人类和产生广泛中和抗体的猕猴体内 HIV-1 的平行进化动态

bioRxiv Pub Date : 2024-07-16 DOI:10.1101/2024.07.12.603090
Kai Shimagaki, Rebecca M. Lynch, J. Barton
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引用次数: 0

摘要

人类免疫缺陷病毒(HIV)-1 具有显著的遗传多样性。因此,有效的 HIV-1 疫苗必须诱导出能中和多种病毒变体的抗体。虽然已经从 HIV-1 感染者体内分离出了广谱中和抗体(bnAbs),但对导致其产生的病毒-抗体共同进化过程的总体了解仍然不全面。我们对两个产生了 bnAbs 的个体进行了 HIV-1 进化的定量研究。我们观察到,在感染早期,影响 HIV-1 包膜糖基化和逃避自体毒株特异性抗体的突变选择较强,而在感染后期,对 bnAb 抗性的选择较弱。为了证实我们的发现,我们分析了猕猴感染来自同两个个体的病毒的数据。我们推断,HIV-1 基因突变对人类和猕猴的适应性影响非常相似。此外,我们还观察到一种惊人的 HIV-1 快速进化模式,这种模式在人类和猕猴中都是一致的,而且先于 bnAbs 的出现。我们的研究凸显了猕猴和人类感染之间的相似性,并揭示了 bnAb 发展的定量进化特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Parallel HIV-1 evolutionary dynamics in humans and rhesus macaques who develop broadly neutralizing antibodies
Human immunodeficiency virus (HIV)-1 exhibits remarkable genetic diversity. For this reason, an effective HIV-1 vaccine must elicit antibodies that can neutralize many variants of the virus. While broadly neutralizing antibodies (bnAbs) have been isolated from HIV-1 infected individuals, a general understanding of the virus-antibody coevolutionary processes that lead to their development remains incomplete. We performed a quantitative study of HIV-1 evolution in two individuals who developed bnAbs. We observed strong selection early in infection for mutations affecting HIV-1 envelope glycosylation and escape from autologous strain-specific antibodies, followed by weaker selection for bnAb resistance later in infection. To confirm our findings, we analyzed data from rhesus macaques infected with viruses derived from the same two individuals. We inferred remarkably similar fitness effects of HIV-1 mutations in humans and macaques. Moreover, we observed a striking pattern of rapid HIV-1 evolution, consistent in both humans and macaques, that precedes the development of bnAbs. Our work highlights strong parallels between infection in rhesus macaques and humans, and it reveals a quantitative evolutionary signature of bnAb development.
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