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缝隙连接蛋白 43 半通道调节线粒体 ATP 的生成、动员以及线粒体在氧化应激下的内稳态。

Connexin 43 hemichannels regulate mitochondrial ATP generation, mobilization, and mitochondrial homeostasis against oxidative stress.

机构信息

Department of Biochemistry and Structural Biology, University of Texas Health Science Center, San Antonio, United States.

出版信息

Elife. 2022 Nov 8;11:e82206. doi: 10.7554/eLife.82206.

Abstract

Oxidative stress is a major risk factor that causes osteocyte cell death and bone loss. Prior studies primarily focus on the function of cell surface expressed Cx43 channels. Here, we reported a new role of mitochondrial Cx43 (mtCx43) and hemichannels (HCs) in modulating mitochondria homeostasis and function in bone osteocytes under oxidative stress. In murine long bone osteocyte-Y4 cells, the translocation of Cx43 to mitochondria was increased under HO-induced oxidative stress. HO increased the mtCx43 level accompanied by elevated mtCx43 HC activity, determined by dye uptake assay. Cx43 knockdown (KD) by the CRISPR-Cas9 lentivirus system resulted in impairment of mitochondrial function, primarily manifested as decreased ATP production. Cx43 KD had reduced intracellular reactive oxidative species levels and mitochondrial membrane potential. Additionally, live-cell imaging results demonstrated that the proton flux was dependent on mtCx43 HCs because its activity was specifically inhibited by an antibody targeting Cx43 C-terminus. The co-localization and interaction of mtCx43 and ATP synthase subunit F (ATP5J2) were confirmed by Förster resonance energy transfer and a protein pull-down assay. Together, our study suggests that mtCx43 HCs regulate mitochondrial ATP generation by mediating K, H, and ATP transfer across the mitochondrial inner membrane and the interaction with mitochondrial ATP synthase, contributing to the maintenance of mitochondrial redox levels in response to oxidative stress.

摘要

氧化应激是导致骨细胞死亡和骨质流失的主要危险因素。先前的研究主要集中在细胞表面表达的 Cx43 通道的功能上。在这里,我们报道了线粒体 Cx43(mtCx43)和半通道(HCs)在调节氧化应激下骨细胞中线粒体稳态和功能方面的新作用。在鼠长骨骨细胞-Y4 细胞中,HO 诱导的氧化应激下 Cx43 向线粒体的易位增加。HO 增加了 mtCx43 水平,同时伴随着 mtCx43 HC 活性的升高,这通过染料摄取测定来确定。CRISPR-Cas9 慢病毒系统的 Cx43 敲低(KD)导致线粒体功能受损,主要表现为 ATP 生成减少。Cx43 KD 降低了细胞内活性氧水平和线粒体膜电位。此外,活细胞成像结果表明质子流依赖于 mtCx43 HCs,因为其活性被靶向 Cx43 C 端的抗体特异性抑制。通过Förster 共振能量转移和蛋白质下拉测定证实了 mtCx43 和 ATP 合酶亚基 F(ATP5J2)的共定位和相互作用。总之,我们的研究表明,mtCx43 HCs 通过介导 K、H 和 ATP 跨线粒体内膜转移以及与线粒体 ATP 合酶的相互作用,调节线粒体 ATP 的产生,有助于维持线粒体氧化还原水平以应对氧化应激。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1374/9642995/ca873d6f1afc/elife-82206-fig1.jpg

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