Niu Qinwang, Li Shihong, Chen Dali, Chen Qiwei, Chen Jianping
Department of Parasitology,West China School of Preclinical and Forensic Medicine,Sichuan University,Chengdu,Sichuan 610041,China.
The Third People's Hospital of Chengdu,Chengdu,Sichuan 610031,China.
Parasitology. 2016 Sep;143(11):1347-57. doi: 10.1017/S0031182016000858. Epub 2016 May 25.
Iron is an essential cofactor for many basic metabolic pathways in pathogenic microbes and their hosts. It is also dangerous as it can catalyse the production of reactive free radicals. This dual character makes the host can either limit iron availability to invading microbes or exploit iron to induce toxicity to pathogens. Successful pathogens, including Leishmania species, must possess mechanisms to circumvent host's iron limitation and iron-induced toxicity in order to survive. In this review, we discuss the regulation of iron metabolism in the setting of infection and delineate the iron acquisition strategies used by Leishmania parasites and their subversions to host iron metabolism to overcome host's iron-related defences.
铁是致病微生物及其宿主许多基本代谢途径所必需的辅助因子。它也很危险,因为它能催化活性自由基的产生。这种双重特性使得宿主既可以限制入侵微生物的铁供应,也可以利用铁来诱导对病原体的毒性。成功的病原体,包括利什曼原虫属,必须具备规避宿主铁限制和铁诱导毒性的机制才能生存。在这篇综述中,我们讨论了感染情况下铁代谢的调节,并描述了利什曼原虫寄生虫使用的铁获取策略及其对宿主铁代谢的颠覆,以克服宿主的铁相关防御。