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A Novel Nanobody Targeting Middle East Respiratory Syndrome Coronavirus (MERS-CoV) Receptor-Binding Domain Has Potent Cross-Neutralizing Activity and Protective Efficacy against MERS-CoV.
Zhao, Guangyu; He, Lei; Sun, Shihui; Qiu, Hongjie; Tai, Wanbo; Chen, Jiawei; Li, Jiangfan; Chen, Yuehong; Guo, Yan; Wang, Yufei; Shang, Jian; Ji, Kaiyuan; Fan, Ruiwen; Du, Enqi; Jiang, Shibo; Li, Fang; Du, Lanying; Zhou, Yusen.
Afiliación
  • Zhao G; State Key Laboratory of Pathogen and Biosecurity, Beijing Institute of Microbiology and Epidemiology, Beijing, China.
  • He L; State Key Laboratory of Pathogen and Biosecurity, Beijing Institute of Microbiology and Epidemiology, Beijing, China.
  • Sun S; State Key Laboratory of Pathogen and Biosecurity, Beijing Institute of Microbiology and Epidemiology, Beijing, China.
  • Qiu H; State Key Laboratory of Pathogen and Biosecurity, Beijing Institute of Microbiology and Epidemiology, Beijing, China.
  • Tai W; State Key Laboratory of Pathogen and Biosecurity, Beijing Institute of Microbiology and Epidemiology, Beijing, China.
  • Chen J; Lindsley F. Kimball Research Institute, New York Blood Center, New York, New York, USA.
  • Li J; Lindsley F. Kimball Research Institute, New York Blood Center, New York, New York, USA.
  • Chen Y; State Key Laboratory of Pathogen and Biosecurity, Beijing Institute of Microbiology and Epidemiology, Beijing, China.
  • Guo Y; State Key Laboratory of Pathogen and Biosecurity, Beijing Institute of Microbiology and Epidemiology, Beijing, China.
  • Wang Y; State Key Laboratory of Pathogen and Biosecurity, Beijing Institute of Microbiology and Epidemiology, Beijing, China.
  • Shang J; Lindsley F. Kimball Research Institute, New York Blood Center, New York, New York, USA.
  • Ji K; Department of Veterinary and Biomedical Sciences, College of Veterinary Medicine, University of Minnesota, Saint Paul, Minnesota, USA.
  • Fan R; ShanXi Agricultural University, Shanxi, China.
  • Du E; ShanXi Agricultural University, Shanxi, China.
  • Jiang S; Northwest A&F University, Shaanxi, China.
  • Li F; Lindsley F. Kimball Research Institute, New York Blood Center, New York, New York, USA.
  • Du L; Department of Veterinary and Biomedical Sciences, College of Veterinary Medicine, University of Minnesota, Saint Paul, Minnesota, USA.
  • Zhou Y; Lindsley F. Kimball Research Institute, New York Blood Center, New York, New York, USA ldu@nybc.org yszhou@bmi.ac.cn.
J Virol ; 92(18)2018 09 15.
Article en En | MEDLINE | ID: mdl-29950421
ABSTRACT
The newly emerged Middle East respiratory syndrome coronavirus (MERS-CoV) continues to infect humans and camels, calling for efficient, cost-effective, and broad-spectrum strategies to control its spread. Nanobodies (Nbs) are single-domain antibodies derived from camelids and sharks and are potentially cost-effective antivirals with small size and great expression yield. In this study, we developed a novel neutralizing Nb (NbMS10) and its human-Fc-fused version (NbMS10-Fc), both of which target the MERS-CoV spike protein receptor-binding domain (RBD). We further tested their receptor-binding affinity, recognizing epitopes, cross-neutralizing activity, half-life, and efficacy against MERS-CoV infection. Both Nbs can be expressed in yeasts with high yield, bind to MERS-CoV RBD with high affinity, and block the binding of MERS-CoV RBD to the MERS-CoV receptor. The binding site of the Nbs on the RBD was mapped to be around residue Asp539, which is part of a conserved conformational epitope at the receptor-binding interface. NbMS10 and NbMS10-Fc maintained strong cross-neutralizing activity against divergent MERS-CoV strains isolated from humans and camels. Particularly, NbMS10-Fc had significantly extended half-life in vivo; a single-dose treatment of NbMS10-Fc exhibited high prophylactic and therapeutic efficacy by completely protecting humanized mice from lethal MERS-CoV challenge. Overall, this study proves the feasibility of producing cost-effective, potent, and broad-spectrum Nbs against MERS-CoV and has produced Nbs with great potentials as anti-MERS-CoV therapeutics.IMPORTANCE Therapeutic development is critical for preventing and treating continual MERS-CoV infections in humans and camels. Because of their small size, nanobodies (Nbs) have advantages as antiviral therapeutics (e.g., high expression yield and robustness for storage and transportation) and also potential limitations (e.g., low antigen-binding affinity and fast renal clearance). Here, we have developed novel Nbs that specifically target the receptor-binding domain (RBD) of MERS-CoV spike protein. They bind to a conserved site on MERS-CoV RBD with high affinity, blocking RBD's binding to MERS-CoV receptor. Through engineering a C-terminal human Fc tag, the in vivo half-life of the Nbs is significantly extended. Moreover, the Nbs can potently cross-neutralize the infections of diverse MERS-CoV strains isolated from humans and camels. The Fc-tagged Nb also completely protects humanized mice from lethal MERS-CoV challenge. Taken together, our study has discovered novel Nbs that hold promise as potent, cost-effective, and broad-spectrum anti-MERS-CoV therapeutic agents.
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Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Infecciones por Coronavirus / Anticuerpos Neutralizantes / Anticuerpos de Dominio Único / Glicoproteína de la Espiga del Coronavirus / Coronavirus del Síndrome Respiratorio de Oriente Medio / Anticuerpos Antivirales Límite: Animals / Humans Idioma: En Revista: J Virol Año: 2018 Tipo del documento: Article País de afiliación: China

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Infecciones por Coronavirus / Anticuerpos Neutralizantes / Anticuerpos de Dominio Único / Glicoproteína de la Espiga del Coronavirus / Coronavirus del Síndrome Respiratorio de Oriente Medio / Anticuerpos Antivirales Límite: Animals / Humans Idioma: En Revista: J Virol Año: 2018 Tipo del documento: Article País de afiliación: China