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人呼吸道生长所需的循环副流感病毒的特征

Features of Circulating Parainfluenza Virus Required for Growth in Human Airway.

作者信息

Palermo Laura M, Uppal Manik, Skrabanek Lucy, Zumbo Paul, Germer Soren, Toussaint Nora C, Rima Bert K, Huey Devra, Niewiesk Stefan, Porotto Matteo, Moscona Anne

机构信息

Departments of Pediatrics, Microbiology and Immunology, and Physiology and Cellular Biophysics, Columbia University Medical Center, New York, New York, USA.

Applied Bioinformatics Core, Department of Physiology and Biophysics, Weill Medical College of Cornell University, New York, New York, USA.

出版信息

mBio. 2016 Mar 15;7(2):e00235. doi: 10.1128/mBio.00235-16.

Abstract

UNLABELLED

Respiratory paramyxoviruses, including the highly prevalent human parainfluenza viruses, cause the majority of childhood croup, bronchiolitis, and pneumonia, yet there are currently no vaccines or effective treatments. Paramyxovirus research has relied on the study of laboratory-adapted strains of virus in immortalized cultured cell lines. We show that findings made in such systems about the receptor interaction and viral fusion requirements for entry and fitness-mediated by the receptor binding protein and the fusion protein-can be drastically different from the requirements for infection in vivo. Here we carried out whole-genome sequencing and genomic analysis of circulating human parainfluenza virus field strains to define functional and structural properties of proteins of circulating strains and to identify the genetic basis for properties that confer fitness in the field. The analysis of clinical strains suggests that the receptor binding-fusion molecule pairs of circulating viruses maintain a balance of properties that result in an inverse correlation between fusion in cultured cells and growth in vivo. Future analysis of entry mechanisms and inhibitory strategies for paramyxoviruses will benefit from considering the properties of viruses that are fit to infect humans, since a focus on viruses that have adapted to laboratory work provides a distinctly different picture of the requirements for the entry step of infection.

IMPORTANCE

Mechanistic information about viral infection-information that impacts antiviral and vaccine development-is generally derived from viral strains grown under laboratory conditions in immortalized cells. This study uses whole-genome sequencing of clinical strains of human parainfluenza virus 3-a globally important respiratory paramyxovirus-in cell systems that mimic the natural human host and in animal models. By examining the differences between clinical isolates and laboratory-adapted strains, the sequence differences are correlated to mechanistic differences in viral entry. For this ubiquitous and pathogenic respiratory virus to infect the human lung, modulation of the processes of receptor engagement and fusion activation occur in a manner quite different from that carried out by the entry glycoprotein-expressing pair of laboratory strains. These marked contrasts in the viral properties necessary for infection in cultured immortalized cells and in natural host tissues and animals will influence future basic and clinical studies.

摘要

未标注

包括高度流行的人副流感病毒在内的呼吸道副粘病毒,是导致大多数儿童喉炎、细支气管炎和肺炎的病因,但目前尚无疫苗或有效治疗方法。副粘病毒研究一直依赖于在永生化培养细胞系中对实验室适应病毒株的研究。我们发现,在此类系统中关于受体相互作用以及由受体结合蛋白和融合蛋白介导的进入和适应性所需的病毒融合要求的研究结果,可能与体内感染的要求有很大不同。在此,我们对循环中的人副流感病毒野毒株进行了全基因组测序和基因组分析,以确定循环毒株蛋白质的功能和结构特性,并确定赋予野外适应性的特性的遗传基础。对临床毒株的分析表明,循环病毒的受体结合 - 融合分子对保持了特性的平衡,这导致培养细胞中的融合与体内生长之间呈负相关。由于专注于适应实验室工作的病毒会呈现出截然不同的感染进入步骤要求,因此未来对副粘病毒进入机制和抑制策略的分析将受益于考虑适合感染人类的病毒特性。

重要性

关于病毒感染的机制信息(影响抗病毒和疫苗开发的信息)通常来自在永生化细胞中实验室条件下培养的病毒株。本研究在模拟天然人类宿主的细胞系统和动物模型中,对全球重要的呼吸道副粘病毒——人副流感病毒3型的临床毒株进行了全基因组测序。通过检查临床分离株与实验室适应株之间的差异,序列差异与病毒进入的机制差异相关。对于这种普遍存在且具有致病性的呼吸道病毒感染人类肺部而言,受体结合和融合激活过程的调节方式与表达进入糖蛋白的实验室毒株截然不同。在培养的永生化细胞以及天然宿主组织和动物中感染所需的病毒特性方面的这些显著差异,将影响未来的基础和临床研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0637/4807361/b26181f7f152/mbo0021627320001.jpg

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