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Shank3 ameliorates neuronal injury after cerebral ischemia/reperfusion via inhibiting oxidative stress and inflammation

Redox Biol. 2023-12; 
Hongchen Zhang, Yuan Feng, Yanfang Si, Chuanhao Lu, Juan Wang, Shiquan Wang, Liang Li, Wenyu Xie, Zheming Yue, Jia Yong, Shuhui Dai, Lei Zhang, Xia Li
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Abstract

Shank3, a key molecule related to the development and deterioration of autism, has recently been found to downregulate in the murine brain after ischemia/reperfusion (I/R). Despite this discovery, however, its effects on neuronal injury and the mechanism underlying the effects remain to be clarified. To address this, in this study, based on genetically modified mice models, we revealed that the expression of Shank3 showed a time-dependent change in murine hippocampal neurons after I/R, and that conditional knockout (cko) of Shank3 in neurons resulted in aggravated neuronal injuries. The protective effects of Shank3 against oxidative stress and inflammation after I/R were achieved through direct binding STIM1 an... More

Keywords

Inflammation, Ischemia/reperfusion injury, Oxidative stress, STIM1, Shank3