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揭示增强子结构、功能和演化的璀璨见解。

Sparkling insights into enhancer structure, function, and evolution.

机构信息

Department of Cell & Developmental Biology, University of Michigan Medical School, Ann Arbor, Michigan, USA.

出版信息

Curr Top Dev Biol. 2012;98:97-120. doi: 10.1016/B978-0-12-386499-4.00004-5.

DOI:10.1016/B978-0-12-386499-4.00004-5
PMID:22305160
Abstract

This review focuses on a single cis-regulatory element: the sparkling eye enhancer of the Drosophila dPax2 gene. sparkling responds to Notch and EGFR signaling, along with other direct regulatory inputs, to drive gene expression that is restricted to cone cells of the developing fly retina. Functional, genetic, biochemical, evolutionary, and bioinformatic analyses have revealed surprising properties of sparkling, which may provide new insights into cis-regulatory logic and mechanisms of transcriptional activation. These properties include: a very high density of regulatory information and a correspondingly low "junk" content; an unexpectedly complex combinatorial code; tight functional constraints on enhancer organization, paradoxically coupled with high turnover of DNA sequence and binding site position; a requirement for weak binding of the transcription factor Su(H) to low-affinity sites in order to maintain a cell-type-specific response to Notch signaling; and multiple specialized regulatory sequences conferring functionally distinct activation activities, all of which are required in concert to achieve proper gene expression in vivo.

摘要

这篇综述聚焦于一个单一的顺式调控元件

果蝇 dPax2 基因的闪亮眼增强子。闪亮眼响应 Notch 和 EGFR 信号,以及其他直接调控输入,驱动基因表达,仅局限于发育中的果蝇视网膜的视锥细胞。功能、遗传、生化、进化和生物信息学分析揭示了闪亮眼令人惊讶的特性,这可能为顺式调控逻辑和转录激活机制提供新的见解。这些特性包括:高度密集的调控信息和相应较低的“垃圾”内容;意外复杂的组合密码;增强子组织的紧密功能约束,与 DNA 序列和结合位点位置的高周转率矛盾地结合在一起;转录因子 Su(H) 弱结合低亲和力位点以维持对 Notch 信号的细胞类型特异性反应的需要;以及赋予功能不同的激活活性的多个专门的调控序列,所有这些都需要协同作用才能在体内实现正确的基因表达。

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