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血红素加氧酶-1:一种新型应激诱导蛋白在氧化剂诱导的肺损伤中的功能、调节及意义

Heme oxygenase-1: function, regulation, and implication of a novel stress-inducible protein in oxidant-induced lung injury.

作者信息

Choi A M, Alam J

机构信息

Division of Pulmonary and Critical Care, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA.

出版信息

Am J Respir Cell Mol Biol. 1996 Jul;15(1):9-19. doi: 10.1165/ajrcmb.15.1.8679227.

Abstract

Accumulating evidence suggests that oxidative stress plays a central role in the pathogenesis of many pulmonary diseases including adult respiratory distress syndrome, emphysema, asthma, bronchopulmonary dysplasia, and interstitial pulmonary fibrosis. The morbidity and mortality of these diseases remain high even with optimal medical management. In our attempts to devise new therapies for these disorders, it is crucial to improve our understanding of the basic mechanism(s) of oxidant-induced lung injury. A major line of investigation seeks to characterize the cellular and molecular responses of the lung to oxidant insults. Much progress has been made in our understanding of the role of the "classic" antioxidant enzymes (e.g., superoxide dismutase, catalase, glutathione peroxidase) in mediating the lung's resistance against oxidant lung injury. However, it is becoming clear that other oxidant-induced gene products may also play vital roles in the lung's adaptive and/or protective response to oxidative stress. One such stress-response protein is heme oxygenase-1, HO-1. Since the identification of HO-1 in 1968, many of the studies involving this enzyme were understandably focused on the regulation and function of HO-1 in heme metabolism. This emphasis is self-evident as HO-1 catalyzes the first and rate-limiting step in heme degradation. Interestingly, however, evidence accumulated over the past 25 years demonstrates that HO-1 is induced not only by the substrate heme but also by a variety of non-heme inducers such as heavy metals, endotoxin, heat shock, inflammatory cytokines, and prostaglandins. The chemical diversity of HO-1 inducers led to the speculation that HO-1, besides its role in heme degradation, may also play a vital function in maintaining cellular homeostasis. Further support for this hypothesis was provided by Tyrrell and colleagues who showed in 1989 that HO-1 is also highly induced by a variety of agents causing oxidative stress. Subsequently, many investigators have focused their attention on the function and regulation of HO-1 in various in vitro and in vivo models of oxidant-mediated cellular and tissue injury. The magnitude of HO-1 induction after oxidative stress and the wide distribution of this enzyme in systemic tissues coupled with the intriguing biological activities of the catalytic byproducts, carbon monoxide, iron, and bilirubin, makes HO-1 a highly attractive and interesting candidate stress-response protein which may play key role(s) in mediating protection against oxidant-mediated lung injury. This review will focus on the current understanding of the physiological significance of HO-1 induction and the molecular regulation of HO-1 gene expression in response to oxidative stress. We hope that this discussion will stimulate interest and investigations into a field which is still largely uncharted in the pulmonary research community.

摘要

越来越多的证据表明,氧化应激在包括成人呼吸窘迫综合征、肺气肿、哮喘、支气管肺发育不良和间质性肺纤维化在内的许多肺部疾病的发病机制中起着核心作用。即使采用最佳的医疗管理,这些疾病的发病率和死亡率仍然很高。在我们试图为这些疾病设计新疗法的过程中,提高我们对氧化剂诱导的肺损伤基本机制的理解至关重要。一项主要的研究方向旨在描述肺对氧化剂损伤的细胞和分子反应。我们对“经典”抗氧化酶(如超氧化物歧化酶、过氧化氢酶、谷胱甘肽过氧化物酶)在介导肺对氧化剂肺损伤的抵抗作用的理解已经取得了很大进展。然而,越来越明显的是,其他氧化剂诱导的基因产物在肺对氧化应激的适应性和/或保护反应中也可能发挥重要作用。一种这样的应激反应蛋白是血红素加氧酶-1,即HO-1。自1968年HO-1被鉴定以来,可以理解的是,许多涉及这种酶的研究都集中在HO-1在血红素代谢中的调节和功能上。这种强调是不言而喻的,因为HO-1催化血红素降解的第一步也是限速步骤。然而,有趣的是,过去25年积累的证据表明,HO-1不仅由底物血红素诱导,还由多种非血红素诱导剂诱导,如重金属、内毒素、热休克、炎性细胞因子和前列腺素。HO-1诱导剂的化学多样性导致人们推测,HO-1除了在血红素降解中的作用外,在维持细胞内稳态方面也可能发挥重要作用。1989年,泰勒及其同事的研究进一步支持了这一假设,他们发现HO-1也能被多种引起氧化应激的物质高度诱导。随后,许多研究人员将注意力集中在HO-1在氧化剂介导的细胞和组织损伤的各种体外和体内模型中的功能和调节上。氧化应激后HO-1的诱导程度、该酶在全身组织中的广泛分布,以及催化副产物一氧化碳、铁和胆红素引人入胜的生物活性,使得HO-1成为一种极具吸引力且有趣的候选应激反应蛋白,它可能在介导对氧化剂介导的肺损伤的保护中发挥关键作用。这篇综述将聚焦于目前对HO-1诱导的生理意义以及HO-1基因表达在氧化应激反应中的分子调节的理解。我们希望这次讨论能激发人们对一个在肺部研究领域仍基本未被探索的领域的兴趣和研究。

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