淋球菌亚拟态候选疫苗形成β-发夹转折并与治疗性单克隆抗体亲水结合

JACS Au Pub Date : 2024-07-05 DOI:10.1021/jacsau.4c00359
Peter T. Beernink, Cristina Di Carluccio, Roberta Marchetti, Linda Cerofolini, Sara Carillo, Alessandro Cangiano, Nathan Cowieson, Jonathan Bones, Antonio Molinaro, Luigi Paduano, Marco Fragai, Benjamin P. Beernink, Sunita Gulati, Jutamas Shaughnessy, Peter A. Rice, Sanjay Ram, Alba Silipo
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摘要

淋病的病原体--淋病奈瑟菌的耐多药菌株的传播是一个全球性的健康问题。因此,开发安全有效的淋病疫苗迫在眉睫。在之前的研究中,我们针对淋球菌脂寡糖(LOS)制备了小鼠单克隆抗体(mAb)2C7,mAb 2C7 对淋球菌具有补体依赖性杀菌活性,而且几乎所有临床分离株都表达了它的糖表位。此外,我们还发现了一种模仿 2C7 LOS 表位的多肽--环肽 2(CP2),它能在小鼠体内激发杀菌抗体,并在小鼠阴道定植模型中发挥积极的保护作用。在这项研究中,我们通过 X 射线晶体学、核磁共振光谱和分子动力学(MD)模拟,对 mAb 2C7 及其与 CP2 肽的复合物进行了结构分析。Fab 2C7 与 CP2 结合的晶体结构显示,CP2 肽采用 beta 发夹构象,主要通过疏水相互作用与 Fab 结合。我们利用核磁共振光谱和 MD 模拟绘制了 2C7 表位图,并确定了 CP2 的生物活性构象。我们还利用小角 X 射线散射(SAXS)和原生质谱获得了有关复合物形状和组装状态的更多信息。总之,我们的新结构信息为将 mAb 2C7 人源化为淋球菌感染的治疗药物以及将多肽 CP2 优化为疫苗抗原提供了策略建议。
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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Gonococcal Mimitope Vaccine Candidate Forms a Beta-Hairpin Turn and Binds Hydrophobically to a Therapeutic Monoclonal Antibody
The spread of multidrug-resistant strains of Neisseria gonorrhoeae, the etiologic agent of gonorrhea, represents a global health emergency. Therefore, the development of a safe and effective vaccine against gonorrhea is urgently needed. In previous studies, murine monoclonal antibody (mAb) 2C7 was raised against gonococcal lipooligosaccharide (LOS). mAb 2C7 elicits complement-dependent bactericidal activity against gonococci, and its glycan epitope is expressed by almost every clinical isolate. Furthermore, we identified a peptide, cyclic peptide 2 (CP2) that mimicked the 2C7 LOS epitope, elicited bactericidal antibodies in mice, and actively protected in a mouse vaginal colonization model. In this study, we performed structural analyses of mAb 2C7 and its complex with the CP2 peptide by X-ray crystallography, NMR spectroscopy, and molecular dynamics (MD) simulations. The crystal structure of Fab 2C7 bound to CP2 showed that the peptide adopted a beta-hairpin conformation and bound the Fab primarily through hydrophobic interactions. We employed NMR spectroscopy and MD simulations to map the 2C7 epitope and identify the bioactive conformation of CP2. We also used small-angle X-ray scattering (SAXS) and native mass spectrometry to obtain further information about the shape and assembly state of the complex. Collectively, our new structural information suggests strategies for humanizing mAb 2C7 as a therapeutic against gonococcal infection and for optimizing peptide CP2 as a vaccine antigen.
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