Gap Junction Intercellular Communication Mediated by Connexin43 in Astrocytes Is Essential for Their Resistance to Oxidative Stress

被引:98
作者
Le, Hoa T. [1 ]
Sin, Wun Chey [1 ]
Lozinsky, Shannon [1 ]
Bechberger, John [1 ]
Luis Vega, Jose [1 ,2 ,3 ]
Guo, Xu Qiu [1 ]
Saez, Juan C. [2 ,4 ]
Naus, Christian C. [1 ]
机构
[1] Univ British Columbia, Dept Cellular & Physiol Sci, Inst Life Sci, Vancouver, BC V6T 1Z3, Canada
[2] Pontificia Univ Catolica Chile, Dept Fisiol, Santiago 8330025, Chile
[3] Univ Antofagasta, Lab Fisiol Expt, Inst Antofagasta, Antofagasta 1270300, Chile
[4] Ctr Interdisciplinario Neurociencias Valparaiso, Valparaiso 2340000, Chile
关键词
Astrocytes; Connexin; Gap Junctions; Hydrogen Peroxide; Hypoxia; Hemichannels; Reoxygenation; CULTURED ASTROCYTES; LIFE-CYCLE; CELL-DEATH; FUNCTIONAL HEMICHANNELS; METABOLIC INHIBITION; CORTICAL ASTROCYTES; PROTEIN CONNEXIN43; PLASMA-MEMBRANE; CHANNELS; PHOSPHORYLATION;
D O I
10.1074/jbc.M113.508390
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Background: The gap junction protein Cx43 is implicated in maintaining anti-oxidative defense in astrocytes. Results: In contrast to hypoxia/reoxygenation, oxidative stress induced by H2O2 triggers more astrocytic death in the absence of Cx43 channels. Conclusion: Gap junction intercellular communication is required for Cx43-mediated resistance to H2O2. Significance: An altered Cx43 phosphorylation state in response to cellular stress may be critical for Cx43-mediated cell death or recovery. Oxidative stress induced by reactive oxygen species (ROS) is associated with various neurological disorders including aging, neurodegenerative diseases, as well as traumatic and ischemic insults. Astrocytes have an important role in the anti-oxidative defense in the brain. The gap junction protein connexin43 (Cx43) forms intercellular channels as well as hemichannels in astrocytes. In the present study, we investigated the contribution of Cx43 to astrocytic death induced by the ROS hydrogen peroxide (H2O2) and the mechanism by which Cx43 exerts its effects. Lack of Cx43 expression or blockage of Cx43 channels resulted in increased ROS-induced astrocytic death, supporting a cell protective effect of functional Cx43 channels. H2O2 transiently increased hemichannel activity, but reduced gap junction intercellular communication (GJIC). GJIC in wild-type astrocytes recovered after 7 h, but was absent in Cx43 knock-out astrocytes. Blockage of Cx43 hemichannels incompletely inhibited H2O2-induced hemichannel activity, indicating the presence of other hemichannel proteins. Panx1, which is predicted to be a major hemichannel contributor in astrocytes, did not appear to have any cell protective effect from H2O2 insults. Our data suggest that GJIC is important for Cx43-mediated ROS resistance. In contrast to hypoxia/reoxygenation, H2O2 treatment decreased the ratio of the hypophosphorylated isoform to total Cx43 level. Cx43 has been reported to promote astrocytic death induced by hypoxia/reoxygenation. We therefore speculate the increase in Cx43 dephosphorylation may account for the facilitation of astrocytic death. Our findings suggest that the role of Cx43 in response to cellular stress is dependent on the activation of signaling pathways leading to alteration of Cx43 phosphorylation states.
引用
收藏
页码:1345 / 1354
页数:10
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