Structure of a proteolytically resistant core from the severe acute respiratory syndrome coronavirus S2 fusion protein

被引:100
|
作者
Supekar, VM [1 ]
Bruckmann, C [1 ]
Ingallinella, P [1 ]
Bianchi, E [1 ]
Pessi, A [1 ]
Carfi, A [1 ]
机构
[1] Ist Ric Biol Mol P Angeletti, I-00040 Pomezia, Rome, Italy
关键词
coiled-coil; membrane fusion; viral entry; heptad repeat;
D O I
10.1073/pnas.0406128102
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
A coronavirus (CoV) has recently been identified as the causative agent of the severe acute respiratory syndrome (SARS) in humans. CoVs enter target cells through fusion of viral and cellular membranes mediated by the viral envelope glycoprotein S. We have determined by x-ray crystallography the structure of a proteolytically stable core fragment from the heptad repeat (HR) regions HR1 and HR2 of the SARS-CoV S protein. We have also determined the structure of an HR1-HR2 S core fragment, containing a shorter HR1 peptide and a C-terminally longer HR2 peptide that extends up to the transmembrane region. In these structures, three HR1 helices form a parallel coiled-coil trimer, whereas three HR2 peptides pack in an oblique and antiparallel fashion into the coiled-coil hydrophobic grooves, adopting mixed extended and alpha-helical conformations as in postfusion paramyxoviruses F proteins structures. Our structure positions a previously proposed internal fusion peptide adjacent to the N-terminus of HR1. Peptides from the HR2 region of SARS-CoV S have been shown to inhibit viral entry and infection in vitro. The structures presented here can thus open the path to the design of small-molecule inhibitors of viral entry and candidate vaccine antigens against this virus.
引用
收藏
页码:17958 / 17963
页数:6
相关论文
共 50 条
  • [21] Identification of Common Deletions in the Spike Protein of Severe Acute Respiratory Syndrome Coronavirus 2
    Liu, Zhe
    Zheng, Huanying
    Lin, Huifang
    Li, Mingyue
    Yuan, Runyu
    Peng, Jinju
    Xiong, Qianling
    Sun, Jiufeng
    Li, Baisheng
    Wu, Jie
    Yi, Lina
    Peng, Xiaofang
    Zhang, Huan
    Zhang, Wei
    Hulswit, Ruben J. G.
    Loman, Nick
    Rambaut, Andrew
    Ke, Changwen
    Bowden, Thomas A.
    Pybus, Oliver G.
    Lu, Jing
    JOURNAL OF VIROLOGY, 2020, 94 (17)
  • [22] Variable posttranslational modifications of severe acute respiratory syndrome coronavirus 2 nucleocapsid protein
    Supekar, Nitin T.
    Shajahan, Asif
    Gleinich, Anne S.
    Rouhani, Daniel S.
    Heiss, Christian
    Chapla, Digantkumar Gopaldas
    Moremen, Kelley W.
    Azadi, Parastoo
    GLYCOBIOLOGY, 2021, 31 (09) : 1080 - 1092
  • [23] Dodecamer structure of severe acute respiratory syndrome coronavirus nonstructural protein nsp10
    Su, Dan
    Lou, Zhiyong
    Sun, Fei
    Zhai, Yujia
    Yang, Haitao
    Zhang, Rongguang
    Joachimiak, Andrzej
    Zhang, Xuejun C.
    Bartlam, Mark
    Rao, Zihe
    JOURNAL OF VIROLOGY, 2006, 80 (16) : 7902 - 7908
  • [24] Abelson Kinase Inhibitors Are Potent Inhibitors of Severe Acute Respiratory Syndrome Coronavirus and Middle East Respiratory Syndrome Coronavirus Fusion
    Coleman, Christopher M.
    Sisk, Jeanne M.
    Mingo, Rebecca M.
    Nelson, Elizabeth A.
    White, Judith M.
    Frieman, Matthew B.
    JOURNAL OF VIROLOGY, 2016, 90 (19) : 8924 - 8933
  • [25] THE FUSION-ACTIVE COMPLEX OF SEVERE ACUTE RESPIRATORY SYNDROME (SARS) CORONAVIRUS
    Ingallinella, P.
    Bianchi, E.
    Finotto, M.
    Cantoni, G.
    Eckert, D. M.
    Bruckmann, C.
    Supekar, M.
    Carfi, A.
    Pessi, A.
    JOURNAL OF PEPTIDE SCIENCE, 2004, 10 : 278 - 278
  • [26] The fusion-active complex of severe acute respiratory syndrome (SARS) Coronavirus
    Ingallinella, Paolo
    Bianchi, Elisabetta
    Finotto, Marco
    Cantoni, Giovanna
    Eckert, Debra M.
    Bruckmann, Chiara
    Supekar, Vinit M.
    Carfi, Andrea
    Pessi, Antonello
    Peptides 2004, Proceedings: BRIDGES BETWEEN DISCIPLINES, 2005, : 1023 - 1024
  • [27] Severe acute respiratory syndrome coronavirus protein 6 accelerates murine coronavirus infections
    Tangudu, Chandra
    Olivares, Heidi
    Netland, Jason
    Perlman, Stanley
    Gallagher, Thomas
    JOURNAL OF VIROLOGY, 2007, 81 (03) : 1220 - 1229
  • [28] Subcellular localization of the severe acute respiratory syndrome coronavirus nucleocapsid protein
    You, JW
    Dove, BK
    Enjuanes, L
    DeDiego, ML
    Alvarez, E
    Howell, G
    Heinen, P
    Zambon, M
    Hiscox, JA
    JOURNAL OF GENERAL VIROLOGY, 2005, 86 : 3303 - 3310
  • [29] Immunological characterization of the spike protein of the severe acute respiratory syndrome coronavirus
    Lu, LQ
    Manopo, I
    Leung, BP
    Chng, HH
    Ling, AE
    Chee, LL
    Ooi, EE
    Chan, SW
    Kwang, J
    JOURNAL OF CLINICAL MICROBIOLOGY, 2004, 42 (04) : 1570 - 1576
  • [30] Severe acute respiratory syndrome diagnostics using a coronavirus protein microarray
    Zhu, H
    Hu, SH
    Jona, G
    Zhu, XW
    Kreiswirth, N
    Willey, BM
    Mazzulli, T
    Liu, GZ
    Song, QF
    Chen, P
    Cameron, M
    Tyler, A
    Wang, J
    Wen, J
    Chen, WJ
    Compton, S
    Snyder, M
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2006, 103 (11) : 4011 - 4016