甲状腺激素的表观遗传发育程序和代际效应。

4区 医学 Q3 Biochemistry, Genetics and Molecular Biology
Vitamins and Hormones Pub Date : 2023-01-01 Epub Date: 2023-02-09 DOI:10.1016/bs.vh.2023.01.003
Arturo Hernandez, M Elena Martinez, Carolina Chaves, Joao Anselmo
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引用次数: 0

摘要

越来越多的证据表明,通过核荷尔蒙受体超家族发出的信号改变会导致异常的、长期的表观遗传变化,进而转化为病理改变和疾病易感性。在生命早期,转录组概况正在迅速变化,如果在此时接触这些物质,其影响似乎会更加明显。此时,细胞增殖和分化的复杂协调过程是哺乳动物发育的特点。这种暴露还可能改变种系的表观遗传信息,从而可能导致后代的发育变化和异常结果。甲状腺激素(TH)信号由特定的核受体介导,这些受体能够显著改变染色质结构和基因转录,还能调节表观遗传标记的其他决定因素。在哺乳动物体内,TH 具有多效应,在发育过程中,其作用受到高度动态的调节,以适应多种组织快速发展的需要。它们的分子作用机制、及时的发育调控和广泛的生物效应,使 THs 在成人病理生理学的发育表观遗传编程中,以及通过对生殖系的影响,在代际和跨代表观遗传现象中发挥着核心作用。这些表观遗传学研究领域尚处于起步阶段,对 THs 的研究也很有限。鉴于甲状腺激素作为表观遗传修饰剂的特性及其精细的发育作用,我们在此回顾一些观察结果,强调甲状腺激素作用的改变可能在成人性状的发育程序中以及通过种系传递改变的表观遗传信息而在后代表型中发挥作用。考虑到甲状腺疾病的发病率相对较高以及某些环境化学物质能够破坏TH的作用,TH作用水平异常的表观遗传效应可能是人类疾病非遗传病因学的重要因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Epigenetic developmental programming and intergenerational effects of thyroid hormones.

Mounting evidence is showing that altered signaling through the nuclear hormone receptor superfamily can cause abnormal, long-term epigenetic changes which translate into pathological modifications and susceptibility to disease. These effects seem to be more prominent if the exposure occurs early in life, when transcriptomic profiles are rapidly changing. At this time, the coordination of the complex coordinated processes of cell proliferation and differentiation that characterize mammalian development. Such exposures may also alter the epigenetic information of the germ line, potentially leading to developmental changes and abnormal outcomes in subsequent generations. Thyroid hormone (TH) signaling is mediated by specific nuclear receptors, which have the ability to markedly change chromatin structure and gene transcription, and can also regulate other determinants of epigenetic marks. TH exhibits pleiotropic effects in mammals, and during development, its action is regulated in a highly dynamic manner to suit the rapidly evolving needs of multiple tissues. Their molecular mechanisms of action, timely developmental regulation and broad biological effects place THs in a central position to play a role in the developmental epigenetic programming of adult pathophysiology and, through effects on the germ line, in inter- and trans-generational epigenetic phenomena. These areas of epigenetic research are in their infancy, and studies regarding THs are limited. In the context of their characteristics as epigenetic modifiers and their finely tuned developmental action, here we review some of the observations underscoring the role that altered TH action may play in the developmental programming of adult traits and in the phenotypes of subsequent generations via germ line transmission of altered epigenetic information. Considering the relatively high prevalence of thyroid disease and the ability of some environmental chemicals to disrupt TH action, the epigenetic effects of abnormal levels of TH action may be important contributors to the non-genetic etiology of human disease.

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来源期刊
Vitamins and Hormones
Vitamins and Hormones 医学-内分泌学与代谢
CiteScore
3.80
自引率
0.00%
发文量
66
审稿时长
6-12 weeks
期刊介绍: First published in 1943, Vitamins and Hormones is the longest-running serial published by Academic Press. In the early days of the serial, the subjects of vitamins and hormones were quite distinct. The Editorial Board now reflects expertise in the field of hormone action, vitamin action, X-ray crystal structure, physiology, and enzyme mechanisms. Vitamins and Hormones continues to publish cutting-edge reviews of interest to endocrinologists, biochemists, nutritionists, pharmacologists, cell biologists, and molecular biologists. Others interested in the structure and function of biologically active molecules like hormones and vitamins will, as always, turn to this series for comprehensive reviews by leading contributors to this and related disciplines.
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