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首页> 外文期刊>Immunological reviews. >DNA methylation and Z-DNA formation as mediators of quantitative differences in the expression of alleles.
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DNA methylation and Z-DNA formation as mediators of quantitative differences in the expression of alleles.

机译:DNA甲基化和Z-DNA的形成是等位基因表达量差异的媒介。

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摘要

With draft copies of several model genomes available in the near future, attention is turning towards the genetic mechanisms that determine differences between individuals. While mutations in protein coding regions affect the structure of gene products, polymorphisms outside such regions may cause quantitative differences in gene expression. Here we summarize observations indicating that such differences may be mediated by allele-specific alterations in the modification or structure of DNA. Mono-allelic expression of the rat T-cell differentiation marker RT6 in a subpopulation of cells is associated with allele-specific differences in DNA methylation in the RT6 promoter. In contrast to previously described examples of mono-allelic expression, these are determined neither stochastically nor by parental origin, but by cis-acting elements within the alleles. An attractive candidate is a rodent identifier (ID) element exclusively present in the RT6a allele. In the case of the rat nucleolin gene, a polymorphic dinucleotide repeat in the 5' region modulates promoter strength and forms left-handed Z-DNA in vivo. Models explaining putative effects of Z-DNA formation on transcription are presented. These observations suggest novel mechanisms by which repetitive DNA, an abundant source of polymorphism in the mammalian genome, may exert quantitative effects on gene expression.
机译:随着不远的将来有几个模型基因组的草稿,人们的注意力正在转向确定个体之间差异的遗传机制。尽管蛋白质编码区的突变会影响基因产物的结构,但此类区域外的多态性可能会导致基因表达的数量差异。在这里,我们总结了一些观察结果,这些观察结果表明,此类差异可能是由DNA修饰或结构中的等位基因特异性改变介导的。大鼠亚细胞分化标记物RT6在细胞亚群中的单等位基因表达与RT6启动子中DNA甲基化的等位基因特异性差异有关。与先前描述的单等位基因表达实例相反,这些不是随机决定的,也不是由亲本起源决定的,而是由等位基因内的顺式作用元件决定的。有吸引力的候选物是仅在RT6a等位基因中存在的啮齿动物标识符(ID)元素。就大鼠核仁素基因而言,在5'区的多态性二核苷酸重复序列可调节启动子强度并在体内形成左手Z-DNA。提出了解释Z-DNA形成对转录的推定作用的模型。这些观察结果提出了新颖的机制,通过这种机制,重复的DNA(哺乳动物基因组中丰富的多态性来源)可以对基因表达产生定量影响。

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