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食脑变形虫(Naegleria fowleri)的脑部铜解毒机制涉及铜转运 ATP 酶和抗氧化系统。

Copper detoxification machinery of the brain-eating amoeba Naegleria fowleri involves copper-translocating ATPase and the antioxidant system.

机构信息

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

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

出版信息

Int J Parasitol Drugs Drug Resist. 2020 Dec;14:126-135. doi: 10.1016/j.ijpddr.2020.10.001. Epub 2020 Oct 7.

Abstract

Copper is a trace metal that is necessary for all organisms but toxic when present in excess. Different mechanisms to avoid copper toxicity have been reported to date in pathogenic organisms such as Cryptococcus neoformans and Candida albicans. However, little if anything is known about pathogenic protozoans despite their importance in human and veterinary medicine. Naegleria fowleri is a free-living amoeba that occurs naturally in warm fresh water and can cause a rapid and deadly brain infection called primary amoebic meningoencephalitis (PAM). Here, we describe the mechanisms employed by N. fowleri to tolerate high copper concentrations, which include various strategies such as copper efflux mediated by a copper-translocating ATPase and upregulation of the expression of antioxidant enzymes and obscure hemerythrin-like and protoglobin-like proteins. The combination of different mechanisms efficiently protects the cell and ensures its high copper tolerance, which can be advantageous both in the natural environment and in the host. Nevertheless, we demonstrate that copper ionophores are potent antiamoebic agents; thus, copper metabolism may be considered a therapeutic target.

摘要

铜是一种微量元素,所有生物都需要它,但过量存在时会有毒性。迄今为止,已经在新型隐球菌和白色念珠菌等病原生物中报道了多种避免铜毒性的机制。然而,尽管致病原生动物在人类和兽医医学中很重要,但人们对它们的了解却很少。福氏耐格里阿米巴原虫是一种自由生活的变形虫,自然存在于温暖的淡水中,可引起一种称为原发性阿米巴脑膜脑炎(PAM)的快速和致命的脑部感染。在这里,我们描述了福氏耐格里阿米巴原虫耐受高铜浓度的机制,包括通过铜转运 ATP 酶介导的铜外排和抗氧化酶表达的上调以及模糊的血影蛋白样和原球蛋白样蛋白等各种策略。不同机制的组合有效地保护了细胞,并确保其具有高铜耐受性,这在自然环境和宿主中都可能是有利的。然而,我们证明铜载体是有效的抗阿米巴药物;因此,铜代谢可以被认为是一个治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad68/7578549/5030e983200d/fx1.jpg

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