Department of Neurology, The First Hospital of Jilin University, Changchun 130021, China.
Suzhou Institute of Biomedical Engineering and Technology, Chinese Academy of Sciences, No. 88 Keling Street, Suzhou 215163, China.
Biomed Pharmacother. 2020 Jul;127:110125. doi: 10.1016/j.biopha.2020.110125. Epub 2020 Apr 28.
Connexin-43 (Cx43) is the most abundant gap junction protein in the nervous system. It enables cell communication and has important physiological roles including ion transport and substrate exchange, all of which have been implicated in cerebral ischemia injury. Our previous in vitro and in vivo studies have demonstrated that Cx43 is internalized and degraded during ischemia stress. However, the significance of ischemia-induced degradation of Cx43 remains unclear. Herein, we demonstrated that Cx43 degradation during ischemia injury is mediated by selective autophagy; additionally, we identified two related autophagy receptors-OPTN and NDP52. Cx43 degradation during ischemia requires its phosphorylation and ubiquitination, which are mediated by PKC, Src kinases, and ubiquitin kinase PINK1. Using point mutagenesis, we identified three phosphorylation sites underlying Cx43 autophagy degradation under ischemic stress. Cx43 degradation inhibition promoted the transition of astrocytes from a pro-inflammatory to an anti-inflammatory status, based on the levels of IL-10 and TNF in ischemia. Knockdown or accelerated degradation of Cx43 protected astrocytes from apoptosis under ischemic stress. These findings elucidate the underlying mechanism of astrocytic Cx43 autophagic degradation during ischemia. The study has identified potentially novel therapeutic strategies against ischemic stroke and evidence of crosstalk between autophagic degradation of Cx43, astrocytic apoptosis, and neuroinflammation.
间隙连接蛋白 43(Cx43)是神经系统中最丰富的间隙连接蛋白。它能使细胞间通讯,并具有重要的生理作用,包括离子转运和底物交换,所有这些都与脑缺血损伤有关。我们之前的体外和体内研究表明,Cx43 在缺血应激时会被内化和降解。然而,缺血诱导的 Cx43 降解的意义尚不清楚。本文中,我们证明了 Cx43 的降解是由选择性自噬介导的;此外,我们鉴定了两个相关的自噬受体 OPTN 和 NDP52。Cx43 在缺血损伤中的降解需要其磷酸化和泛素化,这是由蛋白激酶 C(PKC)、Src 激酶和泛素激酶 PINK1 介导的。通过点突变,我们确定了在缺血应激下 Cx43 自噬降解的三个磷酸化位点。Cx43 降解的抑制促进了星形胶质细胞从促炎状态向抗炎状态的转变,这基于缺血时 IL-10 和 TNF 的水平。在缺血应激下,Cx43 的敲低或加速降解可保护星形胶质细胞免于凋亡。这些发现阐明了星形胶质细胞 Cx43 自噬降解在缺血过程中的潜在机制。该研究为缺血性中风提供了潜在的新治疗策略,并为 Cx43 的自噬降解、星形胶质细胞凋亡和神经炎症之间的串扰提供了证据。