首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Transposable elements as a potent source of diverse cis-regulatory sequences in mammalian genomes
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Transposable elements as a potent source of diverse cis-regulatory sequences in mammalian genomes

机译:可转换元素作为哺乳动物基因组中不同联合调控序列的有效源

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摘要

Eukaryotic gene regulation is mediated by cis-regulatory elements, which are embedded within the vast non-coding genomic space and recognized by the transcription factors in a sequence- and context-dependent manner. A large proportion of eukaryotic genomes, including at least half of the human genome, are composed of transposable elements (TEs), which in their ancestral form carried their own cis-regulatory sequences able to exploit the host trans environment to promote TE transcription and facilitate transposition. Although not all present-day TE copies have retained this regulatory function, the preexisting regulatory potential of TEs can provide a rich source of cis-regulatory innovation for the host. Here, we review recent evidence documenting diverse contributions of TE sequences to gene regulation by functioning as enhancers, promoters, silencers and boundary elements. We discuss how TE-derived enhancer sequences can rapidly facilitate changes in existing gene regulatory networks and mediate species- and cell-type-specific regulatory innovations, and we postulate a unique contribution of TEs to species-specific gene expression divergence in pluripotency and early embryogenesis. With advances in genome-wide technologies and analyses, systematic investigation of TEs' cis-regulatory potential is now possible and our understanding of the biological impact of genomic TEs is increasing.
机译:真核基因调节由顺式调节元素介导,其嵌入庞大的非编码基因组空间内,并以序列和上下文依赖的方式通过转录因子认识到。包括至少一半的人类基因组的大部分真核基因组由可转换元素(TES)组成,其在其祖先形式中携带自己的顺式调节序列,能够利用宿主跨越环境来推广TE转录并促进换位。虽然并非所有当天的TE副本保留了这种监管职能,但TES的预先存在的监管潜力可以为主持人提供丰富的CIS-Scentation创新来源。在此,我们通过用作增强剂,启动子,消声器和边界要素来审查最近证明TE序列对基因调节的不同贡献。我们讨论Te衍生的增强剂序列如何快速促进现有基因监管网络和调节物种和细胞类型特定的监管创新的变化,以及在多能性和早期胚胎发生中假设特异特异性基因表达发散的独特贡献。随着基因组技术和分析的进步,现在可能对TES的CIS-COMMENTIVATION潜力进行了系统的调查,我们对基因组TES的生物学影响的理解正在增加。

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