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HIV-1 Envelope Glycan Composition as a Key Determinant of Efficient Virus Transmission via DC-SIGN and Resistance to Inhibitory Lectins

机译:HIV-1信封聚糖成分是通过DC-SIGN高效传播病毒和对抑制性凝集素抗性的关键决定因素

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摘要

The HIV-1 envelope (Env) surface is shrouded with an assortment of oligomannose-, hybrid-, and complex-type glycans that enable virus interaction with carbohydrate-recognizing lectins. This study examined the importance of glycan heterogeneity for HIV-1 transmission through the trans-infection pathway by the host mannose-binding lectin DC-SIGN. A diversity of glycan content was observed among HIV-1 strains and associated with varying degrees of trans-infection via DC-SIGN and sensitivity to trans-infection blockage by antiviral lectins. When Env glycans were modified to display only the oligomannose type, DC-SIGN-mediated virus capture was enhanced; however, virus trans-infection was diminished because of increased degradation, which was alleviated by incorporation with hybrid-type glycans. Amino acid changes in the Env signal peptide (SP) modulated the Env glycan content, leading to alterations in DC-SIGN-dependent trans-infection and virus sensitivity to antiviral lectins. Hence, SP variation and glycosylation that confer varied types of oligosaccharides to HIV-1 Env are critical determinants for virus fitness and phenotypic diversity.
机译:HIV-1包膜(Env)表面覆盖有各种寡聚甘露糖,杂合和复杂类型的聚糖,从而使病毒与可识别碳水化合物的凝集素相互作用。这项研究检查了聚糖异质性对于宿主甘露糖结合凝集素DC-SIGN通过转染途径传播HIV-1的重要性。在HIV-1菌株中观察到聚糖含量的多样性,并与通过DC-SIGN进行的不同程度的转染以及抗病毒凝集素对转染阻断的敏感性有关。当Env聚糖被修改为仅显示低聚甘露糖类型时,DC-SIGN介导的病毒捕获被增强。然而,由于降解的增加,病毒的转染减少了,这可以通过掺入杂合型聚糖得到缓解。 Env信号肽(SP)中的氨基酸变化调节了Env聚糖含量,导致DC-SIGN依赖性转染和病毒对抗病毒凝集素的敏感性发生变化。因此,将不同类型的寡糖赋予HIV-1 Env的SP变异和糖基化是决定病毒适应性和表型多样性的关键因素。

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