Hemoglobin receptor redundancy in Staphylococcus aureus: molecular flexibility as a determinant of divergent hemophore activity

IF 5.1 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Journal of Structural Biology: X Pub Date : 2025-12-01 Epub Date: 2025-11-05 DOI:10.1016/j.yjsbx.2025.100138
Valeria Buoli Comani , Omar De Bei , Francesca Pancrazi , Marcos Gragera , Giulia Paris , Marialaura Marchetti , Barbara Campanini , Luca Ronda , Ben F. Luisi , Serena Faggiano , Anna Rita Bizzarri , Stefano Bettati
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引用次数: 0

Abstract

To overcome iron limitation in the host, Staphylococcus aureus exploits sophisticated mechanisms to acquire this essential nutrient, particularly from hemoglobin (Hb). The bacterial hemophores IsdH and IsdB play key roles in binding Hb and extracting heme, but the structural and mechanistic differences underlying their individual contributions remain poorly defined. In this study, we dissected the molecular mechanisms by which IsdH engages Hb and mediates heme extraction, using cryo-electron microscopy, biochemical assays, and single-molecule force spectroscopy. Our structural analyses revealed pronounced conformational heterogeneity within IsdH:Hb complexes, highlighting marked flexibility in the heme-binding domain of IsdH, likely underlying its distinct functional behavior. This plasticity contrasts with the more rigid architecture of IsdB. The flexibility observed in IsdH correlates with our biochemical and biophysical findings, supporting its functional relevance. Unlike IsdB, IsdH does not display selectivity for α- or β-Hb chains and shows reduced involvement of the heme-binding domain in Hb recognition. It also follows a distinct kinetic mechanism for heme capture, which begins upon binding but proceeds more slowly than in IsdB. Finally, IsdH does not exhibit the catch bond-like behavior characteristic of IsdB, suggesting it may act in different physiological niches or conditions. Collectively, these findings highlight a distinct mode of Hb engagement by IsdH, shaped by its dynamic and flexible architecture, and provide mechanistic insight into the diversity of iron acquisition strategies employed by S. aureus.

Abstract Image

金黄色葡萄球菌的血红蛋白受体冗余:分子柔韧性作为发散性血红蛋白活性的决定因素
为了克服宿主体内铁的限制,金黄色葡萄球菌利用复杂的机制获取这种必需的营养物质,特别是从血红蛋白(Hb)中获取。细菌血红细胞IsdH和IsdB在结合Hb和提取血红素中发挥关键作用,但它们各自作用的结构和机制差异仍不清楚。在这项研究中,我们通过低温电子显微镜、生化分析和单分子力谱分析了IsdH参与Hb和介导血红素提取的分子机制。我们的结构分析揭示了IsdH:Hb复合物的明显构象异质性,突出了IsdH血红素结合域的显著灵活性,可能是其独特功能行为的基础。这种可塑性与IsdB更为严格的架构形成鲜明对比。在IsdH中观察到的灵活性与我们的生化和生物物理发现相关,支持其功能相关性。与IsdB不同,IsdH对α-或β-Hb链没有选择性,并且在Hb识别中血红素结合域的参与减少。它还遵循一种独特的血红素捕获动力学机制,从结合开始,但比IsdB进行得慢。最后,IsdH没有表现出IsdB的捕获键样行为特征,这表明它可能在不同的生理位或条件下起作用。总的来说,这些发现突出了IsdH参与Hb的独特模式,由其动态和灵活的结构形成,并为金黄色葡萄球菌采用的铁获取策略的多样性提供了机制见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Structural Biology: X
Journal of Structural Biology: X Biochemistry, Genetics and Molecular Biology-Structural Biology
CiteScore
6.50
自引率
0.00%
发文量
20
审稿时长
62 days
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