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Histone demethylase KDM4B regulates otic vesicle invagination via epigenetic control of Dlx3 expression

机译:组蛋白脱甲基酶KDM4B通过表观遗传控制Dlx3表达来调节耳囊的内陷

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摘要

In vertebrates, the inner ear arises from the otic placode, a thickened swathe of ectoderm that invaginates to form the otic vesicle. We report that histone demethylase KDM4B is dynamically expressed during early stages of chick inner ear formation. A loss of KDM4B results in defective invagination and striking morphological changes in the otic epithelium, characterized by abnormal localization of adhesion and cytoskeletal molecules and reduced expression of several inner ear markers, including Dlx3. In vivo chromatin immunoprecipitation reveals direct and dynamic occupancy of KDM4B and its target, H3K9me3, at regulatory regions of the Dlx3 locus. Accordingly, coelectroporations of DLX3 or KDM4B encoding constructs, but not a catalytically dead mutant of KDM4B, rescue the ear invagination phenotype caused by KDM4B knockdown. Moreover, a loss of DLX3 phenocopies a loss of KDM4B. Collectively, our findings suggest that KDM4B play a critical role during inner ear invagination via modulating histone methylation of the direct target Dlx3.
机译:在脊椎动物中,内耳来自耳道斑,这是外胚层增厚的一团,其侵入形成耳道囊泡。我们报告说,组蛋白脱甲基酶KDM4B在鸡内耳形成的早期阶段动态表达。 KDM4B的缺失会导致缺陷的内陷,并在耳上皮细胞中发生明显的形态变化,其特征在于粘附和细胞骨架分子的异常定位以及几种内耳标记物(包括Dlx3)的表达降低。体内染色质免疫沉淀显示在Dlx3基因座的调节区直接和动态占有KDM4B及其靶标H3K9me3。因此,DLX3或KDM4B编码构建体的共电穿孔,而不是KDM4B的催化死亡突变体,可以挽救因KDM4B敲低引起的耳朵内陷表型。此外,DLX3表型的丧失复制了KDM4B。总体而言,我们的发现表明,KDM4B通过调节直接靶标Dlx3的组蛋白甲基化,在内耳内陷过程中起关键作用。

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