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深度突变扫描(DMS)的基孔肯雅病毒E3/E2病毒文库绘制了病毒氨基酸偏好图谱,并预测了中和基孔肯雅病毒抗体的病毒逃逸突变体。

Deep mutationally scanned (DMS) CHIKV E3/E2 virus library maps viral amino acid preferences and predicts viral escape mutants of neutralizing CHIKV antibodies.

作者信息

Stumpf Megan M, Brunetti Tonya, Davenport Bennett J, McCarthy Mary K, Morrison Thomas E

机构信息

Department of Immunology and Microbiology, University of Colorado Anschutz Medical Campus.

出版信息

bioRxiv. 2024 Dec 4:2024.12.04.626854. doi: 10.1101/2024.12.04.626854.

Abstract

As outbreaks of chikungunya virus (CHIKV), a mosquito-borne alphavirus, continue to present public health challenges, additional research is needed to generate protective and safe vaccines and effective therapeutics. Prior research has established a role for antibodies in mediating protection against CHIKV infection, and the early appearance of CHIKV-specific IgG or IgG neutralizing antibodies protects against progression to chronic CHIKV disease in humans. However, the importance of epitope specificity for these protective antibodies and how skewed responses contribute to development of acute and chronic CHIKV-associated joint disease remains poorly understood. Here, we describe the deep mutational scanning of one of the dominant targets of neutralizing antibodies during CHIKV infection, the E3/E2 (also known as p62) glycoprotein complex, to simultaneously test thousands of p62 mutants against selective pressures of interest in a high throughput manner. Characterization of the virus library revealed achievement of high diversity while also selecting out non-functional virus variants. Furthermore, this study provides evidence that this virus library system can comprehensively map sites critical for the neutralization function of antibodies of both known and unknown p62 domain specificities.

摘要

由于基孔肯雅病毒(CHIKV,一种蚊媒α病毒)的爆发持续给公共卫生带来挑战,因此需要开展更多研究来研发出具有保护作用且安全的疫苗以及有效的治疗方法。先前的研究已确定抗体在介导针对CHIKV感染的保护作用中发挥作用,并且CHIKV特异性IgG或IgG中和抗体的早期出现可防止人类发展为慢性CHIKV疾病。然而,对于这些保护性抗体的表位特异性的重要性以及偏态反应如何导致急性和慢性CHIKV相关关节疾病的发展,我们仍知之甚少。在此,我们描述了对CHIKV感染期间中和抗体的主要靶标之一E3/E2(也称为p62)糖蛋白复合物进行深度突变扫描,以高通量方式同时针对感兴趣的选择压力测试数千个p62突变体。对病毒文库的表征显示,在实现高多样性的同时,也筛选出了无功能的病毒变体。此外,这项研究提供了证据,表明该病毒文库系统可以全面绘制出对已知和未知p62结构域特异性抗体的中和功能至关重要的位点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a72/11643203/7b19b0e6175a/nihpp-2024.12.04.626854v1-f0001.jpg

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