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一氧化碳与过渡金属的相互作用:药物靶点发现的进化见解。

Interaction of carbon monoxide with transition metals: evolutionary insights into drug target discovery.

机构信息

Department of Drug Discovery and Development, Italian Institute of Technology, Via Morego 30, 16163 Genoa, Italy.

出版信息

Curr Drug Targets. 2010 Dec;11(12):1595-604. doi: 10.2174/1389450111009011595.

Abstract

The perception that carbon monoxide (CO) is poisonous and life-threatening for mammalian organisms stems from its intrinsic propensity to bind iron in hemoglobin, a reaction that ultimately leads to impaired oxygen delivery to tissues. From evolutionary and chemical perspectives, however, CO is one of the most essential molecules in the formation of biological components and its interaction with transition metals is at the origin of primordial cell signaling. Not surprisingly, mammals have gradually evolved systems to finely control the synthesis and the sensing of this gaseous molecule. Cells are indeed continuously exposed to small quantities of CO produced endogenously during the degradation of heme by constitutive and inducible heme oxygenase enzymes. We have gradually learnt that heme oxygenase-derived carbon monoxide (CO) serves as a ubiquitous signaling mediator which could be exploited for therapeutic purposes. The development of transition metal carbonyls as prototypic carbon monoxide-releasing molecules (CO-RMs) represents a novel stratagem for a safer delivery of CO-based pharmaceuticals in the treatment of various pathological disorders. This review will look back at evolution to analyze and argue that a dynamic interaction of CO with specific intracellular metal centers is the common denominator for the diversified beneficial effects mediated by this gaseous molecule.

摘要

一氧化碳(CO)被认为对哺乳动物具有毒性和致命性,这源于其与血红蛋白中铁结合的固有倾向,这种反应最终导致组织供氧受损。然而,从进化和化学的角度来看,CO 是生物成分形成过程中最重要的分子之一,其与过渡金属的相互作用是原始细胞信号转导的起源。毫不奇怪,哺乳动物已经逐渐进化出系统来精细控制这种气态分子的合成和感知。事实上,细胞会不断暴露于少量的 CO 中,这些 CO 是由组成型和诱导型血红素加氧酶在血红素降解过程中产生的内源性 CO。我们逐渐了解到,血红素加氧酶衍生的一氧化碳(CO)作为一种普遍存在的信号介质,可用于治疗目的。作为典型的一氧化碳释放分子(CO-RMs)的过渡金属羰基化合物的发展代表了一种更安全地输送基于 CO 的药物的新策略,用于治疗各种病理疾病。这篇综述将回顾进化,分析并认为 CO 与特定细胞内金属中心的动态相互作用是这种气态分子介导的多样化有益作用的共同因素。

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