首页> 美国卫生研究院文献>G3: GenesGenomesGenetics >PRC2 Is Dispensable in Vivo for β-Catenin-Mediated Repression of Chondrogenesis in the Mouse Embryonic Cranial Mesenchyme
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PRC2 Is Dispensable in Vivo for β-Catenin-Mediated Repression of Chondrogenesis in the Mouse Embryonic Cranial Mesenchyme

机译:PRC2是体内必不可少的β-Catenin介导的小鼠胚胎颅间充质软骨形成的抑制。

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摘要

A hallmark of craniofacial development is the differentiation of multiple cell lineages in close proximity to one another. The mouse skull bones and overlying dermis are derived from the cranial mesenchyme (CM). Cell fate selection of the embryonic cranial bone and dermis in the CM requires Wnt/β-catenin signaling, and loss of β-catenin leads to an ectopic chondrogenic cell fate switch. The mechanism by which Wnt/β-catenin activity suppresses the cartilage fate is unclear. Upon conditional deletion of β-catenin in the CM, several key determinants of the cartilage differentiation program, including Sox9, become differentially expressed. Many of these differentially expressed genes are known targets of the Polycomb Repressive Complex 2 (PRC2). Thus, we hypothesized that PRC2 is required for Wnt/β-catenin-mediated repression of chondrogenesis in the embryonic CM. We find that β-catenin can physically interact with PRC2 components in the CM in vivo. However, upon genetic deletion of Enhancer of Zeste homolog 2 (EZH2), the catalytic component of PRC2, chondrogenesis remains repressed and the bone and dermis cell fate is preserved in the CM. Furthermore, loss of β-catenin does not alter either the H3K27me3 enrichment levels genome-wide or on cartilage differentiation determinants, including Sox9. Our results indicate that EZH2 is not required to repress chondrogenesis in the CM downstream of Wnt/β-catenin signaling.
机译:颅面发育的标志是多个细胞谱系彼此紧邻的分化。小鼠颅骨和上层真皮均来自颅骨间质(CM)。 CM中胚胎颅骨和真皮的细胞命运选择需要Wnt /β-catenin信号传导,而β-catenin的丢失会导致异位软骨形成细胞命运的转变。 Wnt /β-catenin活性抑制软骨命运的机制尚不清楚。在CM中有条件地删除β-catenin后,软骨分化程序的几个关键决定因素(包括Sox9)就变得差异表达。这些差异表达的基因中有许多是Polycomb Repressive Complex 2(PRC2)的已知靶标。因此,我们假设PRC2是胚胎CM中Wnt /β-catenin介导的软骨形成抑制所必需的。我们发现,β-catenin可以在体内与CM中的PRC2成分发生物理相互作用。然而,在基因缺失Zeste同系物2(EZH2)的增强子,PRC2的催化成分后,软骨形成仍然受到抑制并且骨骼和真皮细胞的命运被保留在CM中。此外,β-catenin的丢失不会改变全基因组或软骨分化决定簇(包括Sox9)上的H3K27me3富集水平。我们的结果表明,不需要EZH2来抑制Wnt /β-catenin信号传导下游CM中的软骨形成。

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