Suppr超能文献

一个大的许可调控域专门控制心脏传导系统中 Tbx3 的表达。

A large permissive regulatory domain exclusively controls Tbx3 expression in the cardiac conduction system.

机构信息

From the Department of Anatomy, Embryology, and Physiology, Academic Medical Center, Amsterdam, The Netherlands (J.H.v.W., I.B., M.v.d.B., S.S., P.B., V.M.C.); Hubrecht Institute-KNAW and University Medical Center Utrecht, Utrecht, The Netherlands (H.J.G.v.d.W., W.d.L.); Department of Cell Biology, Erasmus MC Rotterdam, Rotterdam, The Netherlands (H.J.G.v.d.W.); and Cardiovascular Development and Repair Department, Centro Nacional de Investigaciones Cardiovasculares, Madrid, Spain (M.G.-V., C.B.-C., M.M.).

出版信息

Circ Res. 2014 Aug 1;115(4):432-41. doi: 10.1161/CIRCRESAHA.115.303591. Epub 2014 Jun 24.

Abstract

RATIONALE

The evolutionary conserved Tbx3/Tbx5 gene cluster encodes T-box transcription factors that play crucial roles in the development and homeostasis of the cardiac conduction system in human and mouse. Both genes are expressed in overlapping patterns and function in strictly tissue-specific and dose-dependent manners, yet, their regulation is poorly understood.

OBJECTIVE

To analyze the mechanism underlying the complex regulation of the Tbx3/Tbx5 cluster.

METHODS AND RESULTS

By probing the 3-dimensional architecture of the Tbx3/Tbx5 cluster using high-resolution circular chromosome conformation capture sequencing in vivo, we found that its regulatory landscape is in a preformed conformation similar in embryonic heart, limbs, and brain. Tbx3 and its flanking gene desert form a 1 Mbp loop between CCCTC-binding factor (CTCF)-binding sites that is separated from the neighboring Tbx5 loop. However, Ctcf inactivation did not result in transcriptional regulatory interaction between Tbx3 and Tbx5. Multiple sites within the Tbx3 locus contact the promoter, including sites corresponding to regions known to contain variations in the human genome influencing conduction. We identified an atrioventricular-specific enhancer and a pan-cardiac enhancer that contact the promoter and each other and synergize to activate transcription in the atrioventricular conduction system.

CONCLUSIONS

We provide a high-resolution model of the 3-dimensional structure and function of the Tbx3/Tbx5 locus and show that the locus is organized in a preformed, permissive structure. The Tbx3 locus forms a CTCF-independent autonomous regulatory domain with multiple combinatorial regulatory elements that control the precise pattern of Tbx3 in the cardiac conduction system.

摘要

理由

进化保守的 Tbx3/Tbx5 基因簇编码 T 盒转录因子,在人和小鼠的心脏传导系统的发育和稳态中发挥关键作用。这两个基因以重叠的模式表达,并以严格的组织特异性和剂量依赖性方式发挥作用,但它们的调控机制尚不清楚。

目的

分析 Tbx3/Tbx5 簇复杂调控的机制。

方法和结果

通过使用高分辨率环状染色体构象捕获测序在体内探测 Tbx3/Tbx5 簇的三维结构,我们发现其调控景观处于胚胎心脏、肢体和大脑中相似的预形成构象。Tbx3 及其侧翼基因荒漠在 CTCF 结合位点之间形成一个 1 Mbp 的环,与相邻的 Tbx5 环分离。然而,Ctcf 的失活并没有导致 Tbx3 和 Tbx5 之间的转录调控相互作用。Tbx3 基因座内的多个位点与启动子接触,包括与已知在人类基因组中影响传导的变异相对应的区域。我们确定了一个房室特异性增强子和一个泛心脏增强子,它们与启动子和彼此接触,并协同激活房室传导系统中的转录。

结论

我们提供了 Tbx3/Tbx5 基因座的三维结构和功能的高分辨率模型,并表明该基因座以预先形成的、许可的结构组织。Tbx3 基因座形成一个 CTCF 独立的自主调控域,具有多个组合调控元件,可控制 Tbx3 在心脏传导系统中的精确模式。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验