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嗜热双口虫对氧化应激的反应。

The response of Naegleria gruberi to oxidative stress.

机构信息

Department of Parasitology, Faculty of Science, Charles University, BIOCEV, Vestec, Czech Republic.

出版信息

Metallomics. 2022 Mar 21;14(3). doi: 10.1093/mtomcs/mfac009.

Abstract

Aerobic organisms require oxygen for respiration but must simultaneously cope with oxidative damages inherently linked with this molecule. Unicellular amoeboflagellates of the genus Naegleria, containing both free-living species and opportunistic parasites, thrive in aerobic environments. However, they are also known to maintain typical features of anaerobic organisms. Here, we describe the mechanisms of oxidative damage mitigation in Naegleria gruberi and focus on the molecular characteristics of three noncanonical proteins interacting with oxygen and its derived reactive forms. We show that this protist expresses hemerythrin, protoglobin, and an aerobic-type rubrerythrin, with spectral properties characteristic of the cofactors they bind. We provide evidence that protoglobin and hemerythrin interact with oxygen in vitro and confirm the mitochondrial localization of rubrerythrin by immunolabeling. Our proteomic analysis and immunoblotting following heavy metal treatment revealed upregulation of hemerythrin, while rotenone treatment resulted in an increase in rubrerythrin protein levels together with a vast upregulation of alternative oxidase. Our study provided new insights into the mechanisms employed by N. gruberi to cope with different types of oxidative stress and allowed us to propose specific roles for three unique and understudied proteins: hemerythrin, protoglobin, and rubrerythrin.

摘要

需氧生物的呼吸需要氧气,但同时必须应对与这种分子内在相关的氧化损伤。纳格尔里亚属的单细胞阿米巴鞭毛虫,既有自由生活的物种,也有机会致病的寄生虫,它们在需氧环境中茁壮成长。然而,它们也被认为具有典型的厌氧生物特征。在这里,我们描述了 Naegleria gruberi 中减轻氧化损伤的机制,并重点介绍了与氧气及其衍生的反应性形式相互作用的三种非典型蛋白质的分子特征。我们表明,这种原生动物表达血红素、原球蛋白和需氧型 rubrerythrin,其光谱特性与其结合的辅因子有关。我们提供了证据表明原球蛋白和血红素在体外与氧气相互作用,并通过免疫标记证实了 rubrerythrin 的线粒体定位。我们的蛋白质组学分析和重金属处理后的免疫印迹显示血红素的表达上调,而鱼藤酮处理导致 rubrerythrin 蛋白水平的增加,同时替代氧化酶的大量上调。我们的研究为 N. gruberi 应对不同类型的氧化应激所采用的机制提供了新的见解,并使我们能够为三种独特且研究不足的蛋白质:血红素、原球蛋白和 rubrerythrin 提出具体的作用。

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