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Multicopper oxidases: Biocatalysts in microbial pathogenesis and stress management

机译:多球氧化酶:微生物发病机制和应力管理中的生物催化剂

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摘要

The acquisition of metal ions such as iron, copper and manganese is essential for the survival of microorganisms as these are constituents of metalloproteins including enzymes, storage proteins, structural elements, transcription factors and antimicrobial factors in various biological processes. However, excess of these metal ions is associated with significant toxicity due to spontaneous redox cycling of ions and obstruction of normal metabolic pathways. To overcome this, microbes have developed a variety of metal regulatory systems allowing them to adapt to the changing biotic and abiotic environments. Multi-copper oxidases (MCOs) such as ceruloplasmins, ferroxidases, laccases and nitrite reductases are such regulatory systems employed by microbes to resist the toxicity of metal ions by controlling their oxidation states under aerobic conditions. MCOs help pathogens survive during an infection by evasion of the toxic environment generated by the host immune system and thus are considered necessary determinants of virulence. This review summarizes the role of MCOs in metal homeostasis under stressful conditions and the extent to which these MCOs contribute to microbial virulence within the host that might prove as an esteemed avenue for the development of novel antimicrobial therapies.
机译:获得铁,铜和锰如铁,铜和锰的收购对于微生物的存活是必不可少的,因为这些是金属蛋白的成分,包括各种生物过程中的酶,储存蛋白质,结构元素,转录因子和抗微生物因子。然而,由于离子的自发氧化还原循环和正常代谢途径的阻塞,过量的这些金属离子与显着的毒性有关。为了克服这一点,微生物已经开发出各种金属调节系统,使它们适应变化的生物和非生物环境。多铜氧化酶(MCO)如刺激纤维素,铁葡萄酶,漆酶和亚硝酸盐还原酶是微生物使用的这种调节系统,以通过在有氧条件下控制其氧化状态来抵抗金属离子的毒性。 MCOS帮助病原体在感染期间存活,通过宿主免疫系统产生的有毒环境,因此被认为是有必要的毒力的决定因素。本综述总结了MCOS在金属稳态下在压力条件下的作用以及这些MCO在宿主内有助于微生物毒力的程度,这可能被视为新型抗微生物疗法的尊重途径。

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