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发育性营养编程相关的表观遗传机制。

Epigenetic mechanisms involved in developmental nutritional programming.

机构信息

Anne Gabory, Linda Attig, Claudine Junien, Developmental Biology and Reproduction, National Institute for Agronomic Research, National Veterinary school, National Center For Scientific Research, Jouy en Josas, France.

出版信息

World J Diabetes. 2011 Oct 15;2(10):164-75. doi: 10.4239/wjd.v2.i10.164.

Abstract

The ways in which epigenetic modifications fix the effects of early environmental events, ensuring sustained responses to transient stimuli, which result in modified gene expression patterns and phenotypes later in life, is a topic of considerable interest. This review focuses on recently discovered mechanisms and calls into question prevailing views about the dynamics, position and functions of epigenetic marks. Most epigenetic studies have addressed the long-term effects on a small number of epigenetic marks, at the global or individual gene level, of environmental stressors in humans and animal models. In parallel, increasing numbers of studies based on high-throughput technologies and focusing on humans and mice have revealed additional complexity in epigenetic processes, by highlighting the importance of crosstalk between the different epigenetic marks. A number of studies focusing on the developmental origin of health and disease and metabolic programming have identified links between early nutrition, epigenetic processes and long-term illness. The existence of a self-propagating epigenetic cycle has been demonstrated. Moreover, recent studies demonstrate an obvious sexual dimorphism both for programming trajectories and in response to the same environmental insult. Despite recent progress, we are still far from understanding how, when and where environmental stressors disturb key epigenetic mechanisms. Thus, identifying the original key marks and their changes throughout development during an individual's lifetime or over several generations remains a challenging issue.

摘要

表观遗传修饰固定早期环境事件影响的方式,确保对短暂刺激的持续反应,从而导致生命后期基因表达模式和表型的改变,这是一个备受关注的话题。本综述重点介绍了最近发现的机制,并对表观遗传标记的动态、位置和功能的主流观点提出了质疑。大多数表观遗传学研究都集中在人类和动物模型中环境应激对少数表观遗传标记的长期影响,无论是在整体还是个别基因水平上。与此同时,越来越多基于高通量技术的研究,重点关注人类和老鼠,通过强调不同表观遗传标记之间的串扰的重要性,揭示了表观遗传过程的额外复杂性。一些关注健康和疾病的发育起源以及代谢编程的研究已经确定了早期营养、表观遗传过程和长期疾病之间的联系。自我传播的表观遗传循环的存在已经得到证实。此外,最近的研究还表明,在编程轨迹和对相同环境刺激的反应方面,都存在明显的性别二态性。尽管最近取得了进展,但我们仍远未了解环境应激如何、何时以及在何处干扰关键的表观遗传机制。因此,确定个体一生中或几代人的整个发育过程中的原始关键标记及其变化仍然是一个具有挑战性的问题。

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