Shared retinoic acid responsive enhancers coordinately regulate nascent transcription of Hoxb coding and non-coding RNAs in the developing mouse neural tube

Zainab Afzal, Jeffrey J. Lange, Christof Nolte, S. McKinney, Christopher Wood, Ariel Paulson, Bony De Kumar, J. Unruh, Brian D. Slaughter, R. Krumlauf
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引用次数: 1

Abstract

Signaling pathways regulate the patterns of Hox gene expression that underlie their functions in specification of axial identity. Little is known about the properties of cis-regulatory elements and underlying transcriptional mechanisms that integrate graded signaling inputs to coordinately control Hox expression. Here we optimized single molecule fluorescent in situ hybridization (smFISH) technique with probes spanning introns to evaluate how three shared retinoic acid response element (RARE)-dependent enhancers in the Hoxb cluster regulate patterns of nascent transcription in vivo at the level of single cells in wild type and mutant embryos. We predominately detect nascent transcription of only a single Hoxb gene in each cell, with no evidence for simultaneous co-transcriptional coupling of all or specific subsets of genes. Single and/or compound RARE mutations indicate each enhancer differentially impacts global and local patterns of nascent transcription, suggesting that selectivity and competitive interactions between these enhancers is important to robustly maintain the proper levels and patterns of nascent Hoxb transcription. This implies rapid and dynamic regulatory interactions potentiate transcription of genes through combined inputs from these enhancers in coordinating the RA response.
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在发育中的小鼠神经管中,共享维甲酸应答增强子协调调节Hoxb编码rna和非编码rna的新生转录
信号通路调节Hox基因表达的模式,这是其在轴向身份规范中的功能基础。对于整合梯度信号输入协调控制Hox表达的顺式调控元件的特性和潜在的转录机制知之甚少。在这里,我们优化了单分子荧光原位杂交(smFISH)技术,利用探针跨越内含子来评估Hoxb簇中三个共享维甲酸反应元件(RARE)依赖性增强子如何在野生型和突变型胚胎的单细胞水平上调节体内新生转录模式。我们主要检测到每个细胞中只有一个Hoxb基因的新生转录,没有证据表明所有或特定基因亚群同时共转录偶联。单个和/或复合RARE突变表明每个增强子对新生Hoxb转录的全局和局部模式有不同的影响,这表明这些增强子之间的选择性和竞争性相互作用对于稳定维持新生Hoxb转录的适当水平和模式很重要。这意味着通过这些增强子在协调RA反应中的联合输入,快速和动态的调节相互作用增强了基因的转录。
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