首页> 外文期刊>Nucleic Acids Research >Dynamic changes in cis-regulatory occupancy by Six1 and its cooperative interactions with distinct cofactors drive lineage-specific gene expression programs during progressive differentiation of the auditory sensory epithelium
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Dynamic changes in cis-regulatory occupancy by Six1 and its cooperative interactions with distinct cofactors drive lineage-specific gene expression programs during progressive differentiation of the auditory sensory epithelium

机译:SIM-Sciplation占用的动态变化及其与不同辅因子的合作交互驱动血管特异性基因表达程序在听觉感觉上皮的逐渐分化期间

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摘要

The transcription factor Six1 is essential for induction of sensory cell fate and formation of auditory sensory epithelium, but how it activates gene expression programs to generate distinct cell-types remains unknown. Here, we perform genome-wide characterization of Six1 binding at different stages of auditory sensory epithelium development and find that Six1-binding to cis-regulatory elements changes dramatically at cell-state transitions. Intriguingly, Six1 pre-occupies enhancers of cell-types-pecific regulators and effectors before their expression. We demonstrate in-vivo cell-type-specific activity of Six1-bound novel enhancers of Pbx1, Fgf8, Dusp6, Vangl2, the hair-cell master regulator Atohi and a cascade of Atohi's downstream factors, including Pou4f3 and Gfi1. A subset of Six1-bound sites carry consensus-sequences for its downstream factors, including Atohl, Gfi1, Pou4f3, Gata3 and Pbx1, all of which physically interact with Six1. Motif analysis identifies RFX/X-box as one of the most significantly enriched motifs in Six1-bound sites, and we demonstrate that Six1-RFX proteins cooperatively regulate gene expression through binding to SIX:RFX-motifs. Six1 targets a wide range of hairbundle regulators and late Six1 deletion disrupts hair-bundle polarity. This study provides a mechanistic understanding of how Six1 cooperates with distinct cofactors in feedforward loops to control lineage-specific gene expression programs during progressive differentiation of the auditory sensory epithelium.
机译:转录因子S161对于诱导感觉细胞命运和对听觉感觉上皮的形成是必不可少的,但是如何激活基因表达程序以产生不同的细胞类型仍然未知。在这里,我们在听觉性上皮发育的不同阶段进行全基因组表征Six1结合,并发现与CIS-COMMINATION元件的六十二次结合在细胞状态转变时发生显着变化。有趣的是,六十个预占用细胞类型特异性调节剂和效果的增强剂。我们证明了PBX1,FGF8,Dusp6,Vangl2,毛细管总调节器Atohi的61个结合新型增强剂的体内细胞型特异性活性和atohi的下游因素的级联,包括POU4F3和GFI1。 S161-结合的位点的子集对其下游因子进行共有序列,包括ATOH1,GFI1,POU4F3,GATA3和PBX1,所有这些都与SIM11物理相互作用。图案分析将RFX / X盒识别为Six1-结合位点中最具显着富集的基序之一,我们证明了S161-RFX蛋白通过结合六个:RFX-QuIf来协同调节基因表达。 Six1针对各种堤坝稳压器,六十年后删除破坏了毛发束极性。本研究提供了机械理解,对馈电环中的Six1与不同的辅助因子合作的机械理解,以控制听觉感觉上皮的逐渐分化过程中的谱系特异性基因表达程序。

著录项

  • 来源
    《Nucleic Acids Research》 |2020年第6期|共17页
  • 作者单位

    Icahn Sch Med Mt Sinai Dept Genet &

    Genom Sci New York NY 10029 USA;

    Icahn Sch Med Mt Sinai Dept Genet &

    Genom Sci New York NY 10029 USA;

    Icahn Sch Med Mt Sinai Dept Neurosci New York NY 10029 USA;

    Univ Iowa Dept Biol Iowa City IA 52242 USA;

    Icahn Sch Med Mt Sinai Dept Genet &

    Genom Sci New York NY 10029 USA;

    Icahn Sch Med Mt Sinai Dept Genet &

    Genom Sci New York NY 10029 USA;

    Icahn Sch Med Mt Sinai Dept Neurosci New York NY 10029 USA;

    Southern Med Univ Shunde Hosp Dept Infect Dis Shunde 528308 Guangdong Peoples R China;

    Icahn Sch Med Mt Sinai Dept Neurosci New York NY 10029 USA;

    Icahn Sch Med Mt Sinai Dept Genet &

    Genom Sci New York NY 10029 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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