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调控状态在基因表达的发育控制中的作用。

Regulatory states in the developmental control of gene expression.

出版信息

Brief Funct Genomics. 2017 Sep 1;16(5):281-287. doi: 10.1093/bfgp/elx009.

Abstract

A growing body of evidence shows that gene expression in multicellular organisms is controlled by the combinatorial function of multiple transcription factors. This indicates that not the individual transcription factors or signaling molecules, but the combination of expressed regulatory molecules, the regulatory state, should be viewed as the functional unit in gene regulation. Here, I discuss the concept of the regulatory state and its proposed role in the genome-wide control of gene expression. Recent analyses of regulatory gene expression in sea urchin embryos have been instrumental for solving the genomic control of cell fate specification in this system. Some of the approaches that were used to determine the expression of regulatory states during sea urchin embryogenesis are reviewed. Significant developmental changes in regulatory state expression leading to the distinct specification of cell fates are regulated by gene regulatory network circuits. How these regulatory state transitions are encoded in the genome is illuminated using the sea urchin endoderm-mesoderms cell fate decision circuit as an example. These observations highlight the importance of considering developmental gene regulation, and the function of individual transcription factors, in the context of regulatory states.

摘要

越来越多的证据表明,多细胞生物中的基因表达是由多个转录因子的组合功能控制的。这表明,不是单个转录因子或信号分子,而是表达的调节分子的组合,即调节状态,应该被视为基因调节中的功能单位。在这里,我讨论了调节状态的概念及其在基因表达的全基因组控制中所扮演的角色。最近对海胆胚胎中调节基因表达的分析对于解决该系统中细胞命运特化的基因组控制至关重要。本文回顾了在海胆胚胎发生过程中确定调节状态表达的一些方法。导致细胞命运明显特化的调节状态表达的显著发育变化受基因调控网络回路的调节。使用海胆内胚层-中胚层细胞命运决定回路作为一个例子,阐明了这些调节状态转换是如何在基因组中编码的。这些观察结果强调了在调节状态的背景下考虑发育基因调控和单个转录因子功能的重要性。

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