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首页> 外文期刊>Molecular and Cellular Biology >High-resolution methylation analysis of the human hypoxanthine phosphoribosyltransferase gene 5' region on the active and inactive X chromosomes: correlation with binding sites for transcription factors.
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High-resolution methylation analysis of the human hypoxanthine phosphoribosyltransferase gene 5' region on the active and inactive X chromosomes: correlation with binding sites for transcription factors.

机译:人类次黄嘌呤磷酸核糖转移酶基因5'活跃和不活跃的X染色体上的高分辨率甲基化分析:与转录因子的结合位点的相关性。

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摘要

DNA methylation within GC-rich promoters of constitutively expressed X-linked genes is correlated with transcriptional silencing on the inactive X chromosome in female mammals. For most X-linked genes, X chromosome inactivation results in transcriptionally active and inactive alleles occupying each female nucleus. To examine mechanisms responsible for maintaining this unique system of differential gene expression, we have analyzed the methylation of individual cytosine residues in the 5' CpG island of the human hypoxanthine phosphoribosyltransferase (HPRT) gene on the active and inactive X chromosomes. Methylation analysis of 142 CpG dinucleotides by genomic sequencing was carried out on purified DNA using the cytosine-specific Maxam and Gilbert DNA sequencing reaction in conjunction with ligation-mediated PCR. These studies demonstrate the 5' CpG islands of active and 5-azacytidine-reactivated alleles are essentially unmethylated while the inactive allele is hypermethylated. The inactive allele is completely methylated at nearly all CpG dinucleotides except in a 68-bp region containing four adjacent GC boxes where most CpG dinucleotides are either unmethylated or partially methylated. Curiously, these GC boxes exhibit in vivo footprints only on the active X chromosome, not on the inactive X. The methylation pattern of the inactive HPRT gene is strikingly different from that reported for the inactive X-linked human phosphoglycerate kinase gene which exhibits methylation at all CpG sites in the 5' CpG island. These results suggest that the position of methylated CpG dinucleotides, the density of methylated CpGs, the length of methylated regions, and/or chromatin structure associated with methylated DNA may have a role in repressing the activity of housekeeping promoters on the inactive X chromosome. The pattern of DNA methylation on the inactive human HPRT gene may also provide insight into the process of inactivating the gene early in female embryogenesis.
机译:组成型表达X连锁基因的富含GC的启动子中的DNA甲基化与雌性哺乳动物非活动X染色体上的转录沉默相关。对于大多数X连锁基因,X染色体失活会导致每个雌性核占据转录活性和非活性等位基因。为了检查负责维持这种独特的差异基因表达系统的机制,我们分析了人类次黄嘌呤磷酸核糖基转移酶(HPRT)基因在活跃和不活跃X染色体上5'CpG岛中单个胞嘧啶残基的甲基化。使用胞嘧啶特异性Maxam和Gilbert DNA测序反应结合连接介导的PCR,对纯化的DNA进行142 CpG二核苷酸的基因组测序甲基化分析。这些研究表明,活性和5-氮杂胞苷活化的等位基因的5'CpG岛基本上未甲基化,而非活性等位基因则被高度甲基化。除在包含四个相邻GC框的68 bp区域中,其中大部分CpG二核苷酸未甲基化或部分甲基化之外,几乎所有CpG二核苷酸的无活性等位基因都被完全甲基化。奇怪的是,这些GC盒仅在活性X染色体上显示了体内足迹,而不在无活性X上显示。无活性HPRT基因的甲基化模式与报道的无活性X连接的人磷酸甘油酸激酶基因的甲基化模式显着不同。 5'CpG岛中的所有CpG网站。这些结果表明,甲基化的CpG二核苷酸的位置,甲基化的CpG的密度,甲基化的区域的长度和/或与甲基化的DNA相关的染色质结构可能在抑制无活性X染色体上的管家启动子的活性中起作用。失活的人类HPRT基因上的DNA甲基化模式也可能提供洞察女性胚胎发生早期使基因失活的过程。

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