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动态调节表观遗传去甲基化的氧可用性和细胞氧化还原状态。

Dynamic regulation of epigenetic demethylation by oxygen availability and cellular redox.

机构信息

School of Cardiovascular Medicine & Sciences, King's College London BHF Centre of Research Excellence, United Kingdom.

School of Cardiovascular Medicine & Sciences, King's College London BHF Centre of Research Excellence, United Kingdom.

出版信息

Free Radic Biol Med. 2019 Feb 1;131:282-298. doi: 10.1016/j.freeradbiomed.2018.12.009. Epub 2018 Dec 17.

Abstract

The chromatin structure of the mammalian genome must facilitate both precisely-controlled DNA replication together with tightly-regulated gene transcription. This necessarily involves complex mechanisms and processes which remain poorly understood. It has long been recognised that the epigenetic landscape becomes established during embryonic development and acts to specify and determine cell fate. In addition, the chromatin structure is highly dynamic and allows for both cellular reprogramming and homeostatic modulation of cell function. In this respect, the functions of epigenetic "erasers", which act to remove covalently-linked epigenetic modifications from DNA and histones are critical. The enzymatic activities of the TET and JmjC protein families have been identified as demethylases which act to remove methyl groups from DNA and histones, respectively. Further, they are characterised as members of the Fe(II)- and 2-oxoglutarate-dependent dioxygenase superfamily. This provides the intriguing possibility that their enzymatic activities may be modulated by cellular metabolism, oxygen availability and redox-based mechanisms, all of which are likely to display dynamic cell- and tissue-specific patterns of flux. Here we discuss the current evidence for such [O]- and redox-dependent regulation of the TET and Jmjc demethylases and the potential physiological and pathophysiological functional consequences of such regulation.

摘要

哺乳动物基因组的染色质结构必须促进精确控制的 DNA 复制和紧密调节的基因转录。这必然涉及到复杂的机制和过程,这些仍然知之甚少。长期以来,人们已经认识到,表观遗传景观在胚胎发育过程中建立,并起到指定和决定细胞命运的作用。此外,染色质结构高度动态,可以实现细胞重编程和细胞功能的动态平衡调节。在这方面,表观遗传“橡皮擦”的功能至关重要,它们可以从 DNA 和组蛋白上去除共价连接的表观遗传修饰。TET 和 JmjC 蛋白家族的酶活性已被确定为去甲基酶,分别作用于从 DNA 和组蛋白上去除甲基基团。此外,它们被认为是 Fe(II)和 2-氧戊二酸依赖性双氧酶超家族的成员。这提供了一个有趣的可能性,即它们的酶活性可能受到细胞代谢、氧可用性和基于氧化还原的机制的调节,所有这些都可能表现出动态的细胞和组织特异性的通量模式。在这里,我们讨论了这种[O]和氧化还原依赖性对 TET 和 Jmjc 去甲基酶的调节的现有证据,以及这种调节的潜在生理和病理生理功能后果。

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