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首页> 外文期刊>The international journal of biochemistry and cell biology >Genomic characterization and dynamic methylation of promoter facilitates transcriptional regulation of H2A variants, H2A.1 and H2A.2 in various pathophysiological states of hepatocyte
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Genomic characterization and dynamic methylation of promoter facilitates transcriptional regulation of H2A variants, H2A.1 and H2A.2 in various pathophysiological states of hepatocyte

机译:启动子的基因组表征和动态甲基化促进H2A变体,H2A.1和H2A.2在肝细胞的各种病理学状态下的转录调节

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Differential expression of homomorphous variants of H2A family of histone H2A.1 and H2A.2 have been associated with hepatocellular carcinoma and maintenance of undifferentiated state of hepatocyte. However, not much is known about the transcriptional regulation of these H2A variants. The current study revealed the presence of 43 bp 5'-regulatory region upstream of translation start site and a 26 bp 3' stem loop conserved region for both the H2A.1 and H2A.2 variants. However, alignment of both H2A.1 and H2A.2 5'-untranslated region (UTR) sequences revealed no significant degree of homology between them despite the coding exon being very similar amongst the variants. Further, transient transfection coupled with dual luciferase assay of cloned 5' upstream sequences of H2A.1 and H2A.2 of length 1.2 (-1056 to +144) and 1.379 kb (-1160 to +219) from experimentally identified 5'UTR in rat liver cell line (CL38) confirmed their promoter activity. Moreover, in silico analysis revealed a presence of multiple CpG sites interspersed in the cloned promoter of H2A.1 and a CpG island near TSS for H2A.2, suggesting that histone variants transcription might be regulated epigenetically. Indeed, treatment with DNMT and HDAC inhibitors increased the expression of H2A.2 with no significant change in H2A.1 levels. Further, methyl DNA immunoprecipitation coupled with quantitative analysis of DNA methylation using real-time PCR revealed hypo-methylation and hyper-methylation of H2A.1 and H2A.2 respectively in embryonic and HCC compared to control adult liver tissue. Collectively, the data suggests that differential DNA methylation on histone promoters is a dynamic player regulating their expression status in different pathophysiological stages of liver. (C) 2017 Elsevier Ltd. All rights reserved.
机译:H2A组蛋白H2A.1和H2A.2系列H2A系列均匀变体的差异表达与肝细胞癌和肝细胞未分化状态的维持有关。然而,关于这些H 2 A变体的转录调节并不多。目前的研究表明,对于H2A.1和H2A.2变体,翻译起始位点和26b​​p 3'茎环保守区域的下游存在43bp 5'调节区。然而,H2A.1和H2A.25'-未转化的区域(UTR)序列的对准显示,尽管在变体之间非常相似,但在它们之间没有显着的同源性。此外,瞬时转染与克隆的5'上游序列的H2A.1和H2A.2的克隆5'上游序列的双荧光素酶测定耦合,从实验鉴定为5'UTR的14.2(-1056至+144)和1.379kb(-1160至+219)大鼠肝细胞系(CL38)证实了它们的启动子活性。此外,在硅分析中,揭示了在H2A.1的H2A.1的克隆启动子中遍布的多个CpG位点的存在,并且对于H2A.2附近的CPG岛,表明组蛋白变体转录可能会被抑制对象调节。实际上,DNMT和HDAC抑制剂的治疗增加了H2A.2的表达,H2A.1水平无明显变化。此外,使用实时PCR与DNA甲基化的定量分析相结合的甲基DNA免疫沉淀在胚胎和HCC中分别揭示了H2A.1和H2A.2的H2A.1和H2A.2的超甲基化。集体,数据表明,组蛋白启动子上的差异DNA甲基化是调节肝脏不同病理生理阶段的动态播放器。 (c)2017 Elsevier Ltd.保留所有权利。

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