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呼吸道合胞病毒G蛋白的CX3C基序突变减弱了对棉鼠和原代人呼吸道上皮细胞的感染。

Mutation of Respiratory Syncytial Virus G Protein's CX3C Motif Attenuates Infection in Cotton Rats and Primary Human Airway Epithelial Cells.

作者信息

Ha Binh, Chirkova Tatiana, Boukhvalova Marina S, Sun He Ying, Walsh Edward E, Anderson Christopher S, Mariani Thomas J, Anderson Larry J

机构信息

Pediatric Infectious Diseases, Emory University and Children's Healthcare of Atlanta, Atlanta, GA 30322, USA.

Sigmovir Biosystems, Inc. Rockville, MD 20850, USA.

出版信息

Vaccines (Basel). 2019 Jul 19;7(3):69. doi: 10.3390/vaccines7030069.

Abstract

Despite being a high priority for vaccine development, no vaccine is yet available for respiratory syncytial virus (RSV). A live virus vaccine is the primary type of vaccine being developed for young children. In this report, we describe our studies of infected cotton rats and primary human airway epithelial cells (pHAECs) using an RSV r19F with a mutation in the CX3C chemokine motif in the RSV G protein (CX4C). Through this CX3C motif, RSV binds to the corresponding chemokine receptor, CX3CR1, and this binding contributes to RSV infection of pHAECs and virus induced host responses that contribute to disease. In both the cotton rat and pHAECs, the CX4C mutation decreased virus replication and disease and/or host responses to infection. Thus, this mutation, or other mutations that block binding to CX3CR1, has the potential to improve a live attenuated RSV vaccine by attenuating both infection and disease pathogenesis.

摘要

尽管呼吸道合胞病毒(RSV)疫苗的研发是重中之重,但目前尚无可用疫苗。减毒活疫苗是针对幼儿研发的主要疫苗类型。在本报告中,我们描述了利用RSV G蛋白(CX4C)中CX3C趋化因子基序发生突变的RSV r19F对感染的棉鼠和原代人气道上皮细胞(pHAECs)进行的研究。通过该CX3C基序,RSV与相应的趋化因子受体CX3CR1结合,这种结合有助于RSV感染pHAECs并引发病毒诱导的宿主反应,进而导致疾病。在棉鼠和pHAECs中,CX4C突变均降低了病毒复制以及疾病和/或宿主对感染的反应。因此,这种突变或其他阻断与CX3CR1结合的突变,有可能通过减弱感染和疾病发病机制来改进减毒活RSV疫苗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/196b/6789749/b95370f9e8bb/vaccines-07-00069-g001.jpg

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