Department of Genetics, University of Georgia, Coverdell Building, Room 250A, 500 DW Brooks Drive, Athens, GA 30602, USA.
Dev Biol. 2013 Feb 1;374(1):234-44. doi: 10.1016/j.ydbio.2012.11.017. Epub 2012 Nov 27.
Extensive functional analyses have demonstrated that the pituitary homeodomain transcription factor Pitx1 plays a critical role in specifying hindlimb morphology in vertebrates. However, much less is known regarding the target genes and cis-regulatory elements through which Pitx1 acts. Earlier studies suggested that the hindlimb transcription factors Tbx4, HoxC10, and HoxC11 might be transcriptional targets of Pitx1, but definitive evidence for direct regulatory interactions has been lacking. Using ChIP-Seq on embryonic mouse hindlimbs, we have pinpointed the genome-wide location of Pitx1 binding sites during mouse hindlimb development and identified potential gene targets for Pitx1. We determined that Pitx1 binding is significantly enriched near genes involved in limb morphogenesis, including Tbx4, HoxC10, and HoxC11. Notably, Pitx1 is bound to the previously identified HLEA and HLEB hindlimb enhancers of the Tbx4 gene and to a newly identified Tbx2 hindlimb enhancer. Moreover, Pitx1 binding is significantly enriched on hindlimb relative to forelimb-specific cis-regulatory features that are differentially marked by H3K27ac. However, our analysis revealed that Pitx1 also strongly associates with many functionally verified limb enhancers that exhibit similar levels of activity in the embryonic mesenchyme of forelimbs and hindlimbs. We speculate that Pitx1 influences hindlimb morphology both through the activation of hindlimb-specific enhancers as well as through the hindlimb-specific modulation of enhancers that are active in both sets of limbs.
广泛的功能分析表明,垂体同源域转录因子 Pitx1 在脊椎动物后肢形态发生中起关键作用。然而,关于 Pitx1 作用的靶基因和顺式调控元件知之甚少。早期研究表明,后肢转录因子 Tbx4、HoxC10 和 HoxC11 可能是 Pitx1 的转录靶标,但缺乏直接调控相互作用的确凿证据。我们使用 ChIP-Seq 对胚胎小鼠后肢进行分析,确定了 Pitx1 在小鼠后肢发育过程中的全基因组结合位点,并鉴定了 Pitx1 的潜在靶基因。我们发现 Pitx1 结合显著富集在参与肢体形态发生的基因附近,包括 Tbx4、HoxC10 和 HoxC11。值得注意的是,Pitx1 结合到先前鉴定的 Tbx4 基因的 HLEA 和 HLEB 后肢增强子上,以及新鉴定的 Tbx2 后肢增强子上。此外,与前肢相比,Pitx1 结合在后肢上的特异性顺式调控特征显著富集,这些特征通过 H3K27ac 差异标记。然而,我们的分析表明,Pitx1 还与许多功能验证的肢体增强子强烈相关,这些增强子在前后肢的胚胎间充质中具有相似的活性。我们推测,Pitx1 通过激活后肢特异性增强子以及通过在后肢特异性调节在两组肢体中都具有活性的增强子来影响后肢形态。