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炭疽病病原体中的血红素分解代谢。

Heme catabolism in the causative agent of anthrax.

机构信息

Department of Molecular Virology and Microbiology, Baylor College of Medicine, Houston, TX, USA.

Department of Microbiology, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA, USA.

出版信息

Mol Microbiol. 2019 Aug;112(2):515-531. doi: 10.1111/mmi.14270. Epub 2019 May 27.

Abstract

A challenge common to all bacterial pathogens is to acquire nutrients from hostile host environments. Iron is an important cofactor required for essential cellular processes such as DNA repair, energy production and redox balance. Within a mammalian host, most iron is sequestered within heme, which in turn is predominantly bound by hemoglobin. While little is understood about the mechanisms by which bacterial hemophores attain heme from host-hemoglobin, even less is known about intracellular heme processing. Bacillus anthracis, the causative agent of anthrax, displays a remarkable ability to grow in mammalian hosts. Hypothesizing this pathogen harbors robust ways to catabolize heme, we characterize two new intracellular heme-binding proteins that are distinct from the previously described IsdG heme monooxygenase. The first of these, HmoA, binds and degrades heme, is necessary for heme detoxification and facilitates growth on heme iron sources. The second protein, HmoB, binds and degrades heme too, but is not necessary for heme utilization or virulence. The loss of both HmoA and IsdG renders B. anthracis incapable of causing anthrax disease. The additional loss of HmoB in this background increases clearance of bacilli in lungs, which is consistent with this protein being important for survival in alveolar macrophages.

摘要

所有细菌病原体都面临着一个共同的挑战,那就是从敌对的宿主环境中获取营养物质。铁是细胞过程所必需的重要辅因子,如 DNA 修复、能量产生和氧化还原平衡。在哺乳动物宿主中,大多数铁被螯合在血红素中,而血红素主要与血红蛋白结合。虽然人们对细菌血色素从宿主血红蛋白中获取血红素的机制知之甚少,但对细胞内血红素加工过程的了解就更少了。炭疽杆菌是炭疽病的病原体,它具有在哺乳动物宿主中生长的显著能力。假设这种病原体具有强大的血红素分解代谢途径,我们鉴定了两种新型的细胞内血红素结合蛋白,它们与先前描述的 IsdG 血红素单加氧酶不同。其中第一种蛋白 HmoA 结合并降解血红素,对于血红素解毒是必需的,并促进了对血红素铁源的利用。第二种蛋白 HmoB 也结合并降解血红素,但对血红素的利用或毒力并非必需。同时缺失 HmoA 和 IsdG 会使炭疽杆菌无法引起炭疽病。在这种背景下,进一步缺失 HmoB 会增加肺部棒状杆菌的清除率,这与该蛋白对肺泡巨噬细胞存活很重要的观点一致。

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