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Structure basis of neutralization by a novel site II/IV antibody against respiratory syncytial virus fusion protein.


ABSTRACT: Globally, human respiratory syncytial virus (RSV) is a leading cause of lower respiratory tract infections in newborns, young children, and the elderly for which there is no vaccine. The RSV fusion (F) glycoprotein is a major target for vaccine development. Here, we describe a novel monoclonal antibody (designated as R4.C6) that recognizes both pre-fusion and post-fusion RSV F, and binds with nanomole affinity to a unique neutralizing site comprised of antigenic sites II and IV on the globular head. A 3.9 Å-resolution structure of RSV F-R4.C6 Fab complex was obtained by single particle cryo-electron microscopy and 3D reconstruction. The structure unraveled detailed interactions of R4.C6 with antigenic site II on one protomer and site IV on a neighboring protomer of post-fusion RSV F protein. These findings significantly further our understanding of the antigenic complexity of the F protein and provide new insights into RSV vaccine design.

SUBMITTER: Xie Q 

PROVIDER: S-EPMC6366758 | biostudies-literature | 2019

REPOSITORIES: biostudies-literature

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Structure basis of neutralization by a novel site II/IV antibody against respiratory syncytial virus fusion protein.

Xie Qingqing Q   Wang Zhao Z   Ni Fengyun F   Chen Xiaorui X   Ma Jianpeng J   Patel Nita N   Lu Hanxin H   Liu Ye Y   Tian Jing-Hui JH   Flyer David D   Massare Michael J MJ   Ellingsworth Larry L   Glenn Gregory G   Smith Gale G   Wang Qinghua Q  

PloS one 20190207 2


Globally, human respiratory syncytial virus (RSV) is a leading cause of lower respiratory tract infections in newborns, young children, and the elderly for which there is no vaccine. The RSV fusion (F) glycoprotein is a major target for vaccine development. Here, we describe a novel monoclonal antibody (designated as R4.C6) that recognizes both pre-fusion and post-fusion RSV F, and binds with nanomole affinity to a unique neutralizing site comprised of antigenic sites II and IV on the globular h  ...[more]

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