无脊椎寄生虫中硫醇抗氧化系统的结构

A. Guevara-Flores, J. Martínez-González, J. Rendón, I. P. del Arenal
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引用次数: 20

摘要

在需氧生物中,氧作为最终电子受体的使用导致能量代谢的改善。然而,作为有氧代谢的副产品,活性氧的产生,留下了氧化应激的潜在风险。为了对抗这些有害化合物,生物体进化出了抗氧化策略。从这个意义上说,硫醇依赖的抗氧化防御系统起着核心作用。在所有情况下,半胱氨酸构成了构建这些系统的主要基石,存在于氧化还原底物中,如谷胱甘肽、硫氧还蛋白和锥虫硫酮,以及各种还原酶和过氧化物酶的催化位点。在某些情况下,相关的硒代半胱氨酸被掺入到选定的蛋白质中。在无脊椎寄生虫中,抗氧化系统在底物和酶的多样性中进化,代表了抗寄生虫策略设计的潜在领域。本文对无脊椎寄生虫中巯基抗氧化系统的组织进行了综述。强调了这些分类群与其最终宿主哺乳动物之间的差异。了解这类寄生虫的抗氧化防御机制,以及它们与特定宿主的相互作用,对于设计针对这些生物的药物至关重要。
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The Architecture of Thiol Antioxidant Systems among Invertebrate Parasites
The use of oxygen as the final electron acceptor in aerobic organisms results in an improvement in the energy metabolism. However, as a byproduct of the aerobic metabolism, reactive oxygen species are produced, leaving to the potential risk of an oxidative stress. To contend with such harmful compounds, living organisms have evolved antioxidant strategies. In this sense, the thiol-dependent antioxidant defense systems play a central role. In all cases, cysteine constitutes the major building block on which such systems are constructed, being present in redox substrates such as glutathione, thioredoxin, and trypanothione, as well as at the catalytic site of a variety of reductases and peroxidases. In some cases, the related selenocysteine was incorporated at selected proteins. In invertebrate parasites, antioxidant systems have evolved in a diversity of both substrates and enzymes, representing a potential area in the design of anti-parasite strategies. The present review focus on the organization of the thiol-based antioxidant systems in invertebrate parasites. Differences between these taxa and its final mammal host is stressed. An understanding of the antioxidant defense mechanisms in this kind of parasites, as well as their interactions with the specific host is crucial in the design of drugs targeting these organisms.
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