Regulation of partial endothelial-to-mesenchymal transition by circATXN1 in ischemic diseases.

circATXN1 在缺血性疾病中对部分内皮-间质转化的调控

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作者:Li Yue, Zheng Zhe, Li Yanze, Fan Siyuan, Kong Lingyao, Fu Wanrong, Li Zhonggen, Zhang Jianchao, Li Shuang, Liu Zongtao, Liu Chao, Cao Jinhua, Hao Zhenxuan, Xiao Lili, Du Youyou, Wang Xiaofang, Gao Lu
Ischemic injury induces a partial mesenchymal shift in endothelial cells (ECs), contributing to impaired vascular regeneration. However, the molecular regulators of this transitional state remain poorly defined. To address this, we performed circular RNA profiling of endothelial cells under ischemic-like conditions and identified a marked upregulation of a circular RNA, named circATXN1. Functional studies revealed that circATXN1 knockdown modulates endothelial phenotype and vascular response after ischemia. Functional studies have shown that knockdown of circATXN1 can regulate the endothelial cell phenotype and vascular response after ischemia. Mechanistically, circATXN1 knockdown enhances the demethylase protein ALKBH5 to reduce the RNA methylation level of the key transcription factor SLUG, thereby stabilizing SLUG. In animal models, suppression of circATXN1 enhances angiogenesis and improves recovery following ischemic injury. Here, we show that circATXN1 regulates partial endothelial-to-mesenchymal transition (EndMT) and angiogenesis by controlling SLUG mRNA methylation dynamics, highlighting its potential as a therapeutic target in ischemic disease.

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