Prefusion stabilization of the Hendra and Langya virus F proteins

被引:5
作者
Byrne, Patrick O. [1 ,5 ]
Blade, Elizabeth G. [1 ]
Fisher, Brian E. [2 ]
Ambrozak, David R. [3 ]
Ramamohan, Ajit R. [1 ]
Graham, Barney S. [4 ]
Loomis, Rebecca J. [2 ,6 ]
McLellan, Jason S. [1 ]
机构
[1] Univ Texas Austin, Dept Mol Biosci, Austin, TX 78712 USA
[2] NIAID, Viral Pathogenesis Lab, Vaccine Res Ctr, NIH, Bethesda, MD 20892 USA
[3] NIAID, NIH, Vaccine Res Ctr, Immunol Lab, Bethesda, MD USA
[4] Morehouse Sch Med, Atlanta, GA USA
[5] GSK Vaccines Inst Global Hlth, Siena, Tuscany, Italy
[6] GSK Vaccines Inst Global Hlth, Siena, Italy
关键词
Nipah; Hendra; Langya; prefusion; structure-based vaccine design; electron microscopy; paramyxovirus; STRUCTURE-BASED DESIGN; NIPAH VIRUS; HENIPAVIRUS INFECTION; CLINICAL-FEATURES; MEMBRANE-FUSION; PIG-FARMERS; GLYCOPROTEIN; TRANSMISSION; ENCEPHALITIS; OUTBREAK;
D O I
10.1128/jvi.01372-23
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Nipah virus (NiV) and Hendra virus (HeV) are pathogenic paramyxoviruses that cause mild-to-severe disease in humans. As members of the Henipavirus genus, NiV and HeV use an attachment (G) glycoprotein and a class I fusion (F) glycoprotein to invade host cells. The F protein rearranges from a metastable prefusion form to an extended postfusion form to facilitate host cell entry. Prefusion NiV F elicits higher neutralizing antibody titers than postfusion NiV F, indicating that stabilization of prefusion F may aid vaccine development. A combination of amino acid substitutions (L104C/I114C, L172F, and S191P) is known to stabilize NiV F in its prefusion conformation, although the extent to which substitutions transfer to other henipavirus F proteins is not known. Here, we perform biophysical and structural studies to investigate the mechanism of prefusion stabilization in F proteins from three henipaviruses: NiV, HeV, and Langya virus (LayV). Three known stabilizing substitutions from NiV F transfer to HeV F and exert similar structural and functional effects. One engineered disulfide bond, located near the fusion peptide, is sufficient to stabilize the prefusion conformations of both HeV F and LayV F. Although LayV F shares low overall sequence identity with NiV F and HeV F, the region around the fusion peptide exhibits high sequence conservation across all henipaviruses. Our findings indicate that substitutions targeting this site of conformational change might be applicable to prefusion stabilization of other henipavirus F proteins and support the use of NiV as a prototypical pathogen for henipavirus vaccine antigen design.IMPORTANCEPathogenic henipaviruses such as Nipah virus (NiV) and Hendra virus (HeV) cause respiratory symptoms, with severe cases resulting in encephalitis, seizures, and coma. The work described here shows that the NiV and HeV fusion (F) proteins share common structural features with the F protein from an emerging henipavirus, Langya virus (LayV). Sequence alignment alone was sufficient to predict which known prefusion-stabilizing amino acid substitutions from NiV F would stabilize the prefusion conformations of HeV F and LayV F. This work also reveals an unexpected oligomeric interface shared by prefusion HeV F and NiV F. Together, these advances lay a foundation for future antigen design targeting henipavirus F proteins. In this way, Nipah virus can serve as a prototypical pathogen for the development of protective vaccines and monoclonal antibodies to prepare for potential henipavirus outbreaks. Pathogenic henipaviruses such as Nipah virus (NiV) and Hendra virus (HeV) cause respiratory symptoms, with severe cases resulting in encephalitis, seizures, and coma. The work described here shows that the NiV and HeV fusion (F) proteins share common structural features with the F protein from an emerging henipavirus, Langya virus (LayV). Sequence alignment alone was sufficient to predict which known prefusion-stabilizing amino acid substitutions from NiV F would stabilize the prefusion conformations of HeV F and LayV F. This work also reveals an unexpected oligomeric interface shared by prefusion HeV F and NiV F. Together, these advances lay a foundation for future antigen design targeting henipavirus F proteins. In this way, Nipah virus can serve as a prototypical pathogen for the development of protective vaccines and monoclonal antibodies to prepare for potential henipavirus outbreaks.
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  • [1] Isolation and molecular identification of Nipah virus from pigs
    AbuBakar, S
    Chang, LY
    Ali, ARM
    Sharifah, SH
    Yusoff, K
    Zamrod, Z
    [J]. EMERGING INFECTIOUS DISEASES, 2004, 10 (12) : 2228 - 2230
  • [2] Waterworks-specific composition of drinking water disinfection by-products
    Andersson, Anna
    Harir, Mourad
    Gonsior, Michael
    Hertkorn, Norbert
    Schmitt-Kopplin, Philippe
    Kylin, Henrik
    Karlsson, Susanne
    Ashiq, Muhammad Jamshaid
    Lavonen, Elin
    Nilsson, Kerstin
    Pettersson, AEmma
    Stavklint, Helena
    Bastviken, David
    [J]. ENVIRONMENTAL SCIENCE-WATER RESEARCH & TECHNOLOGY, 2019, 5 (05) : 861 - 872
  • [3] Nipah Virus Infection
    Ang, Brenda S. P.
    Lim, Tchoyoson C. C.
    Wang, Linfa
    [J]. JOURNAL OF CLINICAL MICROBIOLOGY, 2018, 56 (06)
  • [4] Genomic Characterization of Nipah Virus, West Bengal, India
    Arankalle, Vidya A.
    Bandyopadhyay, Bhaswati T.
    Ramdasi, Ashwini Y.
    Jadi, Ramesh
    Patil, Dilip R.
    Rahman, Mehebubar
    Majumdar, Monalisa
    Banerjee, Parthasarthi S.
    Hati, Amiyakumar K.
    Goswami, Ramaprasad P.
    Neogi, Dhruba Kumar
    Mishra, Akhilesh C.
    [J]. EMERGING INFECTIOUS DISEASES, 2011, 17 (05) : 907 - 909
  • [5] Outbreak Investigation of Nipah Virus Disease in Kerala, India, 2018
    Arunkumar, Govindakarnavar
    Chandni, Radhakrishnan
    Mourya, Devendra T.
    Singh, Sujeet K.
    Sadanandan, Rajeev
    Sudan, Preeti
    Bhargava, Balram
    Gangakhedkar, Raman R.
    Gupta, Nivedita
    Bhargava, Balram
    Mourya, D. T.
    Yadav, Pragya D.
    Shete, Anita M.
    Sahay, Reema
    Sudeep, A.
    Bharadwaj, Sumit
    Sugunan, A. P.
    Manickam, P.
    Bhatnagar, Tarun
    Murhekar, Manoj
    Arunkumar, Govindakarnavar
    Abdulmajeed, Jazeel
    Aswathyraj, Sushama
    Santhosha, Devadiga
    Anup, Jayaram
    Sudheesh, Nittur
    Anitha, Jagdesh
    Robin, S.
    Sabeena, Sasidharanpillai
    Shakir, Muhammed
    Sarthak, Pattanaik
    Suresh, Prabhu
    Maity, Hindol
    Sheik, Shahin
    Shilpa, C.
    Karunakaran, Kavitha
    Anjali, Aithal
    Kumar, Sanjeeva
    Venkatesh, Srinivasan
    Ravindran, P.
    Singh, Sujeet Kumar
    Gupta, Naveen
    Kulkarni, Sanket
    Raghu, K.
    Ali, M. K. Showkath
    Jain, Ruchi
    Chandra, Ramesh
    Kiran, Jai
    Khasnobis, Pradeep
    Jain, S. K.
    [J]. JOURNAL OF INFECTIOUS DISEASES, 2019, 219 (12) : 1867 - 1878
  • [6] Nipah virus disease: A rare and intractable disease
    Banerjee, Sayantan
    Gupta, Nitin
    Kodan, Parul
    Mittal, Ankit
    Ray, Yogiraj
    Nischal, Neeraj
    Soneja, Manish
    Biswas, Ashutosh
    Wig, Naveet
    [J]. INTRACTABLE & RARE DISEASES RESEARCH, 2019, 8 (01) : 1 - 8
  • [7] Structure and immunogenicity of pre-fusion-stabilized human metapneumovirus F glycoprotein
    Battles, Michael B.
    Mas, Vicente
    Olmedillas, Eduardo
    Cano, Olga
    Vazquez, Monica
    Rodriguez, Laura
    Melero, Jose A.
    McLellan, Jason S.
    [J]. NATURE COMMUNICATIONS, 2017, 8
  • [8] Ephrin-B2 ligand is a functional receptor for Hendra virus and Nipah virus
    Bonaparte, MI
    Dimitrov, AS
    Bossart, KN
    Crameri, G
    Mungal, BA
    Bishop, KA
    Choudhry, V
    Dimitrov, DS
    Wang, LF
    Eaton, BT
    Broder, CC
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2005, 102 (30) : 10652 - 10657
  • [9] A Neutralizing Human Monoclonal Antibody Protects African Green Monkeys from Hendra Virus Challenge
    Bossart, Katharine N.
    Geisbert, Thomas W.
    Feldmann, Heinz
    Zhu, Zhongyu
    Feldmann, Friederike
    Geisbert, Joan B.
    Yan, Lianying
    Feng, Yan-Ru
    Brining, Doug
    Scott, Dana
    Wang, Yanping
    Dimitrov, Antony S.
    Callison, Julie
    Chan, Yee-Peng
    Hickey, Andrew C.
    Dimitrov, Dimiter S.
    Broder, Christopher C.
    Rockx, Barry
    [J]. SCIENCE TRANSLATIONAL MEDICINE, 2011, 3 (105)
  • [10] A Neutralizing Human Monoclonal Antibody Protects against Lethal Disease in a New Ferret Model of Acute Nipah Virus Infection
    Bossart, Katharine N.
    Zhu, Zhongyu
    Middleton, Deborah
    Klippel, Jessica
    Crameri, Gary
    Bingham, John
    McEachern, Jennifer A.
    Green, Diane
    Hancock, Timothy J.
    Chan, Yee-Peng
    Hickey, Andrew C.
    Dimitrov, Dimiter S.
    Wang, Lin-Fa
    Broder, Christopher C.
    [J]. PLOS PATHOGENS, 2009, 5 (10)