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基于结构的疫苗开发进展。

Progress in the Development of Structure-Based Vaccines.

机构信息

Lankenau Institute for Medical Research, Wynnewood, PA, USA.

出版信息

Methods Mol Biol. 2022;2412:15-33. doi: 10.1007/978-1-0716-1892-9_2.

DOI:10.1007/978-1-0716-1892-9_2
PMID:34918239
Abstract

The immune response elicited by vaccines against microorganisms makes it the most successful medical interventions against infectious diseases. Conventional vaccines have limitations in inducing immunity against many types of pathogenic microorganism. The genetic diversity of microorganisms, coupled with the high degree of sequence variability in antigenic proteins, presents a challenge to developing broadly effective conventional vaccines. Atomic-resolution structure determination is crucial for understanding antigenic protein function. Cryo-electron microscopy, nuclear magnetic resonance spectroscopy coupled with bioinformatics provide three-dimensional structure of the antigenic proteins and provide a wealth of information about the organization of individual atoms and their chemical makeup. The atomic detail information of proteins offers enormous potential to rationally engineer proteins to enhance their properties and act as effective immunogens to induce immunity. The observation that whole protein antigens are not necessarily essential for inducing immunity has led to the emergence "structural vaccinology." Structure-based vaccines are designed on the rationale that protective epitopes should be sufficient to induce immune responses and provide protection against pathogens. In 2013 we published a review on structure-based vaccines (Thomas and Luxon. Expert Rev Vaccines 12 1301-11, 2013). This review states the progress in development of structure-based vaccines since the first review.

摘要

疫苗诱导的免疫反应使其成为对抗传染病最成功的医学干预措施。传统疫苗在诱导对多种致病微生物的免疫方面存在局限性。微生物的遗传多样性,加上抗原蛋白的高度序列变异性,给开发广泛有效的传统疫苗带来了挑战。原子分辨率结构测定对于理解抗原蛋白的功能至关重要。冷冻电子显微镜、与生物信息学相结合的核磁共振波谱学为抗原蛋白提供了三维结构,并提供了大量关于单个原子的组织及其化学组成的信息。蛋白质的原子细节信息为合理设计蛋白质以增强其特性并作为有效的免疫原诱导免疫提供了巨大的潜力。观察到诱导免疫不一定需要完整的蛋白质抗原,这导致了“结构疫苗学”的出现。基于结构的疫苗是基于这样的原理设计的,即保护性表位应该足以诱导免疫反应并提供针对病原体的保护。2013 年,我们发表了一篇关于基于结构的疫苗的综述(Thomas 和 Luxon. Expert Rev Vaccines 12 1301-11, 2013)。这篇综述阐述了自第一份综述以来基于结构的疫苗的发展进展。

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Antibody-guided structure-based vaccines.抗体导向的基于结构的疫苗。
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The Structure of the Membrane Protein of SARS-CoV-2 Resembles the Sugar Transporter SemiSWEET.新型冠状病毒(SARS-CoV-2)膜蛋白的结构类似于糖转运蛋白SemiSWEET。
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