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精液中高浓度的果糖会竞争性抑制广谱且强效的靶向高甘露糖聚糖的抗病毒药物。

The High Content of Fructose in Human Semen Competitively Inhibits Broad and Potent Antivirals That Target High-Mannose Glycans.

机构信息

Department of Microbiology and Immunology, Carver College of Medicine, University of Iowa, Iowa City, Iowa, USA.

Department of Biochemistry, Carver College of Medicine, University of Iowa, Iowa City, Iowa, USA.

出版信息

J Virol. 2020 Apr 16;94(9). doi: 10.1128/JVI.01749-19.

Abstract

Semen is the primary transmission vehicle for various pathogenic viruses. Initial steps of transmission, including cell attachment and entry, likely occur in the presence of semen. However, the unstable nature of human seminal plasma and its toxic effects on cells in culture limit the ability to study virus infection and inhibition in this medium. We found that whole semen significantly reduces the potency of antibodies and microbicides that target glycans on the envelope glycoproteins (Envs) of HIV-1. The extraordinarily high concentration of the monosaccharide fructose in semen contributes significantly to the effect by competitively inhibiting the binding of ligands to α1,2-linked mannose residues on Env. Infection and inhibition in whole human seminal plasma are accurately mimicked by a stable synthetic simulant of seminal fluid that we formulated. Our findings indicate that, in addition to the protein content of biological secretions, their small-solute composition impacts the potency of antiviral microbicides and mucosal antibodies. Biological secretions allow viruses to spread between individuals. Each type of secretion has a unique composition of proteins, salts, and sugars, which can affect the infectivity potential of the virus and inhibition of this process. Here, we describe HIV-1 infection and inhibition in whole human seminal plasma and a synthetic simulant that we formulated. We discovered that the sugar fructose in semen decreases the activity of a broad and potent class of antiviral agents that target mannose sugars on the envelope protein of HIV-1. This effect of semen fructose likely reduces the efficacy of such inhibitors to prevent the sexual transmission of HIV-1. Our findings suggest that the preclinical evaluation of microbicides and vaccine-elicited antibodies will be improved by their assessment in synthetic formulations that simulate the effects of semen on HIV-1 infection and inhibition.

摘要

精液是各种致病病毒的主要传播载体。包括细胞附着和进入在内的最初传播步骤可能发生在精液存在的情况下。然而,人类精液的不稳定性质及其对培养细胞的毒性作用限制了在该介质中研究病毒感染和抑制的能力。我们发现,整个精液显著降低了针对 HIV-1 包膜糖蛋白 (Env) 上糖基的抗体和杀微生物剂的效力。精液中极高浓度的单糖果糖通过竞争性抑制配体与 Env 上α1,2-连接的甘露糖残基的结合,对该效应有显著贡献。我们配制的稳定合成精液模拟物准确模拟了整个人类精液中的感染和抑制。我们的发现表明,除了生物分泌物的蛋白质含量外,其小分子溶质组成也会影响抗病毒杀微生物剂和粘膜抗体的效力。生物分泌物使病毒在个体之间传播。每种分泌物都有其独特的蛋白质、盐和糖组成,这会影响病毒的感染潜力和抑制该过程的能力。在这里,我们描述了整个人类精液中和我们配制的合成模拟物中的 HIV-1 感染和抑制。我们发现,精液中的果糖降低了针对 HIV-1 包膜蛋白上甘露糖糖的广谱有效抗病毒药物的活性。精液果糖的这种作用可能降低了此类抑制剂预防 HIV-1 性传播的功效。我们的研究结果表明,通过在模拟精液对 HIV-1 感染和抑制的影响的合成配方中评估杀微生物剂和疫苗诱导的抗体,将改善其临床前评估。

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