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首页> 外文期刊>Frontiers in Molecular Biosciences >Deep Mutational Scanning of Viral Glycoproteins and Their Host Receptors
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Deep Mutational Scanning of Viral Glycoproteins and Their Host Receptors

机译:病毒糖蛋白及其宿主受体的深静态扫描

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Deep mutational scanning or deep mutagenesis is a powerful tool for understanding the sequence diversity available to viruses for adaptation in a laboratory setting. It generally involves tracking an in vitro selection of protein sequence variants with deep sequencing to map mutational effects based on changes in sequence abundance. Coupled with any of a number of selection strategies, deep mutagenesis can explore the mutational diversity available to viral glycoproteins, which mediate critical roles in cell entry and are exposed to the humoral arm of the host immune response. Mutational landscapes of viral glycoproteins for host cell attachment and membrane fusion reveal extensive epistasis and potential escape mutations to neutralizing antibodies or other therapeutics, as well as aiding in the design of optimized immunogens for eliciting broadly protective immunity. While less explored, deep mutational scans of host receptors further assist in understanding virus-host protein interactions. Critical residues on the host receptors for engaging with viral spikes are readily identified and may help with structural modeling. Furthermore, mutations may be found for engineering soluble decoy receptors as neutralizing agents that specifically bind viral targets with tight affinity and limited potential for viral escape. By untangling the complexities of how sequence contributes to viral glycoprotein and host receptor interactions, deep mutational scanning is impacting ideas and strategies at multiple levels for combatting circulating and emergent virus strains.
机译:深度突变扫描或深度诱变是一种强大的工具,用于了解在实验室设置中适应病毒的序列多样性。它通常涉及跟踪具有深度测序的蛋白质序列变体的体外选择,以基于序列丰度的变化来映射突变效应。再加上许多选择策略,深度诱变可以探讨病毒糖蛋白可用的突变分集,其介导细胞入口中的关键作用,并暴露于宿主免疫应答的体液臂。用于宿主细胞附着的病毒糖蛋白的突变景观和膜融合揭示了广泛的超越和潜在的逃生突变,以中和抗体或其他治疗剂,以及帮助设计优化的免疫原,以引发广泛保护免疫。虽然较少探索,但宿主受体的深层突变扫描进一步帮助了解病毒 - 宿主蛋白质相互作用。用于接合与病毒钉接合的宿主受体上的临界残留物被容易地鉴定并且可能有助于结构建模。此外,可以发现突变用于工程可溶性诱饵受体作为中和剂,其特异性结合病毒靶标具有紧密亲和力和病毒逃逸的有限潜力。通过解除序列的复杂性如何为病毒糖蛋白和宿主受体相互作用有助于,深度突变扫描正在影响多个水平的思想和策略,以便对抗循环和紧急病毒菌株。

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