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发育基因顺式调控区的多层次复杂性。

Multiple layers of complexity in cis-regulatory regions of developmental genes.

机构信息

Departamento de Ecología, Genética y Evolución, IEGEBA-CONICET, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Buenos Aires, Argentina.

出版信息

Dev Dyn. 2012 Dec;241(12):1857-66. doi: 10.1002/dvdy.23871. Epub 2012 Oct 16.

Abstract

Genomes contain the necessary information to ensure that genes are expressed in the right place, at the right time, and with the proper rate. Metazoan developmental genes often possess long stretches of DNA flanking their coding sequences and/or large introns which contain elements that influence gene expression. Most of these regulatory elements are relatively small and can be studied in isolation. For example, transcriptional enhancers, the elements that generate the expression pattern of a gene, have been traditionally studied with reporter constructs in transgenic animals. These studies have provided and will provide invaluable insights into enhancer evolution and function. However, this experimental approach has its limits; often, enhancer elements do not faithfully recapitulate native expression patterns. This fact suggests that additional information in cis-regulatory regions modulates the activity of enhancers and other regulatory elements. Indeed, recent studies have revealed novel functional aspects at the level of whole cis-regulatory regions. First, the discovery of "shadow enhancers." Second, the ubiquitous interactions between cis-regulatory elements. Third, the notion that some cis-regulatory regions may not function in a modular manner. Last, the effect of chromatin conformation on cis-regulatory activity. In this article, I describe these recent findings and discuss open questions in the field.

摘要

基因组包含必要的信息,以确保基因在适当的位置、适当的时间、以适当的速率表达。后生动物发育基因通常具有其编码序列侧翼的长 DNA 片段和/或含有影响基因表达的元件的大内含子。这些调节元件中的大多数相对较小,可以进行单独研究。例如,转录增强子是产生基因表达模式的元件,传统上使用转基因动物中的报告基因构建体进行研究。这些研究为增强子进化和功能提供了宝贵的见解。然而,这种实验方法有其局限性;增强子元件通常不能忠实地再现天然表达模式。这一事实表明,顺式调控区中的其他信息调节增强子和其他调控元件的活性。事实上,最近的研究在整个顺式调控区水平上揭示了新的功能方面。首先,发现了“影子增强子”。其次,顺式调控元件之间普遍存在相互作用。第三,一些顺式调控区可能不是以模块化方式发挥作用的观点。最后,染色质构象对顺式调控活性的影响。在本文中,我描述了这些最新发现,并讨论了该领域的开放性问题。

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