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谷胱甘肽 S-转移酶拷贝数变异改变肺基因表达。

Glutathione S-transferase copy number variation alters lung gene expression.

机构信息

Dept of Genetic Medicine, Weill Cornell Medical College, New York, NY 10065, USA.

出版信息

Eur Respir J. 2011 Jul;38(1):15-28. doi: 10.1183/09031936.00029210. Epub 2011 Feb 24.

Abstract

The glutathione S-transferase (GST) enzymes catalyse the conjugation of xenobiotics to glutathione. Based on reports that inherited copy number variations (CNVs) modulate some GST gene expression levels, and that the small airway epithelium (SAE) and alveolar macrophages (AMs) are involved early in the pathogenesis of smoking-induced lung disease, we asked: do germline CNVs modulate GST expression levels in SAE and AMs? Microarrays were used to survey GST gene expression and determine CNVs genotypes in SAE and AMs obtained by bronchoscopy from current smokers and nonsmokers. 26% of subjects were null for both GSTM1 alleles, with reduced GSTM1 mRNA levels seen in both SAE and AMs. 30% of subjects had homozygous deletions of GSTT1, with reduced mRNA levels in both tissues. Interestingly, GSTT2B exhibited homozygous deletion in the blood of 27% of subjects and was not expressed in SAE in the remainder of subjects, but was expressed in AMs of heterozygotes and wild-type subjects, proportionate to genotype. These data show a germline CNV-mediated linear relationship of genotype with expression level, suggesting minimal compensation of gene expression levels in heterozygotes, consistent with GST polymorphisms playing a role in the risk of smoking-associated, xenobiotic-induced lung disease.

摘要

谷胱甘肽 S-转移酶(GST)酶催化外源物质与谷胱甘肽的共轭。基于遗传拷贝数变异(CNVs)调节某些 GST 基因表达水平的报道,以及小气道上皮(SAE)和肺泡巨噬细胞(AMs)在吸烟引起的肺部疾病发病机制早期涉及的报道,我们提出了:种系 CNVs 是否调节 SAE 和 AMs 中的 GST 表达水平?通过支气管镜从当前吸烟者和非吸烟者中获取 SAE 和 AMs,利用微阵列调查 GST 基因表达并确定 CNVs 基因型。有 26%的研究对象同时缺失 GSTM1 等位基因,在 SAE 和 AMs 中均观察到 GSTM1 mRNA 水平降低。有 30%的研究对象存在 GSTT1 纯合缺失,两种组织中的 mRNA 水平均降低。有趣的是,GSTT2B 在 27%的研究对象的血液中表现出纯合缺失,在其余研究对象的 SAE 中不表达,但在 GSTT2B 杂合子和野生型研究对象的 AMs 中表达,与基因型成比例。这些数据表明种系 CNV 介导的基因型与表达水平之间存在线性关系,表明杂合子中基因表达水平的代偿最小,这与 GST 多态性在吸烟相关的外源物诱导的肺部疾病的风险中发挥作用一致。

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