Department of Bioengineering, School of Engineering, The University of Tokyo, Tokyo, Japan.
Department of Bioengineering, School of Engineering, The University of Tokyo, Tokyo, Japan; Laboratory of Global Healthcare, Graduate School of Pharmaceutical Sciences, Kyushu University, Fukuoka, Japan.
J Biol Chem. 2022 Jun;298(6):101995. doi: 10.1016/j.jbc.2022.101995. Epub 2022 Apr 29.
Staphylococcus aureus is a major cause of deadly nosocomial infections, a severe problem fueled by the steady increase of resistant bacteria. The iron surface determinant (Isd) system is a family of proteins that acquire nutritional iron from the host organism, helping the bacterium to proliferate during infection, and therefore represents a promising antibacterial target. In particular, the surface protein IsdH captures hemoglobin (Hb) and acquires the heme moiety containing the iron atom. Structurally, IsdH comprises three distinctive NEAr-iron Transporter (NEAT) domains connected by linker domains. The objective of this study was to characterize the linker region between NEAT2 and NEAT3 from various biophysical viewpoints and thereby advance our understanding of its role in the molecular mechanism of heme extraction. We demonstrate the linker region contributes to the stability of the bound protein, likely influencing the flexibility and orientation of the NEAT3 domain in its interaction with Hb, but only exerts a modest contribution to the affinity of IsdH for heme. Based on these data, we suggest that the flexible nature of the linker facilitates the precise positioning of NEAT3 to acquire heme. In addition, we also found that residues His45 and His89 of Hb located in the heme transfer route toward IsdH do not play a critical role in the transfer rate-determining step. In conclusion, this study clarifies key elements of the mechanism of heme extraction of human Hb by IsdH, providing key insights into the Isd system and other protein systems containing NEAT domains.
金黄色葡萄球菌是一种主要的致命医院感染病原体,这种严重的问题因耐药菌的不断增加而加剧。铁表面决定因子(Isd)系统是一组从宿主生物中获取营养铁的蛋白质,有助于细菌在感染过程中增殖,因此代表了一个有前途的抗菌靶标。特别是表面蛋白 IsdH 捕获血红蛋白(Hb)并获取含有铁原子的血红素部分。在结构上,IsdH 由三个独特的近铁转运蛋白(NEAT)结构域通过连接结构域连接而成。本研究的目的是从各种生物物理角度表征 NEAT2 和 NEAT3 之间的连接区,从而深入了解其在血红素提取分子机制中的作用。我们证明连接区有助于结合蛋白的稳定性,可能影响 NEAT3 与 Hb 相互作用时的灵活性和取向,但对 IsdH 与血红素的亲和力仅发挥适度贡献。基于这些数据,我们认为连接区的灵活性有利于 NEAT3 精确定位以获取血红素。此外,我们还发现位于血红素向 IsdH 转移途径中的 Hb 的残基 His45 和 His89 在转移速率决定步骤中不起关键作用。总之,这项研究阐明了 IsdH 提取人 Hb 血红素的机制的关键要素,为 Isd 系统和其他含有 NEAT 结构域的蛋白质系统提供了关键的见解。