Specific asparagine-linked glycosylation sites are critical for DC-SIGN- and L-SIGN-Mediated severe acute respiratory syndrome coronavirus entry

被引:114
作者
Han, Dong P.
Lohani, Motashim
Cho, Michael W.
机构
[1] Case Western Reserve Univ, Sch Med, Dept Med, Div Infect Dis, Cleveland, OH 44106 USA
[2] Case Western Reserve Univ, Sch Med, Dept Biochem, Cleveland, OH 44106 USA
[3] Case Western Reserve Univ, Sch Med, Dept Mol Biol & Microbiol, Cleveland, OH 44106 USA
关键词
D O I
10.1128/JVI.00315-07
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Severe acute respiratory syndrome (SARS) is caused by a newly emerged coronavirus (CoV) designated SARS-CoV. The virus utilizes angiotensin-converting enzyme 2 (ACE2) as the primary receptor. Although the idea is less clear and somewhat controversial, SARS-CoV is thought to use C-type lectins DC-SIGN and/or L-SIGN (collectively referred to as DC/L-SIGN) as alternative receptors or as enhancer factors that facilitate ACE2-mediated virus infection. In this study, the function of DC/L-SIGN in SARS-CoV infection was examined in detail. The results of our study clearly demonstrate that both proteins serve as receptors independently of ACE2 and that there is a minimal level of synergy between DC/L-SIGN and ACE2. As expected, glycans on spike (S) glycoprotein are important for DC/L-SIGN-mediated virus infection. Site-directed mutagenesis analyses have identified seven glycosylation sites on the S protein critical for DC/L-SIGN-mediated virus entry. They include asparagine residues at amino acid positions 109, 118, 119, 158, 227, 589, and 699, which are distinct from residues of the ACE2-binding domain (amino acids 318 to 510). Amino acid sequence analyses of S proteins encoded by viruses isolated from animals and humans suggest that glycosyllation sites N227 and N699 have facilitated zoonotic transmission.
引用
收藏
页码:12029 / 12039
页数:11
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共 51 条
  • [1] DEDUCED SEQUENCE OF THE BOVINE CORONAVIRUS SPIKE PROTEIN AND IDENTIFICATION OF THE INTERNAL PROTEOLYTIC CLEAVAGE SITE
    ABRAHAM, S
    KIENZLE, TE
    LAPPS, W
    BRIAN, DA
    [J]. VIROLOGY, 1990, 176 (01) : 296 - 301
  • [2] Cutting edge: Carbohydrate profiling identifies new pathogens that interact with dendritic cell-specific ICAM-3-grabbing nonintegrin on dendritic cells
    Appelmelk, BJ
    van Die, I
    van Vliet, SJ
    Vandenbroucke-Grauls, CMJE
    Geijtenbeek, TBH
    van Kooyk, Y
    [J]. JOURNAL OF IMMUNOLOGY, 2003, 170 (04) : 1635 - 1639
  • [3] Amino acids 270 to 510 of the severe acute respiratory syndrome coronavirus spike protein are required for interaction with receptor
    Babcock, GJ
    Esshaki, DJ
    Thomas, WD
    Ambrosino, DM
    [J]. JOURNAL OF VIROLOGY, 2004, 78 (09) : 4552 - 4560
  • [4] Neutralizing antibody and protective immunity to SARS coronavirus infection of mice induced by a soluble recombinant polypeptide containing an N-terminal segment of the spike glycoprotein
    Bisht, H
    Roberts, A
    Vogel, L
    Subbarao, K
    Moss, B
    [J]. VIROLOGY, 2005, 334 (02) : 160 - 165
  • [5] Severe acute respiratory syndrome coroavirus (SARS-CoV) infection inhibition using spike protein heptad repeat-derived peptides
    Bosch, BJ
    Martina, BEE
    van der Zee, R
    Lepault, J
    Haijema, BJ
    Versluis, C
    Heck, AJR
    de Groot, R
    Osterhaus, ADME
    Rottier, PJM
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2004, 101 (22) : 8455 - 8460
  • [6] The SARS Coronavirus S Glycoprotein Receptor Binding Domain: Fine Mapping and Functional Characterization
    Chakraborti, Samitabh
    Prabakaran, Ponraj
    Xiao, Xiaodong
    Dimitrov, Dimiter S.
    [J]. VIROLOGY JOURNAL, 2005, 2 (1)
  • [7] Homozygous L-SIGN (CLEC4M) plays a protective role in SARS coronavirus infection
    Chan, VSF
    Chan, KYK
    Chen, YX
    Poon, LLM
    Cheung, ANY
    Zheng, BJ
    Chan, KH
    Mak, W
    Ngan, HYS
    Xu, XN
    Screaton, G
    Tam, PKH
    Austyn, JM
    Chan, LC
    Yip, SP
    Peiris, M
    Khoo, US
    Lin, CLS
    [J]. NATURE GENETICS, 2006, 38 (01) : 38 - 46
  • [8] Detection of severe acute respiratory syndrome-associated coronavirus in pneumocytes of the lung
    Chow, KC
    Hsiao, CH
    Lin, TY
    Chen, CL
    Chiou, SH
    [J]. AMERICAN JOURNAL OF CLINICAL PATHOLOGY, 2004, 121 (04) : 574 - 580
  • [9] Identification of a novel coronavirus in patients with severe acute respiratory syndrome
    Drosten, C
    Günther, S
    Preiser, W
    van der Werf, S
    Brodt, HR
    Becker, S
    Rabenau, H
    Panning, M
    Kolesnikova, L
    Fouchier, RAM
    Berger, A
    Burguière, AM
    Cinatl, J
    Eickmann, M
    Escriou, N
    Grywna, K
    Kramme, S
    Manuguerra, JC
    Müller, S
    Rickerts, V
    Stürmer, M
    Vieth, S
    Klenk, HD
    Osterhaus, ADME
    Schmitz, H
    Doerr, HW
    [J]. NEW ENGLAND JOURNAL OF MEDICINE, 2003, 348 (20) : 1967 - 1976
  • [10] Structural basis for selective recognition of oligosaccharides by DC-SIGN and DC-SIGNR
    Feinberg, H
    Mitchell, DA
    Drickamer, K
    Weis, WI
    [J]. SCIENCE, 2001, 294 (5549) : 2163 - 2166