赖性方式诱导NRF-2的核转移,并且SIRT3表达由NRF-2调节。在SIRT3靶基因中,EPHB2信号传递增加MNSOD并降低了UCB-MSCs中的MTROS水平。此外,SIRT3的脱乙酰酶作用通过在赖氨酸68残余物中通过脱乙酰化增强了MNSOD活性,通过EphB2活化增加了UCB-MSCs对皮肤伤口愈合的治疗作用。总之,EphB2可以用作通过EphB2 / C-SRC信号传导途径和NRF-2依赖性SIRT3表达优化MNSOD介导的MTROS中的UCB-MSCs在伤口修复中的治疗用途的新靶。图形抽象显示省略了亮点?在UCB-MSCs的老化过程中,EphB2的表达水平降低。还EphB2信号传导通过增加线粒体SIRT3抑制UCB-MSCs的衰老。还EphB2信号介导的SIRT3表达受NRF-2核易位的调节。还EphB2通过SIRT3的脱乙酰化活性来表示MNSOD活性增加。还EphB2信号传导维持UCB-MSC的线粒体ROS宿主。

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