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γ-谷氨酰半胱氨酸合成酶信使核糖核酸在吸烟者和慢性阻塞性肺疾病患者肺中的表达定位

Localization of gamma-glutamylcysteine synthetase messenger rna expression in lungs of smokers and patients with chronic obstructive pulmonary disease.

作者信息

Rahman I, van Schadewijk A A, Hiemstra P S, Stolk J, van Krieken J H, MacNee W, de Boer W I

机构信息

Respiratory Medicine Unit, ELEGI Laboratories, University of Edinburgh, Medical School, Edinburgh, Scotland, UK.

出版信息

Free Radic Biol Med. 2000 Mar 15;28(6):920-5. doi: 10.1016/s0891-5849(00)00179-9.

Abstract

Cigarette smoking results in an oxidant/antioxidant imbalance in the lungs and inflammation, which are considered to be key factors in the pathogenesis of chronic obstructive pulmonary disease (COPD). Glutathione (GSH) is an important protective antioxidant in lung epithelial cells and epithelial lining fluid. De novo GSH synthesis in cells occurs by a two-enzyme process. The rate-limiting enzyme is gamma-glutamylcysteine synthetase (gamma-GCS), in which the heavy subunit (HS) constitutes most of its catalytic activity. The localization and expression of gamma-GCS-HS in specific lung cells as well as possible differences in its expression between smokers with and without COPD have not yet been studied. The purpose of this study was to investigate gamma-GCS-HS expression using messenger RNA in situ hybridization in peripheral lung tissue. We studied 23 current or ex-smokers with similar smoking histories with (n = 11; forced expiratory volume in 1 s [FEV(1)] < 75% predicted) or without COPD (n = 12; FEV(1) < 84% predicted). We assessed the relations between pulmonary gamma-GCS-HS expression, FEV(1) and transforming growth factor-beta1 (TGFbeta(1)), because TGFbeta(1) can modulate gamma-GCS-HS expression in lung epithelial cells. Gamma-GCS-HS is predominantly expressed by airway and alveolar epithelial cells, alveolar CD68+ cells (macrophages), and endothelial cells of both arteries and veins. In subjects with COPD, semiquantitative analysis revealed higher levels of gamma-GCS-HS messenger RNA in alveolar epithelium (1.5 times, p <.04) and a trend for a higher expression in bronchiolar epithelium (1.3 times, p =.075) compared with subjects without COPD. We did not observe a significant correlation between airway and alveolar epithelial gamma-GCS-HS expression and TGFbeta(1) expression (r =.20), FEV(1) percentage predicted (r =.18), or FEV(1)/forced vital capacity ratio (r =.14; p.05). Our results show that gamma-GCS-HS is localized, particularly in lung epithelium, and shows higher expression in smokers with COPD. This suggests a specific role for enhanced GSH synthesis as a mechanism to provide an adaptive response against oxidative stress in patients with COPD.

摘要

吸烟会导致肺部氧化剂/抗氧化剂失衡和炎症,这被认为是慢性阻塞性肺疾病(COPD)发病机制中的关键因素。谷胱甘肽(GSH)是肺上皮细胞和上皮衬液中一种重要的保护性抗氧化剂。细胞内GSH的从头合成通过一个双酶过程进行。限速酶是γ-谷氨酰半胱氨酸合成酶(γ-GCS),其重亚基(HS)构成了其大部分催化活性。γ-GCS-HS在特定肺细胞中的定位和表达,以及在有和没有COPD的吸烟者之间其表达可能存在的差异尚未得到研究。本研究的目的是使用信使核糖核酸原位杂交技术在外周肺组织中研究γ-GCS-HS的表达。我们研究了23名有相似吸烟史的当前吸烟者或既往吸烟者,其中11人患有COPD(第1秒用力呼气量[FEV(1)]<预测值的75%),12人没有COPD(FEV(1)<预测值的84%)。我们评估了肺部γ-GCS-HS表达、FEV(1)与转化生长因子-β1(TGFβ(1))之间的关系,因为TGFβ(1)可以调节肺上皮细胞中γ-GCS-HS的表达。γ-GCS-HS主要由气道和肺泡上皮细胞、肺泡CD68+细胞(巨噬细胞)以及动脉和静脉的内皮细胞表达。在患有COPD的受试者中,半定量分析显示,与没有COPD的受试者相比,肺泡上皮中γ-GCS-HS信使核糖核酸水平更高(1.5倍,p<.04),细支气管上皮中表达有升高趋势(1.3倍,p=.075)。我们没有观察到气道和肺泡上皮γ-GCS-HS表达与TGFβ(1)表达(r=.20)、预测的FEV(1)百分比(r=.18)或FEV(1)/用力肺活量比值(r=.14;p>.05)之间存在显著相关性。我们的结果表明,γ-GCS-HS定位于肺部,尤其是肺上皮,并且在患有COPD的吸烟者中表达更高。这表明增强的GSH合成作为一种机制,在为COPD患者提供针对氧化应激的适应性反应方面具有特定作用。

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