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Multiscale affinity maturation simulations to elicit broadly neutralizing antibodies against HIV

机译:多尺度亲和力成熟模拟,以引发针对 HIV 的广泛中和抗体

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Author summaryVaccination has saved more lives than any other medical procedure. But, we do not have robust ways to develop vaccines against highly mutable pathogens. For example, there is no effective vaccine against HIV, and a universal vaccine against diverse strains of influenza is also not available. The development of immunization strategies to elicit antibodies that can neutralize diverse strains of highly mutable pathogens (so-called 'broadly neutralizing antibodies', or bnAbs) would enable the design of universal vaccines against such pathogens, as well as other viruses that may emerge in the future. In this paper, we present an agent-based model of affinity maturation-the Darwinian process by which antibodies evolve against a pathogen-that, for the first time, enables the in silico investigation of real germline nucleotide sequences of antibodies known to evolve into potent bnAbs, evolving against real amino acid sequences of HIV-based vaccine-candidate proteins. Our results provide new insights into bnAb evolution against HIV, and can be used to qualitatively guide the future design of vaccines against highly mutable pathogens. The design of vaccines against highly mutable pathogens, such as HIV and influenza, requires a detailed understanding of how the adaptive immune system responds to encountering multiple variant antigens (Ags). Here, we describe a multiscale model of B cell receptor (BCR) affinity maturation that employs actual BCR nucleotide sequences and treats BCR/Ag interactions in atomistic detail. We apply the model to simulate the maturation of a broadly neutralizing Ab (bnAb) against HIV. Starting from a germline precursor sequence of the VRC01 anti-HIV Ab, we simulate BCR evolution in response to different vaccination protocols and different Ags, which were previously designed by us. The simulation results provide qualitative guidelines for future vaccine design and reveal unique insights into bnAb evolution against the CD4 binding site of HIV. Our model makes possible direct comparisons of simulated BCR populations with results of deep sequencing data, which will be explored in future applications.
机译:作者摘要疫苗接种比任何其他医疗程序挽救了更多的生命。但是,我们没有强有力的方法来开发针对高度变异病原体的疫苗。例如,目前还没有针对艾滋病毒的有效疫苗,也没有针对各种流感毒株的通用疫苗。开发免疫策略以引发能够中和各种高度变异病原体菌株的抗体(所谓的“广泛中和抗体”,或bnAbs),将能够设计针对此类病原体以及未来可能出现的其他病毒的通用疫苗。在本文中,我们提出了一个基于药物的亲和力成熟模型 - 达尔文过程,通过该过程,抗体针对病原体进化 - 首次能够对已知进化为强效bnAb的抗体的真实种系核苷酸序列进行计算机模拟研究,针对基于HIV的疫苗候选蛋白的真实氨基酸序列进化。我们的研究结果为针对HIV的bnAb进化提供了新的见解,并可用于定性指导未来针对高度变异病原体的疫苗设计。针对HIV和流感等高度变异病原体的疫苗设计需要详细了解适应性免疫系统如何应对遇到多种变异抗原(Ags)。在这里,我们描述了 B 细胞受体 (BCR) 亲和力成熟的多尺度模型,该模型采用实际的 BCR 核苷酸序列并以原子细节处理 BCR/Ag 相互作用。我们应用该模型来模拟针对HIV的广泛中和抗体(bnAb)的成熟。从VRC01抗HIV抗体的种系前体序列开始,我们模拟了BCR进化,以响应我们之前设计的不同疫苗接种方案和不同的Ags。模拟结果为未来的疫苗设计提供了定性指导,并揭示了针对HIV的CD4结合位点的bnAb进化的独特见解。我们的模型可以将模拟的BCR群体与深度测序数据的结果进行直接比较,这将在未来的应用中进行探索。

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