Literature DB >> 26085157

Identification of the Receptor-Binding Domain of the Spike Glycoprotein of Human Betacoronavirus HKU1.

Zhaohui Qian1, Xiuyuan Ou2, Luiz Gustavo Bentim Góes3, Christina Osborne3, Anna Castano4, Kathryn V Holmes4, Samuel R Dominguez5.   

Abstract

UNLABELLED: Coronavirus spike (S) glycoproteins mediate receptor binding, membrane fusion, and virus entry and determine host range. Murine betacoronavirus (β-CoV) in group A uses the N-terminal domain (NTD) of S protein to bind to its receptor, whereas the β-CoVs severe acute respiratory syndrome CoV in group B and Middle East respiratory syndrome CoV in group C and several α-CoVs use the downstream C domain in their S proteins to recognize their receptor proteins. To identify the receptor-binding domain in the spike of human β-CoV HKU1 in group A, we generated and mapped a panel of monoclonal antibodies (MAbs) to the ectodomain of HKU1 spike protein. They did not cross-react with S proteins of any other CoV tested. Most of the HKU1 spike MAbs recognized epitopes in the C domain between amino acids 535 and 673, indicating that this region is immunodominant. Two of the MAbs blocked HKU1 virus infection of primary human tracheal-bronchial epithelial (HTBE) cells. Preincubation of HTBE cells with a truncated HKU1 S protein that includes the C domain blocked infection with HKU1 virus, but preincubation of cells with truncated S protein containing only the NTD did not block infection. These data suggest that the receptor-binding domain (RBD) of HKU1 spike protein is located in the C domain, where the spike proteins of α-CoVs and β-CoVs in groups B and C bind to their specific receptor proteins. Thus, two β-CoVs in group A, HKU1 and murine CoV, have evolved to use different regions of their spike glycoproteins to recognize their respective receptor proteins. IMPORTANCE: Mouse hepatitis virus, a β-CoV in group A, uses the galectin-like NTD in its spike protein to bind its receptor protein, while HCoV-OC43, another β-CoV in group A, uses the NTD to bind to its sialic-acid containing receptor. In marked contrast, the NTD of the spike glycoprotein of human respiratory β-CoV HKU1, which is also in group A, does not bind sugar. In this study, we showed that for the spike protein of HKU1, the purified C domain, downstream of the NTD, could block HKU1 virus infection of human respiratory epithelial cells, and that several monoclonal antibodies that mapped to the C domain neutralized virus infectivity. Thus, the receptor-binding domain of HKU1 spike glycoprotein is located in the C domain. Surprisingly, two β-CoVs in group A, mouse hepatitis virus and HKU1, have evolved to use different regions of their spike glycoproteins to recognize their respective receptors.
Copyright © 2015, American Society for Microbiology. All Rights Reserved.

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Year:  2015        PMID: 26085157      PMCID: PMC4524053          DOI: 10.1128/JVI.03737-14

Source DB:  PubMed          Journal:  J Virol        ISSN: 0022-538X            Impact factor:   5.103


  50 in total

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Journal:  N Engl J Med       Date:  2003-04-10       Impact factor: 91.245

2.  Crystal structure of mouse coronavirus receptor-binding domain complexed with its murine receptor.

Authors:  Guiqing Peng; Dawei Sun; Kanagalaghatta R Rajashankar; Zhaohui Qian; Kathryn V Holmes; Fang Li
Journal:  Proc Natl Acad Sci U S A       Date:  2011-06-13       Impact factor: 11.205

3.  Comparative analysis of 22 coronavirus HKU1 genomes reveals a novel genotype and evidence of natural recombination in coronavirus HKU1.

Authors:  Patrick C Y Woo; Susanna K P Lau; Cyril C Y Yip; Yi Huang; Hoi-Wah Tsoi; Kwok-Hung Chan; Kwok-Yung Yuen
Journal:  J Virol       Date:  2006-07       Impact factor: 5.103

4.  Transmissible gastroenteritis coronavirus, but not the related porcine respiratory coronavirus, has a sialic acid (N-glycolylneuraminic acid) binding activity.

Authors:  B Schultze; C Krempl; M L Ballesteros; L Shaw; R Schauer; L Enjuanes; G Herrler
Journal:  J Virol       Date:  1996-08       Impact factor: 5.103

5.  Identification of a receptor-binding domain in the S protein of the novel human coronavirus Middle East respiratory syndrome coronavirus as an essential target for vaccine development.

Authors:  Lanying Du; Guangyu Zhao; Zhihua Kou; Cuiqing Ma; Shihui Sun; Vincent K M Poon; Lu Lu; Lili Wang; Asim K Debnath; Bo-Jian Zheng; Yusen Zhou; Shibo Jiang
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Review 6.  Receptor recognition mechanisms of coronaviruses: a decade of structural studies.

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7.  More and More Coronaviruses: Human Coronavirus HKU1.

Authors:  Patrick C Y Woo; Susanna K P Lau; Cyril C Y Yip; Yi Huang; Kwok-Yung Yuen
Journal:  Viruses       Date:  2009-06-11       Impact factor: 5.818

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Authors:  Nianshuang Wang; Xuanling Shi; Liwei Jiang; Senyan Zhang; Dongli Wang; Pei Tong; Dongxing Guo; Lili Fu; Ye Cui; Xi Liu; Kelly C Arledge; Ying-Hua Chen; Linqi Zhang; Xinquan Wang
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Review 9.  Receptor recognition and cross-species infections of SARS coronavirus.

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Journal:  Antiviral Res       Date:  2013-08-29       Impact factor: 5.970

10.  Detection of four human coronaviruses in respiratory infections in children: a one-year study in Colorado.

Authors:  Samuel R Dominguez; Christine C Robinson; Kathryn V Holmes
Journal:  J Med Virol       Date:  2009-09       Impact factor: 2.327

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  27 in total

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2.  Analysis of Viral Spike Protein N-Glycosylation Using Ultraviolet Photodissociation Mass Spectrometry.

Authors:  Edwin E Escobar; Shuaishuai Wang; Rupanjan Goswami; Michael B Lanzillotti; Lei Li; Jason S McLellan; Jennifer S Brodbelt
Journal:  Anal Chem       Date:  2022-04-07       Impact factor: 8.008

Review 3.  Coronaviruses: An Updated Overview of Their Replication and Pathogenesis.

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Journal:  Methods Mol Biol       Date:  2020

4.  A Bibliometric Analysis of PubMed Literature on Middle East Respiratory Syndrome.

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Journal:  Int J Environ Res Public Health       Date:  2016-06-13       Impact factor: 3.390

5.  Prevalence and genetic diversity analysis of human coronaviruses among cross-border children.

Authors:  Peilin Liu; Lei Shi; Wei Zhang; Jianan He; Chunxiao Liu; Chunzhong Zhao; Siu Kai Kong; Jacky Fong Chuen Loo; Dayong Gu; Longfei Hu
Journal:  Virol J       Date:  2017-11-22       Impact factor: 4.099

6.  Crystal structure of the receptor binding domain of the spike glycoprotein of human betacoronavirus HKU1.

Authors:  Xiuyuan Ou; Hongxin Guan; Bo Qin; Zhixia Mu; Justyna A Wojdyla; Meitian Wang; Samuel R Dominguez; Zhaohui Qian; Sheng Cui
Journal:  Nat Commun       Date:  2017-05-23       Impact factor: 14.919

7.  Receptor-binding loops in alphacoronavirus adaptation and evolution.

Authors:  Alan H M Wong; Aidan C A Tomlinson; Dongxia Zhou; Malathy Satkunarajah; Kevin Chen; Chetna Sharon; Marc Desforges; Pierre J Talbot; James M Rini
Journal:  Nat Commun       Date:  2017-11-23       Impact factor: 14.919

8.  Canine Respiratory Coronavirus, Bovine Coronavirus, and Human Coronavirus OC43: Receptors and Attachment Factors.

Authors:  Artur Szczepanski; Katarzyna Owczarek; Monika Bzowska; Katarzyna Gula; Inga Drebot; Marek Ochman; Beata Maksym; Zenon Rajfur; Judy A Mitchell; Krzysztof Pyrc
Journal:  Viruses       Date:  2019-04-05       Impact factor: 5.048

Review 9.  Targeting the glycans: A paradigm for host-targeted and COVID-19 drug design.

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Journal:  J Cell Mol Med       Date:  2021-05-24       Impact factor: 5.310

10.  Pre-fusion structure of a human coronavirus spike protein.

Authors:  Robert N Kirchdoerfer; Christopher A Cottrell; Nianshuang Wang; Jesper Pallesen; Hadi M Yassine; Hannah L Turner; Kizzmekia S Corbett; Barney S Graham; Jason S McLellan; Andrew B Ward
Journal:  Nature       Date:  2016-03-03       Impact factor: 49.962

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