肺谷胱甘肽和氧化应激:香烟烟雾诱导的气道疾病的含义。

I Rahman, W MacNee
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引用次数: 39

摘要

谷胱甘肽(GSH)是一种普遍存在的三肽硫醇,是肺部细胞内和细胞外重要的保护性抗氧化剂。谷胱甘肽合成的限速酶是γ -谷氨酰半胱氨酸合成酶(γ - gcs)。人γ - gcs重亚基和轻亚基的启动子(5'-侧翼)区域受激活蛋白-1和抗氧化反应元件的调控。肺细胞中GSH和γ - gcs的表达均受氧化剂、酚类抗氧化剂以及炎症和抗炎剂的调节。γ - gcs在转录和转录后水平均受调控。谷胱甘肽在维持氧化诱导的肺上皮细胞功能和控制促炎过程中起关键作用。肺泡和肺GSH代谢的改变被广泛认为是包括慢性阻塞性肺疾病(COPD)在内的许多炎症性肺部疾病的中心特征。吸烟是慢性阻塞性肺病发病机制的主要因素,它增加了慢性吸烟者肺上皮内液中的谷胱甘肽,而在急性吸烟中,其水平被耗尽。GSH的这些变化可能是由于肺中γ - gcs基因表达的改变。吸烟者和COPD患者肺上皮内层液中谷胱甘肽的调节机制尚不清楚。对肺中谷胱甘肽调节机制的了解可能会导致基于这种重要抗氧化剂在肺部炎症和损伤中产生的药理学或遗传学操作的新疗法的发展。本文综述了氧化应激下细胞GSH水平和γ - gcs表达的调控;肺氧化应激的证据以及GSH在COPD发病机制中的潜在作用。
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Lung glutathione and oxidative stress: implications in cigarette smoke-induced airway disease.

Glutathione (GSH), a ubiquitous tripeptide thiol, is a vital intra- and extracellular protective antioxidant in the lungs. The rate-limiting enzyme in GSH synthesis is gamma-glutamylcysteine synthetase (gamma-GCS). The promoter (5'-flanking) region of the human gamma-GCS heavy and light subunits are regulated by activator protein-1 and antioxidant response elements. Both GSH and gamma-GCS expression are modulated by oxidants, phenolic antioxidants, and inflammatory and anti-inflammatory agents in lung cells. gamma-GCS is regulated at both the transcriptional and posttranscriptional levels. GSH plays a key role in maintaining oxidant-induced lung epithelial cell function and also in the control of proinflammatory processes. Alterations in alveolar and lung GSH metabolism are widely recognized as a central feature of many inflammatory lung diseases including chronic obstructive pulmonary disease (COPD). Cigarette smoking, the major factor in the pathogenesis of COPD, increases GSH in the lung epithelial lining fluid of chronic smokers, whereas in acute smoking, the levels are depleted. These changes in GSH may result from altered gene expression of gamma-GCS in the lungs. The mechanism of regulation of GSH in the epithelial lining fluid in the lungs of smokers and patients with COPD is not known. Knowledge of the mechanisms of GSH regulation in the lungs could lead to the development of novel therapies based on the pharmacological or genetic manipulation of the production of this important antioxidant in lung inflammation and injury. This review outlines 1) the regulation of cellular GSH levels and gamma-GCS expression under oxidative stress and 2) the evidence for lung oxidant stress and the potential role of GSH in the pathogenesis of COPD.

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