A monoclonal antibody targeting the Nipah virus fusion glycoprotein apex imparts protection from disease

被引:1
作者
Avanzato, Victoria A. [1 ,2 ]
Bushmaker, Trenton [1 ]
Oguntuyo, Kasopefoluwa Y. [3 ]
Yinda, Claude Kwe [1 ]
Duyvesteyn, Helen M. E. [2 ]
Stass, Robert [2 ]
Meade-White, Kimberly [1 ]
Rosenke, Rebecca [4 ]
Thomas, Tina [4 ]
van Doremalen, Neeltje [1 ]
Saturday, Greg [4 ]
Doores, Katie J. [5 ]
Lee, Benhur [3 ]
Bowden, Thomas A. [2 ]
Munster, Vincent J. [1 ]
机构
[1] Natl Inst Allergy & Infect Dis, Lab Virol, NIH, Hamilton, MT 59840 USA
[2] Univ Oxford, Div Struct Biol, Wellcome Ctr Human Genet, Oxford, England
[3] Icahn Sch Med Mt Sinai, Dept Microbiol, New York, NY USA
[4] Natl Inst Allergy & Infect Dis, Rocky Mt Vet Branch, NIH, Hamilton, MT USA
[5] Kings Coll London, Guys Hosp, Dept Infect Dis, London, England
基金
英国惠康基金; 英国医学研究理事会;
关键词
henipavirus; Nipah virus; monoclonal antibodies; neutralizing antibodies; fusion glycoprotein; STRUCTURE VALIDATION; STRUCTURAL BASIS; MEMBRANE-FUSION; HENDRA; PROTEIN; INFECTION; NEUTRALIZATION; PROPHYLAXIS; ATTACHMENT; MOLPROBITY;
D O I
10.1128/jvi.00638-24
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Nipah virus (NiV) is a highly pathogenic paramyxovirus capable of causing severe respiratory and neurologic disease in humans. Currently, there are no licensed vaccines or therapeutics against NiV, underscoring the urgent need for the development of countermeasures. The NiV surface-displayed glycoproteins, NiV-G and NiV-F, mediate host cell attachment and fusion, respectively, and are heavily targeted by host antibodies. Here, we describe a vaccination-derived neutralizing monoclonal antibody, mAb92, that targets NiV-F. Structural characterization of the Fab region bound to NiV-F (NiV-F-Fab92) by cryo-electron microscopy analysis reveals an epitope in the DIII domain at the membrane distal apex of NiV-F, an established site of vulnerability on the NiV surface. Further, prophylactic treatment of hamsters with mAb92 offered complete protection from NiV disease, demonstrating beneficial activity of mAb92 in vivo. This work provides support for targeting NiV-F in the development of vaccines and therapeutics against NiV.IMPORTANCENipah virus (NiV) is a highly lethal henipavirus (HNV) that causes severe respiratory and neurologic disease in humans. Currently, there are no licensed vaccines or therapeutics against NiV, highlighting a need to develop countermeasures. The NiV surface displays the receptor binding protein (NiV-G, or RBP) and the fusion protein (NiV-F), which allow the virus to attach and enter cells. These proteins can be targeted by vaccines and antibodies to prevent disease. This work describes a neutralizing antibody (mAb92) that targets NiV-F. Structural characterization by cryo-electron microscopy analysis reveals where the antibody binds to NiV-F to neutralize the virus. This study also shows that prophylactic treatment of hamsters with mAb92 completely protected against developing NiV disease. This work shows how targeting NiV-F can be useful to preventing NiV disease, supporting future studies in the development of vaccines and therapeutics. Nipah virus (NiV) is a highly lethal henipavirus (HNV) that causes severe respiratory and neurologic disease in humans. Currently, there are no licensed vaccines or therapeutics against NiV, highlighting a need to develop countermeasures. The NiV surface displays the receptor binding protein (NiV-G, or RBP) and the fusion protein (NiV-F), which allow the virus to attach and enter cells. These proteins can be targeted by vaccines and antibodies to prevent disease. This work describes a neutralizing antibody (mAb92) that targets NiV-F. Structural characterization by cryo-electron microscopy analysis reveals where the antibody binds to NiV-F to neutralize the virus. This study also shows that prophylactic treatment of hamsters with mAb92 completely protected against developing NiV disease. This work shows how targeting NiV-F can be useful to preventing NiV disease, supporting future studies in the development of vaccines and therapeutics.
引用
收藏
页数:21
相关论文
共 73 条
  • [21] Crystal structure of sialylated IgG Fc: Implications for the mechanism of intravenous immunoglobulin therapy
    Crispin, Max
    Yu, Xiaojie
    Bowden, Thomas A.
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2013, 110 (38) : E3544 - E3546
  • [22] Broadly neutralizing antibody cocktails targeting Nipah virus and Hendra virus fusion glycoproteins
    Dang, Ha V.
    Cross, Robert W.
    Borisevich, Viktoriya
    Bornholdt, Zachary A.
    West, Brandyn R.
    Chan, Yee-Peng
    Mire, Chad E.
    Da Silva, Sofia Cheliout
    Dimitrov, Antony S.
    Yan, Lianying
    Amaya, Moushimi
    Navaratnarajah, Chanakha K.
    Zeitlin, Larry
    Geisbert, Thomas W.
    Broder, Christopher C.
    Veesler, David
    [J]. NATURE STRUCTURAL & MOLECULAR BIOLOGY, 2021, 28 (05) : 426 - +
  • [23] An antibody against the F glycoprotein inhibits Nipah and Hendra virus infections
    Dang, Ha V.
    Chan, Yee-Peng
    Park, Young-Jun
    Snijder, Joost
    Da Silva, Sofia Cheliout
    Vu, Bang
    Yan, Lianying
    Feng, Yan-Ru
    Rockx, Barry
    Geisbert, Thomas W.
    Mire, Chad E.
    Broder, Christopher C.
    Veesler, David
    [J]. NATURE STRUCTURAL & MOLECULAR BIOLOGY, 2019, 26 (10) : 980 - +
  • [24] MolProbity: all-atom contacts and structure validation for proteins and nucleic acids
    Davis, Ian W.
    Leaver-Fay, Andrew
    Chen, Vincent B.
    Block, Jeremy N.
    Kapral, Gary J.
    Wang, Xueyi
    Murray, Laura W.
    Arendall, W. Bryan, III
    Snoeyink, Jack
    Richardson, Jane S.
    Richardson, David C.
    [J]. NUCLEIC ACIDS RESEARCH, 2007, 35 : W375 - W383
  • [25] Single-dose live-attenuated Nipah virus vaccines confer complete protection by eliciting antibodies directed against surface glycoproteins
    DeBuysscher, Blair L.
    Scott, Dana
    Marzi, Andrea
    Prescott, Joseph
    Feldmann, Heinz
    [J]. VACCINE, 2014, 32 (22) : 2637 - 2644
  • [26] Comparison of the Pathogenicity of Nipah Virus Isolates from Bangladesh and Malaysia in the Syrian Hamster
    DeBuysscher, Blair L.
    de Wit, Emmie
    Munster, Vincent J.
    Scott, Dana
    Feldmann, Heinz
    Prescott, Joseph
    [J]. PLOS NEGLECTED TROPICAL DISEASES, 2013, 7 (01):
  • [27] Role of endocytosis and cathepsin-mediated activation in Nipah virus entry
    Diederich, Sandra
    Thiel, Lena
    Maisner, Andrea
    [J]. VIROLOGY, 2008, 375 (02) : 391 - 400
  • [28] Potent Henipavirus Neutralization by Antibodies Recognizing Diverse Sites on Hendra and Nipah Virus Receptor Binding Protein
    Dong, Jinhui
    Cross, Robert W.
    Doyle, Michael P.
    Kose, Nurgun
    Mousa, Jarrod J.
    Annand, Edward J.
    Borisevich, Viktoriya
    Agans, Krystle N.
    Sutton, Rachel
    Nargi, Rachel
    Majedi, Mahsa
    Fenton, Karla A.
    Reichard, Walter
    Bombardi, Robin G.
    Geisbert, Thomas W.
    Crowe, James E., Jr.
    [J]. CELL, 2020, 183 (06) : 1536 - +
  • [29] Cooperativity mediated by rationally selected combinations of human monoclonal antibodies targeting the henipavirus receptor binding protein
    Doyle, Michael P.
    Kose, Nurgun
    Borisevich, Viktoriya
    Binshtein, Elad
    Amaya, Moushimi
    Nagel, Marcus
    Annand, Edward J.
    Armstrong, Erica
    Bombardi, Robin
    Dong, Jinhui
    Schey, Kevin L.
    Broder, Christopher C.
    Zeitlin, Larry
    Kuang, Erin A.
    Bornholdt, Zachary A.
    West, Brandyn R.
    Geisbert, Thomas W.
    Cross, Robert W.
    Crowe, James E., Jr.
    [J]. CELL REPORTS, 2021, 36 (09):
  • [30] Bats host major mammalian paramyxoviruses
    Drexler, Jan Felix
    Corman, Victor Max
    Mueller, Marcel Alexander
    Maganga, Gael Darren
    Vallo, Peter
    Binger, Tabea
    Gloza-Rausch, Florian
    Rasche, Andrea
    Yordanov, Stoian
    Seebens, Antje
    Oppong, Samuel
    Sarkodie, Yaw Adu
    Pongombo, Celestin
    Lukashev, Alexander N.
    Schmidt-Chanasit, Jonas
    Stoecker, Andreas
    Borges Carneiro, Aroldo Jose
    Erbar, Stephanie
    Maisner, Andrea
    Fronhoffs, Florian
    Buettner, Reinhard
    Kalko, Elisabeth K. V.
    Kruppa, Thomas
    Franke, Carlos Roberto
    Kallies, Rene
    Yandoko, Emmanuel R. N.
    Herrler, Georg
    Reusken, Chantal
    Hassanin, Alexandre
    Krueger, Detlev H.
    Matthee, Sonja
    Ulrich, Rainer G.
    Leroy, Eric M.
    Drosten, Christian
    [J]. NATURE COMMUNICATIONS, 2012, 3