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Chromosomal basis of X chromosome inactivation: identification of a multigene domain in Xp11.21-p11.22 that escapes X inactivation.X染色体失活的染色体基础:在Xp11.21 - p11.22中逃脱X失活的一个多基因结构域的鉴定。
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Genomic organization of the human TIMP-1 gene. Investigation of a causative role in the pathogenesis of X-linked retinitis pigmentosa 2.人类金属蛋白酶组织抑制因子-1(TIMP-1)基因的基因组结构。关于其在X连锁视网膜色素变性2型发病机制中致病作用的研究。
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人类TIMP1基因的多态性X染色体失活

Polymorphic X-chromosome inactivation of the human TIMP1 gene.

作者信息

Anderson C L, Brown C J

机构信息

Department of Medical Genetics, University of British Columbia, Vancouver, Canada.

出版信息

Am J Hum Genet. 1999 Sep;65(3):699-708. doi: 10.1086/302556.

DOI:10.1086/302556
PMID:10441576
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1377976/
Abstract

X inactivation silences most but not all of the genes on one of the two X chromosomes in mammalian females. The human X chromosome preserves its activation status when isolated in rodent/human somatic-cell hybrids, and hybrids retaining either the active or inactive X chromosome have been used to assess the inactivation status of many X-linked genes. Surprisingly, the X-linked gene for human tissue inhibitor of metalloproteinases (TIMP1) is expressed in some but not all inactive X-containing somatic-cell hybrids, suggesting that this gene is either prone to reactivation or variable in its inactivation. Since many genes that escape X inactivation are clustered, we examined the expression of four genes (ARAF1, ELK1, ZNF41, and ZNF157) within approximately 100 kb of TIMP1. All four genes were expressed only from the active X chromosome, demonstrating that the factors allowing TIMP1 expression from the inactive X chromosome are specific to the TIMP1 gene. To determine if this variable inactivation of TIMP1 is a function of the hybrid-cell environment or also is observed in human cells, we developed an allele-specific assay to assess TIMP1 expression in human females. Expression of two alleles was detected in some female cells with previously demonstrated extreme skewing of X inactivation, indicating TIMP1 expression from the inactive chromosome. However, in other cells, no expression of TIMP1 was observed from the inactive X chromosome, suggesting that TIMP1 inactivation is polymorphic in human females.

摘要

在哺乳动物雌性个体中,X染色体失活会使两条X染色体之一上的大多数但并非全部基因沉默。人类X染色体在啮齿动物/人类体细胞杂种中分离时会保持其激活状态,保留活性或失活X染色体的杂种已被用于评估许多X连锁基因的失活状态。令人惊讶的是,人类金属蛋白酶组织抑制剂(TIMP1)的X连锁基因在一些但并非所有含有失活X染色体的体细胞杂种中表达,这表明该基因要么易于重新激活,要么在失活方面存在差异。由于许多逃避X染色体失活的基因是成簇的,我们检测了TIMP1基因约100 kb范围内的四个基因(ARAF1、ELK1、ZNF41和ZNF157)的表达。所有这四个基因仅从活性X染色体表达,这表明允许TIMP1从失活X染色体表达的因素是TIMP1基因特有的。为了确定TIMP1这种可变失活是杂种细胞环境的作用,还是在人类细胞中也能观察到,我们开发了一种等位基因特异性检测方法来评估人类女性中TIMP1的表达。在一些先前已证明X染色体失活存在极端偏斜的女性细胞中检测到了两个等位基因的表达,这表明TIMP1从失活染色体表达。然而,在其他细胞中,未观察到TIMP1从失活X染色体表达,这表明TIMP1失活在人类女性中是多态性的。