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The Isl1/Ldb1 Complex Orchestrates Genome-wide Chromatin Organization to Instruct Differentiation of Multipotent Cardiac Progenitors

机译:Isl1 / Ldb1复合体协调全基因组的染色质组织,以指导多能心脏祖细胞的分化。

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Cardiac stem/progenitor cells hold great potential for regenerative therapies; however, the mechanisms regulating their expansion and differentiation remain insufficiently defined. Here we show that Ldb1 is a central regulator of genome organization in cardiac progenitor cells, which is crucial for cardiac lineage differentiation and heart development. We demonstrate that Ldb1 binds to the key regulator of cardiac progenitors, Isl1, and protects it from degradation. Furthermore, the Isl1/Ldb1 complex promotes long-range enhancer-promoter interactions at the loci of the core cardiac transcription factors Mef2c and Hand2. Chromosome conformation capture followed by sequencing identified specific Ldb1-mediated interactions of the Isl1/Ldb1 responsive Mef2c anterior heart field enhancer with genes that play key roles in cardiac progenitor cell function and cardiovascular development. Importantly, the expression of these genes was downregulated upon Ldb1 depletion and Isl1/Ldb1 haplodeficiency. In conclusion, the Isl1/Ldb1 complex orchestrates a network for heart-specific transcriptional regulation and coordination in three-dimensional space during cardiogenesis.
机译:心脏干/祖细胞具有再生疗法的巨大潜力。但是,调节其扩展和分化的机制仍未充分定义。在这里,我们显示Ldb1是心脏祖细胞中基因组组织的中央调节剂,对心脏谱系分化和心脏发育至关重要。我们证明Ldb1绑定到心脏祖细胞Isl1的关键调节器,并保护它免受降解。此外,Isl1 / Ldb1复合物在核心心脏转录因子Mef2c和Hand2的基因座处促进长距离增强子-启动子相互作用。染色体构象捕获,然后测序,确定了Isl1 / Ldb1反应性Mef2c前心脏场增强子与在心脏祖细胞功能和心血管发育中起关键作用的基因的特异性Ldb1介导的相互作用。重要的是,这些基因的表达在Ldb1耗尽和Isl1 / Ldb1单倍体缺乏时被下调。总之,Isl1 / Ldb1复合物为心脏发生过程中三维空间中心脏特异性的转录调控和协调编排了网络。

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