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Hoxc Gene Collinear Expression and Epigenetic Modifications Established during Embryogenesis Are Maintained until after Birth

机译:Hoxc基因共线表达和在胚胎发生过程中建立的表观遗传修饰保持到出生后。

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摘要

The Hox genes, which are organized into clusters on different chromosomes, are key regulators of embryonic anterior-posterior (A-P) body pattern formation and are expressed at specific times and in specific positions in developing vertebrate embryos. Previously, we have shown that histone methylation patterns are closely correlated with collinear Hox gene expression patterns along the A-P axis of E14.5 mouse embryos. Since histone modification is thought to play a crucial mechanistic role in the highly coordinated pattern of collinear Hox gene expression, we examined the maintenance of the spatial collinear expression pattern of Hoxc genes and the corresponding histone modifications during embryogenesis and in early postnatal mice. Hox expression patterns and histone modifications were analyzed by semi-quantitative RT-PCR and chromatin immunoprecipitation (ChIP)-PCR analyses, respectively. The spatiotemporal expression patterns of Hoxc genes in a cluster were maintained until the early postnatal stage (from E8.5 through P5). Examination of histone modifications in E14.5 and P5 tissues revealed that level of H3K27me3 is only a weak correlation with collinear Hoxc gene expression in the trunk regions although diminished in general, however the enrichment of H3K4me3 is strongly correlated with the gene expression in both stages. In summary, the initial spatiotemporal collinear expression pattern of Hoxc genes and epigenetic modifications are maintained after birth, likely contributing to the establishment of the gene expression code for position in the anatomic body axis throughout the entire life of the organism.
机译:Hox基因被组织成不同染色体上的簇,是胚胎前后(A-P)体模式形成的关键调节因子,并在发育中的脊椎动物胚胎中的特定时间和特定位置表达。以前,我们已经表明,组蛋白甲基化模式与沿E14.5小鼠胚胎的A-P轴的共线Hox基因表达模式密切相关。由于组蛋白修饰被认为在共线Hox基因表达的高度协调模式中起着关键的机械作用,因此我们研究了Hoxc基因的空间共线表达模式的维持以及在胚胎发生期间和早期出生后小鼠中相应的组蛋白修饰。 Hox表达模式和组蛋白修饰分别通过半定量RT-PCR和染色质免疫沉淀(ChIP)-PCR分析进行分析。 Hoxc基因在一个簇中的时空表达模式一直保持到出生后早期(从E8.5到P5)。对E14.5和P5组织中的组蛋白修饰的检查表明,尽管总体上减少了H3K27me3的水平与躯干区域共线Hoxc基因表达的相关性较弱,但在两个阶段中H3K4me3的富集与基因表达均具有很强的相关性。总而言之,Hoxc基因的初始时空共线表达模式和表观遗传修饰在出生后得以维持,这可能有助于在整个生物体整个生命过程中建立基因表达编码,以定位在解剖体轴上。

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