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Microfluidic affinity and ChIP-seq analyses converge on a conserved FOXP2-binding motif in chimp and human which enables the detection of evolutionarily novel targets

机译:微流体亲和力和ChIP-seq分析收敛于黑猩猩和人类中保守的FOXP2结合基序从而能够检测出进化上新颖的靶标

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摘要

The transcription factor forkhead box P2 (FOXP2) is believed to be important in the evolution of human speech. A mutation in its DNA-binding domain causes severe speech impairment. Humans have acquired two coding changes relative to the conserved mammalian sequence. Despite intense interest in FOXP2, it has remained an open question whether the human protein’s DNA-binding specificity and chromatin localization are conserved. Previous in vitro and ChIP-chip studies have provided conflicting consensus sequences for the FOXP2-binding site. Using MITOMI 2.0 microfluidic affinity assays, we describe the binding site of FOXP2 and its affinity profile in base-specific detail for all substitutions of the strongest binding site. We find that human and chimp FOXP2 have similar binding sites that are distinct from previously suggested consensus binding sites. Additionally, through analysis of FOXP2 ChIP-seq data from cultured neurons, we find strong overrepresentation of a motif that matches our in vitro results and identifies a set of genes with FOXP2 binding sites. The FOXP2-binding sites tend to be conserved, yet we identified 38 instances of evolutionarily novel sites in humans. Combined, these data present a comprehensive portrait of FOXP2’s-binding properties and imply that although its sequence specificity has been conserved, some of its genomic binding sites are newly evolved.
机译:转录因子叉头盒P2(FOXP2)被认为在人类语音的进化中很重要。其DNA结合域中的突变会导致严重的言语障碍。人类已经获得了相对于保守的哺乳动物序列的两个编码变化。尽管人们对FOXP2表现出了浓厚的兴趣,但人类蛋白的DNA结合特异性和染色质定位是否保守仍是一个悬而未决的问题。先前的体外和ChIP芯片研究已经为FOXP2结合位点提供了相互矛盾的共有序列。使用MITOMI 2.0微流体亲和力测定法,我们以碱基特异性的细节描述了FOXP2的结合位点及其亲和力,以描述最强结合位点的所有取代。我们发现人类和黑猩猩FOXP2具有相似的结合位点,与先前建议的共有结合位点不同。此外,通过分析来自培养的神经元的FOXP2 ChIP-seq数据,我们发现了与我们的体外结果相符并识别出一组具有FOXP2结合位点的基因的基序的过度表达。 FOXP2结合位点往往是保守的,但我们确定了人类进化新位点的38个实例。综合这些数据,可以全面了解FOXP2的结合特性,这意味着尽管它的序列特异性得到了保留,但它的一些基因组结合位点却是新进化的。

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