人磷酸甘油酸激酶基因在x染色体失活研究中的应用。

M A Goldman, S M Gartler, E A Keitges, D E Riley
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引用次数: 0

摘要

x连锁的人类Pgk基因已被克隆并部分表征,并获得了一些关于染色质结构和甲基化模式的活性与非活性基因比较的初步结果。到目前为止,我们还不能确定这些差异在X失活中可能起什么作用,如果有的话。研究表明,来自成熟体细胞中失活X染色体的DNA不参与Hprt基因的转化,这强烈暗示了失活X染色体在DNA水平上的修饰。然而,对Hprt、Gd、Pgk基因的甲基化研究揭示了甲基化模式的复杂性,包括活性X基因部分的超甲基化。不幸的是,解决在表达中哪些差异是至关重要的,区分因果关系,并推断X失活的传播和开始方面仍然是长期目标。Pgk系统在解开其中一些难题方面可能具有特殊价值。存在一个独特的常染色体Pgk位点,可以对x连锁管家基因和常染色体组织特异性基因进行信息比较,这些基因编码具有相同酶功能的蛋白质。Pgk靠近x失活控制中心可能有助于确定这一早期哺乳动物发育中非常重要事件的起点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The utilization of the human phosphoglycerate kinase gene in the investigation of X-chromosome inactivation.

The X-linked human Pgk gene has been cloned and partially characterized, and some preliminary results have been obtained regarding active vs. inactive gene comparisons of chromatin structure and methylation patterns. As yet we can say nothing definitive about what role, if any, these differences may play in X inactivation. The studies showing that DNA from the inactive X chromosome in mature somatic cells does not function in transformation of the Hprt gene strongly imply modification of the inactive X chromosome at the DNA level. However, methylation studies with the Hprt, Gd Pgk genes have revealed a complexity of methylation patterns including hypermethylation of parts of the active X gene. Resolution of just what difference is critical in expression, differentiating between cause and effect, and extrapolating to the spreading and initiation aspects of X inactivation are still, unfortunately, long-range goals. The Pgk system may be of special value in unraveling some of these difficult questions. A unique autosomal Pgk locus exists and should allow an informative comparison between an X-linked housekeeping gene and an autosomal, tissue-specific gene encoding proteins of identical enzymatic function. The proximity of Pgk to the X-inactivation control center may be useful in identifying the starting point of this very important event in early mammalian development.

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