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了解十号染色体缺失磷酸酶-张力蛋白同源物家族蛋白在肾脏疾病中的作用。

Understanding the role of ten-eleven translocation family proteins in kidney diseases.

机构信息

Center for Medical Research and Innovation, Shanghai Pudong Hospital, Fudan University Pudong Medical Center, Shanghai, China.

Institute of Longevity and Aging Research, Zhongshan Hospital, Fudan University, Shanghai, China.

出版信息

Biochem Soc Trans. 2024 Oct 30;52(5):2203-2214. doi: 10.1042/BST20240291.

Abstract

Epigenetic mechanisms play a critical role in the pathogenesis of human diseases including kidney disorders. As the erasers of DNA methylation, Ten-eleven translocation (TET) family proteins can oxidize 5-methylcytosine (5mC) to 5-hydroxymethylcytosine (5hmC), 5-formylcytosine (5fC), and 5-carboxylcytosine (5caC), thus leading to passive or active DNA demethylation. Similarly, TET family proteins can also catalyze the same reaction on RNA. In addition, TET family proteins can also regulate chromatin structure and gene expression in a catalytic activity-independent manner through recruiting the SIN3A/HDAC co-repressor complex. In 2012, we reported for the first time that the genomic 5-hydroxymethylcytosine level and the mRNA levels of Tet1 and Tet2 were significantly downregulated in murine kidneys upon ischemia and reperfusion injury. Since then, accumulating evidences have eventually established an indispensable role of TET family proteins in not only acute kidney injury but also chronic kidney disease. In this review, we summarize the upstream regulatory mechanisms and the pathophysiological role of TET family proteins in major types of kidney diseases and discuss their potential values in clinical diagnosis and treatment.

摘要

表观遗传机制在人类疾病的发病机制中起着关键作用,包括肾脏疾病。作为 DNA 甲基化的橡皮擦,Ten-eleven 易位(TET)家族蛋白可以将 5-甲基胞嘧啶(5mC)氧化为 5-羟甲基胞嘧啶(5hmC)、5-甲酰基胞嘧啶(5fC)和 5-羧基胞嘧啶(5caC),从而导致被动或主动 DNA 去甲基化。同样,TET 家族蛋白也可以在 RNA 上催化相同的反应。此外,TET 家族蛋白还可以通过招募 SIN3A/HDAC 共抑制复合物,以非催化活性依赖的方式调节染色质结构和基因表达。2012 年,我们首次报道在缺血再灌注损伤后,小鼠肾脏中的基因组 5-羟甲基胞嘧啶水平和 Tet1 和 Tet2 的 mRNA 水平显著下调。此后,越来越多的证据最终确立了 TET 家族蛋白在急性肾损伤和慢性肾脏病中的不可或缺的作用。在这篇综述中,我们总结了 TET 家族蛋白在主要类型的肾脏疾病中的上游调控机制和病理生理作用,并讨论了它们在临床诊断和治疗中的潜在价值。

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