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首页> 外文期刊>The Journal of biological chemistry >Structure of the Hemoglobin-IsdH Complex Reveals the Molecular Basis of Iron Capture by Staphylococcus aureus
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Structure of the Hemoglobin-IsdH Complex Reveals the Molecular Basis of Iron Capture by Staphylococcus aureus

机译:血红蛋白-ISDH复合物的结构揭示了金黄色葡萄球菌的铁捕获的分子基础

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Staphylococcus aureus causes life-threatening disease in humans. The S. aureus surface protein iron-regulated surface determinant H (IsdH) binds to mammalian hemoglobin (Hb) and extracts heme as a source of iron, which is an essential nutrient for the bacteria. However, the process of heme transfer from Hb is poorly understood. We have determined the structure of IsdH bound to human Hb by x-ray crystallography at 4.2 ? resolution, revealing the structural basis for heme transfer. One IsdH molecule is bound to each α and β Hb subunit, suggesting that the receptor acquires iron from both chains by a similar mechanism. Remarkably, two near iron transporter (NEAT) domains in IsdH perform very different functions. An N-terminal NEAT domain binds α/β globin through a site distant from the globin heme pocket and, via an intervening structural domain, positions the C-terminal heme-binding NEAT domain perfectly for heme transfer. These data, together with a 2.3 ? resolution crystal structure of the isolated N-terminal domain bound to Hb and small-angle x-ray scattering of free IsdH, reveal how multiple domains of IsdH cooperate to strip heme from Hb. Many bacterial pathogens obtain iron from human hemoglobin using proteins that contain multiple NEAT domains and other domains whose functions are poorly understood. Our results suggest that, rather than acting as isolated units, NEAT domains may be integrated into higher order architectures that employ multiple interaction interfaces to efficiently extract heme from host proteins.
机译:金黄色葡萄球菌导致人类危及生命的疾病。 S.UUIRUS表面蛋白铁调节表面决定簇H(ISDH)与哺乳动物血红蛋白(HB)结合,并提取血红素作为铁的源,这是细菌的必需营养素。然而,从HB的血红素转移过程差不多清楚。我们已经确定了4.2的X射线晶体X射线晶体与人HB结合的ISDH结构的结构?分辨率,揭示血红素转移的结构基础。一个ISDH分子与每个α和βHb亚基结合,表明受体通过类似机制从两个链中获取铁。值得注意的是,ISDH中的两个近铁转运蛋白(整洁)域的域表现出非常不同的功能。 N-末端纯结构域通过从珠蛋白血红素口袋的位点结合α/β珠蛋白,并且通过介入结构域将C末端血红素结合整体域定位为血红素转移。这些数据与2.3一起?分辨率晶体结构的分离的N-末端域与Hb和FreeSDH的小角X射线散射结合,揭示了ISDH的多个域如何配合从Hb的血液中脱血。许多细菌病原体使用含有多个整齐结构域的蛋白质和其函数理解的其他域的蛋白质获得铁。我们的结果表明,而不是作为孤立的单位,可以集成到使用多个相互作用界面的高阶架构中,以便有效地从宿主蛋白中提取血红素的高阶架构。

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