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A large-scale in vivo transcription factor screen defines bivalent chromatin as a key property of regulatory factors mediating Drosophila wing development

机译:大规模的体内转录因子筛选将二价染色质定义为介导果蝇翅膀发育的调控因子的关键特性

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摘要

Transcription factors (TFs) are key regulators of cell fate. The estimated 755 genes that encode DNA binding domain-containing proteins comprise ∼5% of all Drosophila genes. However, the majority has remained uncharacterized so far due to the lack of proper genetic tools. We generated 594 site-directed transgenic Drosophila lines that contain integrations of individual UAS-TF constructs to facilitate spatiotemporally controlled misexpression in vivo. All transgenes were expressed in the developing wing, and two-thirds induced specific phenotypic defects. In vivo knockdown of the same genes yielded a phenotype for 50%, with both methods indicating a great potential for misexpression to characterize novel functions in wing growth, patterning, and development. Thus, our UAS-TF library provides an important addition to the genetic toolbox of Drosophila research, enabling the identification of several novel wing development-related TFs. In parallel, we established the chromatin landscape of wing imaginal discs by ChIP-seq analyses of five chromatin marks and RNA Pol II. Subsequent clustering revealed six distinct chromatin states, with two clusters showing enrichment for both active and repressive marks. TFs that carry such “bivalent” chromatin are highly enriched for causing misexpression phenotypes in the wing, and analysis of existing expression data shows that these TFs tend to be differentially expressed across the wing disc. Thus, bivalently marked chromatin can be used as a marker for spatially regulated TFs that are functionally relevant in a developing tissue.
机译:转录因子(TFs)是细胞命运的关键调节因子。估计的755个编码包含DNA结合域的蛋白质的基因约占所有果蝇基因的5%。但是,由于缺乏适当的遗传工具,大多数人至今仍未鉴定。我们生成了594个定点转基因果蝇品系,其中包含单个UAS-TF构建体的整合,以促进体内时空控制的错误表达。所有转基因均在发育中的翼中表达,三分之二的诱导特异性表型缺陷。在体内对相同基因的敲除产生了50%的表型,这两种方法都表明存在错误表达的巨大潜力,以表征机翼生长,构图和发育中的新功能。因此,我们的UAS-TF库为果蝇研究的遗传工具箱提供了重要的补充,从而能够识别几种与机翼发育相关的新型TF。同时,我们通过对五个染色质标记和RNA Pol II的ChIP-seq分析,建立了机翼成像盘的染色质景观。随后的聚类显示出六个不同的染色质状态,其中两个聚类显示出活性标记和抑制标记的富集。携带此类“二价”染色质的TF高度丰富,可在机翼中引起误表达表型,对现有表达数据的分析表明,这些TF倾向于在机翼盘上差异表达。因此,二价标记的染色质可以用作在发育组织中功能相关的空间调节的TF的标记。

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