Isolation of an escape-resistant SARS-CoV-2 neutralizing nanobody from a novel synthetic nanobody library

被引:7
|
作者
Dormeshkin, Dmitri [1 ]
Shapira, Michail [1 ]
Dubovik, Simon [2 ]
Kavaleuski, Anton [3 ]
Katsin, Mikalai [4 ,5 ]
Migas, Alexandr [4 ,5 ]
Meleshko, Alexander [4 ,5 ]
Semyonov, Sergei [6 ]
机构
[1] Natl Acad Sci Belarus, Inst Bioorgan Chem, Lab Mol Diagnost & Biotechnol, Minsk, BELARUS
[2] Belarusian State Univ, Dept Biol, Minsk, BELARUS
[3] Inst Sci & Technol Austria ISTA, Klosterneuburg, Austria
[4] UAB, Imunovakcina, Vilnius, Lithuania
[5] Immunofusion LLC, Minsk, BELARUS
[6] Republican Res & Pract Ctr Epidemiol & Microbiol, Lab Biosafety Pathogens Collect, Minsk, BELARUS
来源
FRONTIERS IN IMMUNOLOGY | 2022年 / 13卷
关键词
COVID-19; SARS-CoV-2; synthetic library; RBD; neutralization; nanobody; VHH; DOMAIN;
D O I
10.3389/fimmu.2022.965446
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
The COVID-19 pandemic not only resulted in a global crisis, but also accelerated vaccine development and antibody discovery. Herein we report a synthetic humanized VHH library development pipeline for nanomolar-range affinity VHH binders to SARS-CoV-2 variants of concern (VoC) receptor binding domains (RBD) isolation. Trinucleotide-based randomization of CDRs by Kunkel mutagenesis with the subsequent rolling-cycle amplification resulted in more than 10(11) diverse phage display library in a manageable for a single person number of electroporation reactions. We identified a number of nanomolar-range affinity VHH binders to SARS-CoV-2 variants of concern (VoC) receptor binding domains (RBD) by screening a novel synthetic humanized antibody library. In order to explore the most robust and fast method for affinity improvement, we performed affinity maturation by CDR1 and CDR2 shuffling and avidity engineering by multivalent trimeric VHH fusion protein construction. As a result, H7-Fc and G12x3-Fc binders were developed with the affinities in nM and pM range respectively. Importantly, these affinities are weakly influenced by most of SARS-CoV-2 VoC mutations and they retain moderate binding to BA.4\5. The plaque reduction neutralization test (PRNT) resulted in IC50 = 100 ng\ml and 9.6 ng\ml for H7-Fc and G12x3-Fc antibodies, respectively, for the emerging Omicron BA.1 variant. Therefore, these VHH could expand the present landscape of SARS-CoV-2 neutralization binders with the therapeutic potential for present and future SARS-CoV-2 variants.
引用
收藏
页数:14
相关论文
共 50 条
  • [1] Isolation, characterization, and structure-based engineering of a neutralizing nanobody against SARS-CoV-2
    Li, Tingting
    Zhou, Bingjie
    Li, Yaning
    Huang, Suqiong
    Luo, Zhipu
    Zhou, Yuanze
    Lai, Yanling
    Gautam, Anupriya
    Bourgeau, Salome
    Wang, Shurui
    Bao, Juan
    Tan, Jingquan
    Lavillette, Dimitri
    Li, Dianfan
    INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2022, 209 : 1379 - 1388
  • [2] A broad neutralizing nanobody against SARS-CoV-2 engineered from an approved drug
    Liu, Qianyun
    Lu, Yuchi
    Cai, Chenguang
    Huang, Yanyan
    Zhou, Li
    Guan, Yanbin
    Fu, Shiying
    Lin, Youyou
    Yan, Huan
    Zhang, Zhen
    Li, Xiang
    Yang, Xiuna
    Yang, Haitao
    Guo, Hangtian
    Lan, Ke
    Chen, Yu
    Hou, Shin-Chen
    Xiong, Yi
    CELL DEATH & DISEASE, 2024, 15 (06):
  • [3] Searching for escape-resistant anti-SARS-CoV-2 neutralizing antibodies
    Mahla, Ranjeet Singh
    Dustin, Lynn B.
    JOURNAL OF CLINICAL INVESTIGATION, 2022, 132 (04):
  • [4] A potent neutralizing nanobody against SARS-CoV-2 with inhaled delivery potential
    Gai, Junwei
    Ma, Linlin
    Li, Guanghui
    Zhu, Min
    Qiao, Peng
    Li, Xiaofei
    Zhang, Haiwei
    Zhang, Yanmin
    Chen, Yadong
    Ji, Weiwei
    Zhang, Hao
    Cao, Huanhuan
    Li, Xionghui
    Gong, Rui
    Wan, Yakun
    MEDCOMM, 2021, 2 (01): : 101 - 113
  • [5] N4-hydroxycytidine, the active compound of Molnupiravir, promotes SARS-CoV-2 mutagenesis and escape from a neutralizing nanobody
    Zibat, Arne
    Zhang, Xiaoxiao
    Dickmanns, Antje
    Stegmann, Kim M.
    Dobbelstein, Adrian W.
    Alachram, Halima
    Soliwoda, Rebecca
    Salinas, Gabriela
    Gross, Uwe
    Goerlich, Dirk
    Kschischo, Maik
    Wollnik, Bernd
    Dobbelstein, Matthias
    ISCIENCE, 2023, 26 (10)
  • [6] A synthetic nanobody targeting RBD protects hamsters from SARS-CoV-2 infection
    Li, Tingting
    Cai, Hongmin
    Yao, Hebang
    Zhou, Bingjie
    Zhang, Ning
    van Vlissingen, Martje Fentener
    Kuiken, Thijs
    Han, Wenyu
    GeurtsvanKessel, Corine H.
    Gong, Yuhuan
    Zhao, Yapei
    Shen, Quan
    Qin, Wenming
    Tian, Xiao-Xu
    Peng, Chao
    Lai, Yanling
    Wang, Yanxing
    Hutter, Cedric A. J.
    Kuo, Shu-Ming
    Bao, Juan
    Liu, Caixuan
    Wang, Yifan
    Richard, Audrey S.
    Raoul, Herve
    Lan, Jiaming
    Seeger, Markus A.
    Cong, Yao
    Rockx, Barry
    Wong, Gary
    Bi, Yuhai
    Lavillette, Dimitri
    Li, Dianfan
    NATURE COMMUNICATIONS, 2021, 12 (01)
  • [7] A synthetic nanobody targeting RBD protects hamsters from SARS-CoV-2 infection
    Tingting Li
    Hongmin Cai
    Hebang Yao
    Bingjie Zhou
    Ning Zhang
    Martje Fentener van Vlissingen
    Thijs Kuiken
    Wenyu Han
    Corine H. GeurtsvanKessel
    Yuhuan Gong
    Yapei Zhao
    Quan Shen
    Wenming Qin
    Xiao-Xu Tian
    Chao Peng
    Yanling Lai
    Yanxing Wang
    Cedric A. J. Hutter
    Shu-Ming Kuo
    Juan Bao
    Caixuan Liu
    Yifan Wang
    Audrey S. Richard
    Hervé Raoul
    Jiaming Lan
    Markus A. Seeger
    Yao Cong
    Barry Rockx
    Gary Wong
    Yuhai Bi
    Dimitri Lavillette
    Dianfan Li
    Nature Communications, 12
  • [8] A Multivalent and Thermostable Nanobody Neutralizing SARS-CoV-2 Omicron (B.1.1.529)
    Lu, Yuying
    Li, Qianlin
    Fan, Huahao
    Liao, Conghui
    Zhang, Jingsong
    Hu, Huan
    Yi, Huaimin
    Peng, Yuanli
    Lu, Jiahai
    Chen, Zeliang
    INTERNATIONAL JOURNAL OF NANOMEDICINE, 2023, 18 : 353 - 367
  • [9] Structural Characterization of a Neutralizing Nanobody With Broad Activity Against SARS-CoV-2 Variants
    Li, Tingting
    Zhou, Bingjie
    Luo, Zhipu
    Lai, Yanling
    Huang, Suqiong
    Zhou, Yuanze
    Li, Yaning
    Gautam, Anupriya
    Bourgeau, Salome
    Wang, Shurui
    Bao, Juan
    Tan, Jingquan
    Lavillette, Dimitri
    Li, Dianfan
    FRONTIERS IN MICROBIOLOGY, 2022, 13
  • [10] An ultrapotent synthetic nanobody neutralizes SARS-CoV-2 by stabilizing inactive Spike
    Schoof, Michael
    Faust, Bryan
    Saunders, Reuben A.
    Sangwan, Smriti
    Rezelj, Veronica
    Hoppe, Nick
    Boone, Morgane
    Billesbolle, Christian B.
    Puchades, Cristina
    Azumaya, Caleigh M.
    Kratochvil, Huong T.
    Zimanyi, Marcell
    Deshpande, Ishan
    Liang, Jiahao
    Dickinson, Sasha
    Nguyen, Henry C.
    Chio, Cynthia M.
    Merz, Gregory E.
    Thompson, Michael C.
    Diwanji, Devan
    Schaefer, Kaitlin
    Anand, Aditya A.
    Dobzinski, Niv
    Zha, Beth Shoshana
    Simoneau, Camille R.
    Leon, Kristoffer
    White, Kris M.
    Chio, Un Seng
    Gupta, Meghna
    Jin, Mingliang
    Li, Fei
    Liu, Yanxin
    Zhang, Kaihua
    Bulkley, David
    Sun, Ming
    Smith, Amber M.
    Rizo, Alexandrea N.
    Moss, Frank
    Brilot, Axel F.
    Pourmal, Sergei
    Trenker, Raphael
    Pospiech, Thomas
    Gupta, Sayan
    Barsi-Rhyne, Benjamin
    Belyy, Vladislav
    Barile-Hill, Andrew W.
    Nock, Silke
    Liu, Yuwei
    Krogan, Nevan J.
    Ralston, Corie Y.
    SCIENCE, 2020, 370 (6523) : 1473 - 1479