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NEAr Transporter (NEAT) Domains: Unique Surface Displayed Heme Chaperones That Enable Gram-Positive Bacteria to Capture Heme-Iron From Hemoglobin

机译:靠近运输器(整洁)结构域:独特的表面显示血红素伴侣,使革兰氏阳性细菌能够从血红蛋白中捕获血红素铁

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摘要

Iron is an important micronutrient that is required by bacteria to proliferate and to cause disease. Many bacterial pathogens forage iron from human hemoglobin (Hb) during infections, which contains this metal within heme (iron–protoporphyrin IX). Several clinically important pathogenic species within the Firmicutes phylum scavenge heme using surface-displayed or secreted NEAr Transporter (NEAT) domains. In this review, we discuss how these versatile proteins function in the Staphylococcus aureus Iron-regulated surface determinant system that scavenges heme-iron from Hb. S. aureus NEAT domains function as either Hb receptors or as heme-binding chaperones. In vitro studies have shown that heme-binding NEAT domains can rapidly exchange heme amongst one another via transiently forming transfer complexes, leading to the interesting hypothesis that they may form a protein-wire within the peptidoglycan layer through which heme flows from the microbial surface to the membrane. In Hb receptors, recent studies have revealed how dedicated heme- and Hb-binding NEAT domains function synergistically to extract Hb’s heme molecules, and how receptor binding to the Hb-haptoglobin complex may block its clearance by macrophages, prolonging microbial access to Hb’s iron. The functions of NEAT domains in other Gram-positive bacteria are also reviewed.
机译:铁是细菌来增殖和引起疾病所需的重要微量营养素。许多细菌病原体在感染期间来自人血红蛋白(HB)的熨斗,其在血红素(铁原原卟啉IX中)含有该金属。使用表面展示或分泌过的转运蛋白(整洁)结构域,几种临床上重要的致病性物种。在本综述中,我们讨论了这些多功能蛋白质如何在金黄色葡萄球菌铁管制的表面决定性系统中清除HB的血红素铁。 S.UUREUS整齐结构域用作Hb受体或血红素结合伴侣。体外研究表明,通过瞬时形成转移络合物,血红结合颗粒可以在彼此中彼此快速交换血红素,导致它们可以在肽聚糖层内形成蛋白质线,通过血红素从微生物表面流动形成蛋白质线。膜。在HB受体中,最近的研究表明,专用的血液和Hb结合整个结构域如何协同提取Hb的血红素分子,以及如何与Hb-Haptoglobin复合物结合的受体如何阻止巨噬细胞的间隙,延长微生物进入HB的铁。还审查了其他革兰氏阳性细菌中整齐结构域的功能。

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