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高甲基化抑制微小RNA-219a-2以激活ALDH1L2/谷胱甘肽/纤溶酶原激活物抑制剂-1途径,从而促进肾纤维化中纤连蛋白的降解。

Hypermethylation suppresses microRNA-219a-2 to activate the ALDH1L2/GSH/PAI-1 pathway for fibronectin degradation in renal fibrosis.

作者信息

Xiao Xiao, Huo Emily, Guo Chunyuan, Zhou Xiangjun, Hu Xiaoru, Dong Charles, Shi Huidong, Dong Zheng, Wei Qingqing

机构信息

Zhongnan Hospital of Wuhan University.

Augusta Preparatory Day School.

出版信息

Res Sq. 2023 Jun 5:rs.3.rs-2986934. doi: 10.21203/rs.3.rs-2986934/v1.

Abstract

Epigenetic regulations, such as DNA methylation and microRNAs, play an important role in renal fibrosis. Here, we report the regulation of microRNA-219a-2 (mir-219a-2) by DNA methylation in fibrotic kidneys, unveiling the crosstalk between these epigenetic mechanisms. Through genome-wide DNA methylation analysis and pyro-sequencing, we detected the hypermethylation of mir-219a-2 in renal fibrosis induced by unilateral ureter obstruction (UUO) or renal ischemia/reperfusion, which was accompanied by a significant decrease in mir-219a-5p expression. Functionally, overexpression of mir-219a-2 enhanced fibronectin induction during hypoxia or TGF-β1 treatment of cultured renal cells. In mice, inhibition of mir-219a-5p suppressed fibronectin accumulation in UUO kidneys. ALDH1L2 was identified to be the direct target gene of mir-219a-5p in renal fibrosis. Mir-219a-5p suppressed ALDH1L2 expression in cultured renal cells, while inhibition of mir-219a-5p prevented the decrease of ALDH1L2 in UUO kidneys. Knockdown of ALDH1L2 enhanced PAI-1 induction during TGF-β1 treatment of renal cells, which was associated with fibronectin expression. In conclusion, the hypermethylation of mir-219a-2 in response to fibrotic stress attenuates mir-219a-5p expression and induces the up-regulation of its target gene ALDH1L2, which may reduce fibronectin deposition by suppressing PAI-1.

摘要

表观遗传调控,如DNA甲基化和微小RNA,在肾纤维化中发挥着重要作用。在此,我们报告了在纤维化肾脏中DNA甲基化对微小RNA - 219a - 2(mir - 219a - 2)的调控,揭示了这些表观遗传机制之间的相互作用。通过全基因组DNA甲基化分析和焦磷酸测序,我们检测到在单侧输尿管梗阻(UUO)或肾缺血/再灌注诱导的肾纤维化中mir - 219a - 2发生高甲基化,同时mir - 219a - 5p表达显著降低。在功能上,mir - 219a - 2的过表达增强了培养的肾细胞在缺氧或TGF -β1处理期间纤连蛋白的诱导。在小鼠中,抑制mir - 219a - 5p可抑制UUO肾脏中纤连蛋白的积累。在肾纤维化中,ALDH1L2被确定为mir - 219a - 5p的直接靶基因。mir - 219a - 5p在培养的肾细胞中抑制ALDH1L2的表达,而抑制mir - 219a - 5p可防止UUO肾脏中ALDH1L2的减少。在肾细胞TGF -β1处理期间,敲低ALDH1L2增强了PAI - 1的诱导,这与纤连蛋白的表达相关。总之,在纤维化应激下mir - 219a - 2的高甲基化减弱了mir - 219a - 5p的表达并诱导其靶基因ALDH1L2的上调,这可能通过抑制PAI - 1来减少纤连蛋白的沉积。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4a1f/10275039/073e83cbb6f5/nihpp-rs2986934v1-f0001.jpg

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