Site specific N- and O-glycosylation mapping of the spike proteins of SARS-CoV-2 variants of concern

被引:0
|
作者
Asif Shajahan
Lauren E. Pepi
Bhoj Kumar
Nathan B. Murray
Parastoo Azadi
机构
[1] National Institutes of Health,Vaccine Production Program, Vaccine Research Center
[2] University of Georgia,Complex Carbohydrate Research Center
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
The glycosylation on the spike (S) protein of the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), the virus that causes COVID-19, modulates the viral infection by altering conformational dynamics, receptor interaction and host immune responses. Several variants of concern (VOCs) of SARS-CoV-2 have evolved during the pandemic, and crucial mutations on the S protein of the virus have led to increased transmissibility and immune escape. In this study, we compare the site-specific glycosylation and overall glycomic profiles of the wild type Wuhan-Hu-1 strain (WT) S protein and five VOCs of SARS-CoV-2: Alpha, Beta, Gamma, Delta and Omicron. Interestingly, both N- and O-glycosylation sites on the S protein are highly conserved among the spike mutant variants, particularly at the sites on the receptor-binding domain (RBD). The conservation of glycosylation sites is noteworthy, as over 2 million SARS-CoV-2 S protein sequences have been reported with various amino acid mutations. Our detailed profiling of the glycosylation at each of the individual sites of the S protein across the variants revealed intriguing possible association of glycosylation pattern on the variants and their previously reported infectivity. While the sites are conserved, we observed changes in the N- and O-glycosylation profile across the variants. The newly emerged variants, which showed higher resistance to neutralizing antibodies and vaccines, displayed a decrease in the overall abundance of complex-type glycans with both fucosylation and sialylation and an increase in the oligomannose-type glycans across the sites. Among the variants, the glycosylation sites with significant changes in glycan profile were observed at both the N-terminal domain and RBD of S protein, with Omicron showing the highest deviation. The increase in oligomannose-type happens sequentially from Alpha through Delta. Interestingly, Omicron does not contain more oligomannose-type glycans compared to Delta but does contain more compared to the WT and other VOCs. O-glycosylation at the RBD showed lower occupancy in the VOCs in comparison to the WT. Our study on the sites and pattern of glycosylation on the SARS-CoV-2 S proteins across the VOCs may help to understand how the virus evolved to trick the host immune system. Our study also highlights how the SARS-CoV-2 virus has conserved both N- and O- glycosylation sites on the S protein of the most successful variants even after undergoing extensive mutations, suggesting a correlation between infectivity/ transmissibility and glycosylation.
引用
收藏
相关论文
共 50 条
  • [31] Epidemiology and Characteristics of SARS-CoV-2 Variants of Concern: The Impacts of the Spike Mutations
    Cocherie, Theophile
    Zafilaza, Karen
    Leducq, Valentin
    Marot, Stephane
    Calvez, Vincent
    Marcelin, Anne-Genevieve
    Todesco, Eve
    MICROORGANISMS, 2023, 11 (01)
  • [32] Mutations in SARS-CoV-2 variants of concern link to increased spike cleavage
    Escalera, Alba
    Gonzalez-Reiche, Ana S.
    Aslam, Sadaf
    Mena, Ignacio
    Laporte, Manon
    Pearl, Rebecca L.
    Fossati, Andrea
    Rathnasinghe, Raveen
    Alshammary, Hala
    van de Guchte, Adriana
    Farrugia, Keith
    Qin, Yiren
    Bouhaddou, Mehdi
    Kehrer, Thomas
    Zuliani-Alvarez, Lorena
    Meekins, David A.
    Balaraman, Velmurugan
    McDowell, Chester
    Richt, Jurgen A.
    Bajic, Goran
    Sordillo, Emilia Mia
    Dejosez, Marion
    Zwaka, Thomas P.
    Krogan, Nevan J.
    Simon, Viviana
    Albrecht, Randy A.
    van Bakel, Harm
    Garcia-Sastre, Adolfo
    Aydillo, Teresa
    CELL HOST & MICROBE, 2022, 30 (03) : 373 - +
  • [33] Elucidating the molecular docking and binding dynamics of aptamers with spike proteins across SARS-CoV-2 variants of concern
    Quintela, Irwin A.
    Vasse, Tyler
    Jian, Dana
    Harrington, Cameron
    Sien, Wesley
    Wu, Vivian C. H.
    FRONTIERS IN MICROBIOLOGY, 2025, 16
  • [34] ACE2 N-glycosylation modulates interactions with SARS-CoV-2 spike protein in a site-specific manner
    Ayana Isobe
    Yasuha Arai
    Daisuke Kuroda
    Nobuaki Okumura
    Takao Ono
    Shota Ushiba
    Shin-ichi Nakakita
    Tomo Daidoji
    Yasuo Suzuki
    Takaaki Nakaya
    Kazuhiko Matsumoto
    Yohei Watanabe
    Communications Biology, 5
  • [35] ACE2 N-glycosylation modulates interactions with SARS-CoV-2 spike protein in a site-specific manner
    Isobe, Ayana
    Arai, Yasuha
    Kuroda, Daisuke
    Okumura, Nobuaki
    Ono, Takao
    Ushiba, Shota
    Nakakita, Shin-ichi
    Daidoji, Tomo
    Suzuki, Yasuo
    Nakaya, Takaaki
    Matsumoto, Kazuhiko
    Watanabe, Yohei
    COMMUNICATIONS BIOLOGY, 2022, 5 (01)
  • [36] SARS-COV-2 RETAINS GLYCOSYLATION SITES OF THE SPIKE PROTEIN ACROSS THE VARIANTS OF CONCERN, BUT GLYCOSYLATION PROFILES AT DIFFERENT SITES DISPLAY CHANGES.
    Azadi, Parastoo
    Shajahan, Asif
    Pepi, Lauren E.
    Kumar, Bhoj
    Murray, Nathan
    Heiss, Christian
    GLYCOBIOLOGY, 2022, 32 (11) : 982 - 982
  • [37] The emerging SARS-CoV-2 variants of concern
    Sanyaolu, Adekunle
    Okorie, Chuku
    Marinkovic, Aleksandra
    Haider, Nafees
    Abbasi, Abu Fahad
    Jaferi, Urooj
    Prakash, Stephanie
    Balendra, Vyshnavy
    THERAPEUTIC ADVANCES IN INFECTIOUS DISEASE, 2021, 8
  • [38] The origin of SARS-CoV-2 variants of concern
    Burki, Talha
    LANCET INFECTIOUS DISEASES, 2022, 22 (02): : 174 - 175
  • [39] SARS-CoV-2 variants of concern: a review
    Sarkar, Malay
    Madabhavi, Irappa
    MONALDI ARCHIVES FOR CHEST DISEASE, 2023, 93 (03)
  • [40] Site-Specific N- and O-Glycosylation Analysis of Human Plasma Fibronectin
    Liu, Ding
    Wang, Shuaishuai
    Zhang, Junping
    Xiao, Weidong
    Miao, Carol H.
    Konkle, Barbara A.
    Wan, Xiu-Feng
    Li, Lei
    FRONTIERS IN CHEMISTRY, 2021, 9