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组蛋白甲基转移酶zeste同源物2增强子可保护足细胞免受糖尿病中的氧化应激和肾损伤。

The Histone Methyltransferase Enzyme Enhancer of Zeste Homolog 2 Protects against Podocyte Oxidative Stress and Renal Injury in Diabetes.

作者信息

Siddiqi Ferhan S, Majumder Syamantak, Thai Kerri, Abdalla Moustafa, Hu Pingzhao, Advani Suzanne L, White Kathryn E, Bowskill Bridgit B, Guarna Giuliana, Dos Santos Claudia C, Connelly Kim A, Advani Andrew

机构信息

Keenan Research Centre for Biomedical Science and Li Ka Shing Knowledge Institute, St. Michael's Hospital, Toronto, Ontario, Canada;

Department of Biochemistry and Medical Genetics and George and Fay Yee Centre for Healthcare Innovation, University of Manitoba, Winnipeg, Manitoba, Canada; and.

出版信息

J Am Soc Nephrol. 2016 Jul;27(7):2021-34. doi: 10.1681/ASN.2014090898. Epub 2015 Nov 3.

Abstract

Epigenetic regulation of oxidative stress is emerging as a critical mediator of diabetic nephropathy. In diabetes, oxidative damage occurs when there is an imbalance between reactive oxygen species generation and enzymatic antioxidant repair. Here, we investigated the function of the histone methyltransferase enzyme enhancer of zeste homolog 2 (EZH2) in attenuating oxidative injury in podocytes, focusing on its regulation of the endogenous antioxidant inhibitor thioredoxin interacting protein (TxnIP). Pharmacologic or genetic depletion of EZH2 augmented TxnIP expression and oxidative stress in podocytes cultured under high-glucose conditions. Conversely, EZH2 upregulation through inhibition of its regulatory microRNA, microRNA-101, downregulated TxnIP and attenuated oxidative stress. In diabetic rats, depletion of EZH2 decreased histone 3 lysine 27 trimethylation (H3K27me3), increased glomerular TxnIP expression, induced podocyte injury, and augmented oxidative stress and proteinuria. Chromatin immunoprecipitation sequencing revealed H3K27me3 enrichment at the promoter of the transcription factor Pax6, which was upregulated on EZH2 depletion and bound to the TxnIP promoter, controlling expression of its gene product. In high glucose-exposed podocytes and the kidneys of diabetic rats, the lower EZH2 expression detected coincided with upregulation of Pax6 and TxnIP. Finally, in a gene expression array, TxnIP was among seven of 30,854 genes upregulated by high glucose, EZH2 depletion, and the combination thereof. Thus, EZH2 represses the transcription factor Pax6, which controls expression of the antioxidant inhibitor TxnIP, and in diabetes, downregulation of EZH2 promotes oxidative stress. These findings expand the extent to which epigenetic processes affect the diabetic kidney to include antioxidant repair.

摘要

氧化应激的表观遗传调控正逐渐成为糖尿病肾病的关键介质。在糖尿病中,当活性氧生成与酶促抗氧化修复之间失衡时,就会发生氧化损伤。在此,我们研究了组蛋白甲基转移酶zeste同源物2(EZH2)在减轻足细胞氧化损伤中的作用,重点关注其对内源性抗氧化剂抑制剂硫氧还蛋白相互作用蛋白(TxnIP)的调控。EZH2的药理学或基因敲除增强了在高糖条件下培养的足细胞中TxnIP的表达和氧化应激。相反,通过抑制其调节性微小RNA(miRNA)——miRNA-101来上调EZH2,可下调TxnIP并减轻氧化应激。在糖尿病大鼠中,EZH2的缺失降低了组蛋白3赖氨酸27三甲基化(H3K27me3),增加了肾小球TxnIP的表达,诱导了足细胞损伤,并加剧了氧化应激和蛋白尿。染色质免疫沉淀测序显示H3K27me3在转录因子Pax6的启动子处富集,Pax6在EZH2缺失时上调,并与TxnIP启动子结合,控制其基因产物的表达。在高糖暴露的足细胞和糖尿病大鼠的肾脏中,检测到的较低EZH2表达与Pax6和TxnIP的上调一致。最后,在基因表达阵列中,TxnIP是在高糖、EZH2缺失及其联合作用下上调的30854个基因中的7个之一。因此,EZH2抑制转录因子Pax6,而Pax6控制抗氧化剂抑制剂TxnIP的表达,并且在糖尿病中,EZH2的下调促进氧化应激。这些发现扩展了表观遗传过程影响糖尿病肾脏的范围,使其包括抗氧化修复。

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