Interdepartmental Center Biopharmanet-TEC, University of Parma, Parma 43124, Italy.
Department of Medicine and Surgery, University of Parma, Parma 43126, Italy.
Proc Natl Acad Sci U S A. 2022 Apr 5;119(14):e2116708119. doi: 10.1073/pnas.2116708119. Epub 2022 Mar 31.
Iron surface determinant B (IsdB) is a hemoglobin (Hb) receptor essential for hemic iron acquisition by Staphylococcus aureus. Heme transfer to IsdB is possible from oxidized Hb (metHb), but inefficient from Hb either bound to oxygen (oxyHb) or bound to carbon monoxide (HbCO), and encompasses a sequence of structural events that are currently poorly understood. By single-particle cryo-electron microscopy, we determined the structure of two IsdB:Hb complexes, representing key species along the heme extraction pathway. The IsdB:HbCO structure, at 2.9-Å resolution, provides a snapshot of the preextraction complex. In this early stage of IsdB:Hb interaction, the hemophore binds to the β-subunits of the Hb tetramer, exploiting a folding-upon-binding mechanism that is likely triggered by a cis/trans isomerization of Pro173. Binding of IsdB to α-subunits occurs upon dissociation of the Hb tetramer into α/β dimers. The structure of the IsdB:metHb complex reveals the final step of the extraction process, where heme transfer to IsdB is completed. The stability of the complex, both before and after heme transfer from Hb to IsdB, is influenced by isomerization of Pro173. These results greatly enhance current understanding of structural and dynamic aspects of the heme extraction mechanism by IsdB and provide insight into the interactions that stabilize the complex before the heme transfer event. This information will support future efforts to identify inhibitors of heme acquisition by S. aureus by interfering with IsdB:Hb complex formation.
铁表面决定子 B(IsdB)是金黄色葡萄球菌获取血红素(Hb)铁所必需的血红蛋白(Hb)受体。血红素可以从氧化的 Hb(metHb)转移到 IsdB,但从与氧结合的 Hb(oxyHb)或与一氧化碳结合的 Hb(HbCO)转移效率较低,并且包含目前理解较差的一系列结构事件。通过单颗粒冷冻电子显微镜,我们确定了两种 IsdB:Hb 复合物的结构,代表血红素提取途径中的关键物种。IsdB:HbCO 结构的分辨率为 2.9-Å,提供了预提取复合物的快照。在 IsdB:Hb 相互作用的这个早期阶段,血红素载体结合到 Hb 四聚体的β亚基上,利用一种折叠结合机制,该机制可能由 Pro173 的顺/反异构化触发。IsdB 与α亚基的结合发生在 Hb 四聚体解离为α/β二聚体之后。IsdB:metHb 复合物的结构揭示了提取过程的最后一步,其中血红素转移到 IsdB 完成。在血红素从 Hb 转移到 IsdB 前后,复合物的稳定性受到 Pro173 异构化的影响。这些结果极大地增强了对 IsdB 血红素提取机制的结构和动态方面的现有理解,并深入了解了在血红素转移事件之前稳定复合物的相互作用。这些信息将支持未来通过干扰 IsdB:Hb 复合物形成来识别金黄色葡萄球菌获取血红素抑制剂的努力。