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A human antibody potently neutralizes RSV by targeting the conserved hydrophobic region of prefusion F
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作者 Chunyan Yi Caixia Su +15 位作者 Xiaoyu Sun Xiao Lu chuanya si Caixuan Liu Zhuo Yang Hong Yuan Yuying Huang Jing Wen Yonghui He Yaguang Zhang Liyan Ma Yao Cong Gan Zhao Zhiyang Ling Bin Wang Bing Sun 《Science China(Life Sciences)》 SCIE CAS CSCD 2023年第4期729-742,共14页
Respiratory syncytial virus(RSV) continues to pose serious threats to pediatric populations due to the lack of a vaccine and effective antiviral drugs. RSV fusion(F) glycoprotein mediates viral-host membrane fusion an... Respiratory syncytial virus(RSV) continues to pose serious threats to pediatric populations due to the lack of a vaccine and effective antiviral drugs. RSV fusion(F) glycoprotein mediates viral-host membrane fusion and is a key target for neutralizing antibodies. We generated 23 full-human monoclonal antibodies(hm Abs) against prefusion F protein(pre-F) from a healthy adult with natural RSV infection by single B cell cloning technique. A highly potent RSV-neutralizing hm Ab, named as 25-20, is selected, which targets a new site Φ-specific epitope. Site-directed mutagenesis and structural modelling analysis demonstrated that 25-20 mainly targets a highly conserved hydrophobic region located at the a4 helix and a1 helix of pre-F, indicating a site of vulnerability for drug and vaccine design. It is worth noting that 25-20 uses an unreported inferred germline(i GL) that binds very poorly to pre-F, thus high levels of somatic mutations are needed to gain high binding affinity with pre-F. Our observation helps to understand the evolution of RSV antibody during natural infection. Furthermore, by in silico prediction and experimental verification, we optimized 25-20 with KD values as low as picomolar range. Therefore, the optimized 25-20 represents an excellent candidate for passive protection against RSV infection. 展开更多
关键词 RSV human antibody potent neutralization conserved epitope somatic mutations affinity maturation
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