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信号转导表观遗传学:细胞信号转导和表观遗传调控的新见解。

Signaling epigenetics: novel insights on cell signaling and epigenetic regulation.

机构信息

Instituto de Fisiología Celular, Departamento de Genética Molecular, Universidad Nacional Autónoma de México, Ciudad Universitaria, México D.F., México.

出版信息

IUBMB Life. 2011 Oct;63(10):881-95. doi: 10.1002/iub.557. Epub 2011 Sep 7.

Abstract

Cells must be able to respond rapidly and precisely not only to changes in their external environment but also to developmental and differentiation cues to determine when to divide, die, or acquire a particular cell fate. Signal transduction pathways are responsible for the integration and interpretation of most of such signals into specific transcriptional states. Those states are achieved by the modulation of chromatin structure that activates or represses transcription at particular loci. Although a large variety of signal transduction pathways have already been described, much less is known about the crosstalk between signal transduction and its consequent changes in chromatin structure and, therefore, gene expression. Here we present some examples of the relationship between chromatin-associated proteins and important signal transduction pathways during critical processes like development, differentiation, and disease. There is a great diversity of epigenetic mechanisms that have unexpected interactions with signaling pathways to establish transcriptional programs. Moreover, there are also particular cases where signaling pathways directly affect important components of the epigenetic machinery. Based on such examples, we further propose future research directions linking cell signaling and epigenetics. It is foreseeable that analyzing the relationship between cell signaling and epigenetics will be a huge area for future development that will help us understand the complex process by which a cell is able to induce transcriptional changes in response to external and internal signals.

摘要

细胞不仅必须能够对外界环境的变化迅速而精确地作出反应,还必须能够对发育和分化信号作出反应,以确定何时分裂、死亡或获得特定的细胞命运。信号转导途径负责整合和解释大多数此类信号,并将其转化为特定的转录状态。这些状态是通过调节染色质结构来实现的,染色质结构激活或抑制特定基因座的转录。虽然已经描述了大量的信号转导途径,但对信号转导与其随后的染色质结构变化以及因此基因表达之间的串扰知之甚少。在这里,我们介绍了一些在发育、分化和疾病等关键过程中染色质相关蛋白与重要信号转导途径之间关系的例子。有许多表观遗传机制与信号通路有着意想不到的相互作用,以建立转录程序。此外,也有一些特殊情况,信号通路直接影响表观遗传机制的重要组成部分。基于这些例子,我们进一步提出了将细胞信号转导和表观遗传学联系起来的未来研究方向。可以预见的是,分析细胞信号转导和表观遗传学之间的关系将是未来发展的一个巨大领域,这将有助于我们理解细胞如何能够对外界和内部信号诱导转录变化的复杂过程。

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