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首页> 外文期刊>Nucleic Acids Research >MyoD reprogramming requires Six1 and Six4 homeoproteins: genome-wide cis-regulatory module analysis
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MyoD reprogramming requires Six1 and Six4 homeoproteins: genome-wide cis-regulatory module analysis

机译:MyoD重编程需要Six1和Six4同源蛋白:全基因组顺式调节模块分析

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Myogenic regulatory factors of the MyoD family have the ability to reprogram differentiated cells toward a myogenic fate. In this study, we demonstrate that Six1 or Six4 are required for the reprogramming by MyoD of mouse embryonic fibroblasts (MEFs). Using microarray experiments, we found 761 genes under the control of both Six and MyoD. Using MyoD ChIPseq data and a genome-wide search for Six1/4 MEF3 binding sites, we found significant co-localization of binding sites for MyoD and Six proteins on over a thousand mouse genomic DNA regions. The combination of both datasets yielded 82 genes which are synergistically activated by Six and MyoD, with 96 associated MyoD+MEF3 putative cis-regulatory modules (CRMs). Fourteen out of 19 of the CRMs that we tested demonstrated in Luciferase assays a synergistic action also observed for their cognate gene. We searched putative binding sites on these CRMs using available databases and de novo search of conserved motifs and demonstrated that the Six/MyoD synergistic activation takes place in a feedforward way. It involves the recruitment of these two families of transcription factors to their targets, together with partner transcription factors, encoded by genes that are themselves activated by Six and MyoD, including Mef2, Pbx-Meis and EBF.
机译:MyoD家族的肌源性调节因子具有将分化细胞重编程为肌源性命运的能力。在这项研究中,我们证明,MyoD对小鼠胚胎成纤维细胞(MEF)进行重编程需要Six1或Six4。使用微阵列实验,我们发现在六个和MyoD的控制下的761个基因。使用MyoD ChIPseq数据和全基因组搜索Six1 / 4 MEF3结合位点,我们发现MyoD和六个蛋白的结合位点在1000多个小鼠基因组DNA区域上显着共定位。这两个数据集的组合产生了由96和MyoD协同激活的82个基因,以及96个相关的MyoD + MEF3假定的顺式调控模块(CRM)。我们测试的19种CRM中,有14种在萤光素酶检测中证明了其同源基因也具有协同作用。我们使用可用的数据库在这些CRM上搜索了推定的结合位点,并从头搜索了保守的基序,并证明了6 / MyoD协同激活以前馈方式进行。它涉及将这两个转录因子家族与伴侣转录因子一起募集到其靶标,后者由自身被Six和MyoD激活的基因(包括Mef2,Pbx-Meis和EBF)编码。

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