首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Identification of a Face Enhancer Reveals Direct Regulation of LIM Homeobox 8 (Lhx8) by Wingless-Int (WNT)/β-Catenin Signaling
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Identification of a Face Enhancer Reveals Direct Regulation of LIM Homeobox 8 (Lhx8) by Wingless-Int (WNT)/β-Catenin Signaling

机译:面部增强剂的鉴定揭示了Wingless-Int(WNT)/β-Catenin信号传导对LIM Homeobox 8(Lhx8)的直接调节

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摘要

Development of the mammalian face requires a large number of genes that are expressed with spatio-temporal specificity, and transcriptional regulation mediated by enhancers plays a key role in the precise control of gene expression. Using chromatin immunoprecipitation for a histone marker of active enhancers, we generated a genome-wide map of candidate enhancers from the maxillary arch (primordium for the upper jaw) of mouse embryos. Furthermore, we confirmed multiple novel craniofacial enhancers near the genes implicated in human palate defects through functional assays. We characterized in detail one of the enhancers (Lhx8_enh1) located upstream of Lhx8, a key regulatory gene for craniofacial development. Lhx8_enh1 contained an evolutionarily conserved binding site for lymphoid enhancer factor/T-cell factor family proteins, which mediate the transcriptional regulation by the WNT/β-catenin signaling pathway. We demonstrated in vitro that WNT/β-catenin signaling was indeed essential for the expression of Lhx8 in the maxillary arch cells and that Lhx8_enh1 was a direct target of the WNT/β-catenin pathway. Together, we uncovered a molecular mechanism for the regulation of Lhx8, and we provided valuable resources for further investigation into the gene regulatory network of craniofacial development.
机译:哺乳动物面部的发育需要以时空特异性表达的大量基因,而增强子介导的转录调控在基因表达的精确控制中起着关键作用。使用染色质免疫沉淀作为活性增强子的组蛋白标记,我们从小鼠胚胎的上颌弓(上颌原基)生成了候选增强子的全基因组图。此外,我们通过功能测定证实了与人类上颚缺损有关的基因附近有多个新型颅面增强子。我们详细描述了位于颅面发育关键调控基因Lhx8上游的一种增强子(Lhx8_enh1)。 Lhx8_enh1包含淋巴增强因子/ T细胞因子家族蛋白的进化上保守的结合位点,后者通过WNT /β-catenin信号通路介导转录调控。我们在体外证明WNT /β-catenin信号确实对于上颌弓形细胞中Lhx8的表达必不可少,并且Lhx8_enh1是WNT /β-catenin途径的直接靶标。在一起,我们发现了调控Lhx8的分子机制,并为进一步研究颅面发育的基因调控网络提供了宝贵的资源。

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