Antigenic Fingerprinting of H5N1 Avian Influenza Using Convalescent Sera and Monoclonal Antibodies Reveals Potential Vaccine and Diagnostic Targets

被引:150
作者
Khurana, Surender [1 ]
Suguitan, Amorsolo L., Jr. [2 ]
Rivera, Yonaira [1 ]
Simmons, Cameron P. [3 ]
Lanzavecchia, Antonio [4 ]
Sallusto, Federica [4 ]
Manischewitz, Jody [1 ]
King, Lisa R. [1 ]
Subbarao, Kanta [2 ]
Golding, Hana [1 ]
机构
[1] US FDA, Ctr Biol Evaluat & Res, Div Viral Prod, Bethesda, MD USA
[2] NIAID, Infect Dis Lab, NIH, Bethesda, MD 20892 USA
[3] Univ Oxford, Clin Res Unit, Hosp Trop Dis, Ho Chi Minh City, Vietnam
[4] Biomed Res Inst, Bellinzona, Switzerland
关键词
A-VIRUS; DIFFERENTIAL-DIAGNOSIS; HEMAGGLUTININ MOLECULE; HIV-INFECTIONS; SITES; IDENTIFICATION; MICE; FACE;
D O I
10.1371/journal.pmed.1000049
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Background: Transmission of highly pathogenic avian H5N1 viruses from poultry to humans have raised fears of an impending influenza pandemic. Concerted efforts are underway to prepare effective vaccines and therapies including polyclonal or monoclonal antibodies against H5N1. Current efforts are hampered by the paucity of information on protective immune responses against avian influenza. Characterizing the B cell responses in convalescent individuals could help in the design of future vaccines and therapeutics. Methods and Findings: To address this need, we generated whole-genome-fragment phage display libraries (GFPDL) expressing fragments of 15-350 amino acids covering all the proteins of A/Vietnam/1203/2004 (H5N1). These GFPDL were used to analyze neutralizing human monoclonal antibodies and sera of five individuals who had recovered from H5N1 infection. This approach led to the mapping of two broadly neutralizing human monoclonal antibodies with conformation-dependent epitopes. In H5N1 convalescent sera, we have identified several potentially protective H5N1-specific human antibody epitopes in H5 HA[(-10)-223], neuraminidase catalytic site, and M2 ectodomain. In addition, for the first time to our knowledge in humans, we identified strong reactivity against PB1-F2, a putative virulence factor, following H5N1 infection. Importantly, novel epitopes were identified, which were recognized by H5N1-convalescent sera but did not react with sera from control individuals (H5N1 naive, H1N1 or H3N2 seropositive). Conclusion: This is the first study, to our knowledge, describing the complete antibody repertoire following H5N1 infection. Collectively, these data will contribute to rational vaccine design and new H5N1-specific serodiagnostic surveillance tools.
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页数:13
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共 36 条
[1]   STRUCTURE OF INFLUENZA-VIRUS HEMAGGLUTININ COMPLEXED WITH A NEUTRALIZING ANTIBODY [J].
BIZEBARD, T ;
GIGANT, B ;
RIGOLET, P ;
RASMUSSEN, B ;
DIAT, O ;
BOSECKE, P ;
WHARTON, SA ;
SKEHEL, JJ ;
KNOSSOW, M .
NATURE, 1995, 376 (6535) :92-94
[2]   ANTIBODY-RESPONSE TO THE M2-PROTEIN OF INFLUENZA A-VIRUS EXPRESSED IN INSECT CELLS [J].
BLACK, RA ;
ROTA, PA ;
GORODKOVA, N ;
KLENK, HD ;
KENDAL, AP .
JOURNAL OF GENERAL VIROLOGY, 1993, 74 :143-146
[3]   Ab and T cell epitopes of influenza A virus, knowledge and opportunities [J].
Bui, Huynh-Hoa ;
Peters, Bjoern ;
Assarsson, Erika ;
Mbawuike, Innocent ;
Sette, Alessandro .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2007, 104 (01) :246-251
[4]   A single mutation in the PB1-F2 of H5N1 (HK/97) and 1918 influenza A viruses contributes to increased virulence [J].
Conenello, Gina M. ;
Zamarin, Dmitriy ;
Perrone, Lucy A. ;
Tumpey, Terrence ;
Palese, Peter .
PLOS PATHOGENS, 2007, 3 (10) :1414-1421
[5]   Brief report - Oseltamivir resistance during treatment of influenza A (H5N1) infection [J].
de Jong, MD ;
Thanh, TT ;
Khanh, TH ;
Hien, VM ;
Smith, GJD ;
Chau, NV ;
Cam, BV ;
Qui, PT ;
Ha, DQ ;
Guan, Y ;
Peiris, JSM ;
Hien, TT ;
Farrar, J .
NEW ENGLAND JOURNAL OF MEDICINE, 2005, 353 (25) :2667-2672
[6]   Fatal outcome of human influenza A (H5N1) is associated with high viral load and hypercytokinemia [J].
de Jong, Menno D. ;
Simmons, Cameron P. ;
Thanh, Tran Tan ;
Hien, Vo Minh ;
Smith, Gavin J. D. ;
Chau, Tran Nguyen Bich ;
Hoang, Dang Minh ;
Chau, Nguyen Van Vinh ;
Khanh, Truong Huu ;
Dong, Vo Cong ;
Qui, Phan Tu ;
Van Cam, Bach ;
Ha, Do Quang ;
Guan, Yi ;
Peiris, J. S. Malik ;
Chinh, Nguyen Tran ;
Hien, Tran Tinh ;
Farrar, Jeremy .
NATURE MEDICINE, 2006, 12 (10) :1203-1207
[7]   Preclinical study of influenza virus A M2 peptide conjugate vaccines in mice, ferrets, and rhesus monkeys [J].
Fan, JA ;
Liang, XP ;
Horton, MS ;
Perry, HC ;
Citron, MP ;
Heidecker, GJ ;
Fu, TM ;
Joyce, J ;
Przysiecki, CT ;
Keller, PM ;
Garsky, VM ;
Ionescu, R ;
Rippeon, Y ;
Shi, L ;
Chastain, MA ;
Condra, JH ;
Davies, ME ;
Liao, J ;
Emini, EA ;
Shiver, JW .
VACCINE, 2004, 22 (23-24) :2993-3003
[8]   Characterizations of four monoclonal antibodies against M2 protein ectodomain of influenza A virus [J].
Fu, Tong-Ming ;
Freed, Daniel C. ;
Horton, Melanie S. ;
Fan, Jiang ;
Citron, Michael P. ;
Joyce, Joseph G. ;
Garsky, Victor M. ;
Casimiro, Danilo R. ;
Zhao, Qinjian ;
Shiver, John W. ;
Liang, Xiaoping .
VIROLOGY, 2009, 385 (01) :218-226
[9]   Human infection with highly pathogenic H5N1 influenza virus [J].
Gambotto, Andrea ;
Barratt-Boyes, Simon M. ;
de Jong, Menno D. ;
Neumann, Gabriele ;
Kawaoka, Yoshihiro .
LANCET, 2008, 371 (9622) :1464-1475
[10]   Prospects for universal influenza virus vaccine [J].
Gerhard, W ;
Mozdzanowska, K ;
Zharikova, D .
EMERGING INFECTIOUS DISEASES, 2006, 12 (04) :569-574