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结核分枝杆菌的羧基麦科宾霉素-麦科宾霉素铁载体系统的铁摄取和转运依赖于铁调节蛋白 HupB。

Iron uptake and transport by the carboxymycobactin-mycobactin siderophore machinery of Mycobacterium tuberculosis is dependent on the iron-regulated protein HupB.

机构信息

Department of Animal Biology, University of Hyderabad, Hyderabad, 500 046, India.

Department of Biotechnology & Bioinformatics, University of Hyderabad, Hyderabad, 500 046, India.

出版信息

Biometals. 2021 Jun;34(3):511-528. doi: 10.1007/s10534-021-00292-2. Epub 2021 Feb 20.

Abstract

Iron-starved Mycobacterium tuberculosis utilises the carboxymycobactin-mycobactin siderophore machinery to acquire iron. These two siderophores have high affinity for ferric iron and can withdraw the metal ion from insoluble iron hydroxides and iron-binding proteins. We first reported HupB, a multi-functional mycobacterial protein to be associated with iron acquisition in M. tuberculosis. This 28 kDa cell wall protein, up regulated upon iron limitation functions as a transcriptional activator of mycobactin biosynthesis and is essential for the pathogen to survive inside macrophages. The focus of this study is to understand the role of HupB in iron uptake and transport by the carboxmycobactin-mycobactin siderophore machinery in M. tuberculosis. Experimental approaches included radiolabelled iron uptake studies by viable organisms and protein-ligand binding studies using the purified HupB and the two siderophores. Uptake of Fe-carboxymycobactin by wild type M. tuberculosis (WT M.tb.H37Rv) and not by the hupB KO mutant (M.tb.ΔhupB) showed that HupB is necessary for the uptake of ferri-carboxymycobactin. Additionally, the radiolabel recovery was high in HupB-incorporated liposomes upon addition of the labelled siderophore. Bioinformatic and experimental studies using spectrofluorimetry, CD analysis and surface plasmon resonance not only confirmed the binding of HupB with ferri-carboxymycobactin and ferri-mycobactin but also with free iron. In conclusion, HupB is established as a ferri- carboxymycobactin receptor and by virtue of its property to bind ferric iron, functions as a transporter of the ferric iron from the extracellular siderophore to mycobactin within the cell envelope.

摘要

缺铁状态下的结核分枝杆菌利用羧基麦科宾素-麦科宾素铁载体机制获取铁。这两种铁载体对三价铁具有高亲和力,可以从不溶性氢氧化铁和铁结合蛋白中提取金属离子。我们首次报道 HupB 是一种与结核分枝杆菌中铁获取相关的多功能分枝杆菌蛋白。这种 28 kDa 的细胞壁蛋白在缺铁时上调,作为麦科宾素生物合成的转录激活因子发挥作用,是病原体在巨噬细胞内生存所必需的。本研究的重点是了解 HupB 在结核分枝杆菌羧基麦科宾素-麦科宾素铁载体机制中铁摄取和转运中的作用。实验方法包括通过活生物体进行放射性标记铁摄取研究以及使用纯化的 HupB 和两种铁载体进行蛋白-配体结合研究。野生型结核分枝杆菌(WT M.tb.H37Rv)而非 hupB KO 突变体(M.tb.ΔhupB)摄取 Fe-羧基麦科宾素表明 HupB 是摄取 ferri-carboxymycobactin 的必要条件。此外,在添加标记铁载体后,含有 HupB 的脂质体中的放射性标记回收很高。使用荧光光谱法、CD 分析和表面等离子体共振进行的生物信息学和实验研究不仅证实了 HupB 与 ferri-carboxymycobactin 和 ferri-mycobactin 的结合,还证实了与游离铁的结合。总之,HupB 被确定为 ferri-carboxymycobactin 的受体,并且由于其结合三价铁的特性,它作为从细胞外铁载体到细胞包膜内麦科宾素的铁的转运蛋白发挥作用。

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