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Functional coupling of transcription factor HiNF-P and histone H4 gene expression during pre- and post-natal mouse development

机译:在出生前和出生后小鼠发育过程中转录因子HiNF-p和组蛋白H4基因表达的功能性偶联

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摘要

Transcription factor Histone Nuclear Factor P (HiNF-P; gene symbol Hinfp) mediates cell cycle control of histone H4 gene expression to support the packaging of newly replicated DNA as chromatin. The HiNF-P/p220(NPAT) complex controls multiple H4 genes in established human cell lines and is critical for cell proliferation. The mouse Hinfp(LacZ) null allele causes early embryonic lethality due to a blastocyst defect. However, neither Hinfp function nor its temporal expression relative to histone H4 genes during fetal development has been explored. Here, we establish that expression of Hinfp is biologically coupled with expression of twelve functional mouse H4 genes during pre- and post-natal tissue-development. Both Hinfp and H4 genes are robustly expressed at multiple embryonic (E) days (from E5.5 to E15.5), coincident with ubiquitous LacZ staining driven by the Hinfp promoter. Five highly expressed mouse H4 genes (Hist1h4d, Histh4f, Hist1h4m and Hist2h4) account for \u3e90% of total histone H4 mRNA throughout development. Post-natal expression of H4 genes in mice is most evident in lung, spleen, thymus and intestine, and with few exceptions (e.g., adult liver) correlates with Hinfp gene expression. Histone H4 gene expression decreases butHinfp levels remain constitutive upon cell growth inhibition in culture. The in vivo co-expression of Hinfp and histone H4 genes is consistent with the biological function of Hinfp as a principal transcriptional regulator of histone H4 gene expression during mouse development.
机译:转录因子组蛋白核因子P(HiNF-P;基因符号Hinfp)介导组蛋白H4基因表达的细胞周期控制,以支持新复制的DNA作为染色质的包装。 HiNF-P / p220(NPAT)复合物控制已建立的人类细胞系中的多个H4基因,对细胞增殖至关重要。小鼠Hinfp(LacZ)空等位基因由于囊胚缺陷而导致早期胚胎致死率。然而,在胎儿发育过程中,Hinfp功能及其相对于组蛋白H4基因的时间表达都没有被研究过。在这里,我们确定在出生前和出生后组织发育过程中,Hinfp的表达与十二个功能性小鼠H4基因的表达在生物学上耦合。 Hinfp和H4基因均在多个胚胎(E)天(从E5.5到E15.5)强烈表达,与Hinfp启动子驱动的遍在LacZ染色相吻合。五个高表达的小鼠H4基因(Hist1h4d,Histh4f,Hist1h4m和Hist2h4)在整个发育过程中占组蛋白H4 mRNA总和的90%。 H4基因在小鼠中的产后表达在肺,脾,胸腺和肠道中最明显,并且几乎没有例外(例如成年肝脏)与Hinfp基因表达相关。组蛋白H4基因表达降低,但在培养物中抑制细胞生长后,Hinfp水平仍保持组成性。 Hinfp和组蛋白H4基因的体内共表达与Hinfp作为小鼠发育过程中组蛋白H4基因表达的主要转录调节因子的生物学功能相一致。

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