Department of Medicine, Lillehei Heart Institute, University of Minnesota, Minneapolis, MN, 55455, USA.
Stem Cell Institute, University of Minnesota, Minneapolis, MN, 55455, USA.
Nat Commun. 2019 May 24;10(1):2316. doi: 10.1038/s41467-019-10318-6.
Chromatin looping allows enhancer-bound regulatory factors to influence transcription. Large domains, referred to as topologically associated domains, participate in genome organization. However, the mechanisms underlining interactions within these domains, which control gene expression, are not fully understood. Here we report that activation of embryonic myogenesis is associated with establishment of long-range chromatin interactions centered on Pax3-bound loci. Using mass spectrometry and genomic studies, we identify the ubiquitously expressed LIM-domain binding protein 1 (Ldb1) as the mediator of looping interactions at a subset of Pax3 binding sites. Ldb1 is recruited to Pax3-bound elements independently of CTCF-Cohesin, and is necessary for efficient deposition of H3K4me1 at these sites and chromatin looping. When Ldb1 is deleted in Pax3-expressing cells in vivo, specification of migratory myogenic progenitors is severely impaired. These results highlight Ldb1 requirement for Pax3 myogenic activity and demonstrate how transcription factors can promote formation of sub-topologically associated domain interactions involved in lineage specification.
染色质环化允许增强子结合的调控因子影响转录。大的结构域,称为拓扑相关结构域,参与基因组组织。然而,控制基因表达的这些结构域内相互作用的机制尚不完全清楚。在这里,我们报告胚胎肌发生的激活与 Pax3 结合位点为中心的长距离染色质相互作用的建立有关。通过质谱分析和基因组研究,我们确定普遍表达的 LIM 结构域结合蛋白 1 (Ldb1) 作为 Pax3 结合位点亚集的环化相互作用的介质。Ldb1 独立于 CTCF-Cohesin 被募集到 Pax3 结合元件,并且对于这些位点和染色质环化处的 H3K4me1 的有效沉积是必需的。当 Ldb1 在体内表达 Pax3 的细胞中被删除时,迁移性成肌祖细胞的特化严重受损。这些结果突出了 Ldb1 对 Pax3 成肌活性的要求,并展示了转录因子如何促进参与谱系特化的亚拓扑相关结构域相互作用的形成。