Genetic and structural basis for SARS-CoV-2 variant neutralization by a two-antibody cocktail.
Genetic and structural basis for SARS-CoV-2 variant neutralization by a two-antibody cocktail.
复制标题
两种抗体鸡尾酒中和中和的遗传和结构基础。
DOI:
10.1038/s41564-021-00972-2
复制
发表时间:
2021-10
影响因子:
28.3
通讯作者:
Crowe JE Jr
中科院分区:
文献类型:
--
作者:
Dong J;Zost SJ;Greaney AJ;Starr TN;Dingens AS;Chen EC;Chen RE;Case JB;Sutton RE;Gilchuk P;Rodriguez J;Armstrong E;Gainza C;Nargi RS;Binshtein E;Xie X;Zhang X;Shi PY;Logue J;Weston S;McGrath ME;Frieman MB;Brady T;Tuffy KM;Bright H;Loo YM;McTamney PM;Esser MT;Carnahan RH;Diamond MS;Bloom JD;Crowe JE Jr
Understanding the molecular basis for immune recognition of SARS-CoV-2 spike (S) glycoprotein antigenic sites will inform development of improved therapeutics. We determined the structures of two human monoclonal antibodies AZD8895 and AZD1061, which form the basis of the investigational antibody cocktail AZD7442, in complex with the receptor binding domain (RBD) of SARS-CoV-2, in order to define the genetic and structural basis of neutralization. AZD8895 forms an “aromatic cage” at the heavy/light chain interface using germline-encoded residues in complementarity determining regions (CDRs) 2 and 3 of the heavy chain and CDRs 1 and 3 of the light chain. These structural features explain why highly similar antibodies (public clonotypes) have been isolated from multiple individuals. AZD1061 has an unusually long LCDR1, and HCDR3 make interactions with the opposite face of the RBD from that of AZD8895. Using deep mutational scanning and neutralization escape selection experiments, we comprehensively mapped the crucial binding residues of both antibodies and identified positions of concern with regards to virus escape from antibody-mediated neutralization. Both AZD8895 and AZD1061 have strong neutralizing activity against SARS-CoV-2 and variants of concern with antigenic substitutions in the RBD. We conclude that germline-encoded antibody features enable recognition of the SARS-CoV-2 spike RBD and demonstrate the utility of the cocktail AZD7442 in neutralizing emerging variant viruses.
登录
查看更多内容
影响因子:
64.5
作者:
Dejnirattisai W;Zhou D;Ginn HM;Duyvesteyn HME;Supasa P;Case JB;Zhao Y;Walter TS;Mentzer AJ;Liu C;Wang B;Paesen GC;Slon-Campos J;López-Camacho C;Kafai NM;Bailey AL;Chen RE;Ying B;Thompson C;Bolton J;Fyfe A;Gupta S;Tan TK;Gilbert-Jaramillo J;James W;Knight M;Carroll MW;Skelly D;Dold C;Peng Y;Levin R;Dong T;Pollard AJ;Knight JC;Klenerman P;Temperton N;Hall DR;Williams MA;Paterson NG;Bertram FKR;Siebert CA;Clare DK;Howe A;Radecke J;Song Y;Townsend AR;Huang KA;Fry EE;Mongkolsapaya J;Diamond MS;Ren J;Stuart DI;Screaton GR
通讯作者:
Screaton GR
影响因子:
56.9
作者:
Hsieh, Ching-Lin;Goldsmith, Jory A.;McLellan, Jason S.
通讯作者:
McLellan, Jason S.
DOI:
10.1107/s0907444904019158
发表时间:
2004-12-01
影响因子:
2.2
作者:
Emsley, P;Cowtan, K
通讯作者:
Cowtan, K
影响因子:
8
作者:
Bailey, Justin R.;Flyak, Andrew I.;Crowe, James E., Jr.
通讯作者:
Crowe, James E., Jr.
影响因子:
30.3
作者:
Case, James Brett;Rothlauf, Paul W.;Whelan, Sean P. J.
通讯作者:
Whelan, Sean P. J.