Engineered Receptor Capture Combined with Mass Spectrometry Enables High-Throughput Detection and Quantitation of SARS-CoV-2 Spike Protein

被引:0
|
作者
Bate, Neil [1 ]
Lane, Dan [1 ,2 ]
Evans, Sian E. [4 ]
Salim, Farah [1 ,2 ]
Allcock, Natalie S. [5 ]
Haigh, Richard [4 ]
Sale, Julian E. [7 ]
Jones, Donald J. L. [2 ,6 ]
Brindle, Nicholas P. J. [3 ,8 ]
机构
[1] Univ Leicester, Dept Cardiovasc Sci, Leicester LE1 7RH, England
[2] Univ Leicester, Van Geest MS OMICS Facil, Leicester LE1 7RH, England
[3] Univ Leicester, Leicester Inst Struct & Chem Biol, Leicester LE1 7RH, England
[4] Univ Leicester, Leicester Drug Discovery & Diagnost, Leicester LE1 7RH, England
[5] Univ Leicester, Core Biotechnol Serv, Electron Microscopy Facil, Leicester LE1 7RH, England
[6] Univ Leicester, Dept Genet Genom & Canc Sci, Leicester LE1 7RH, England
[7] MRC Lab Mol Biol, Cambridge CB2 0QH, England
[8] Univ Leicester, Dept Cardiovasc Sci, Dept Mol & Cell Biol, Leicester LE1 7RH, England
来源
JACS AU | 2025年 / 5卷 / 02期
基金
英国生物技术与生命科学研究理事会; 英国医学研究理事会;
关键词
virus; detection; receptor capture; protein engineering; mass spectrometry; SARS-CoV2; ACE2;
D O I
10.1021/jacsau.4c00980
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Mass spectrometry (MS) is a potentially powerful approach for the diagnostic detection of SARS-CoV-2 and other viruses. However, MS detection is compromised when viral antigens are present at low concentrations, especially in complex biological media. We hypothesized that viral receptors could be used for viral target capture to enable detection by MS under such conditions. This was tested using the extracellular domain of the SARS-CoV-2 receptor ACE2. To maximize recovery of the target protein, directed protein evolution was first used to increase the affinity of ACE2 for spike protein. This generated an evolved ACE2 with increased binding affinity for the spike protein receptor-binding domain (RBD). However, as with other affinity-enhanced evolved forms of ACE2, binding was sensitive to mutations in variant RBDs. As an alternative strategy to maximize capture, the native ACE2 extracellular domain was engineered for increased binding by the addition of an oligomerization scaffold to create pentameric ACE2. This bound extremely tightly to SARS-CoV-2 RBD, with an increase in apparent affinity of several thousand-fold over monomeric ACE2, and RBD retention of more than 8 h. Immobilization of multimeric ACE2 enabled quantitative enrichment of viral spike protein from saliva and increased the sensitivity of detection by MS. These data show that capture by engineered receptors combined with MS can be an effective, rapid method for detection and quantitation of target protein. A similar approach could be used for attachment proteins of other viruses or any target protein for which there are suitable receptors.
引用
收藏
页码:747 / 755
页数:9
相关论文
共 50 条
  • [1] A High-throughput Automated ELISA Assay for Detection of IgG Antibodies to the SARS-CoV-2 Spike Protein
    Conkright-Finchaml, Juliana
    Tomomori-Sato, Chieri
    McGhee, Rich
    Leslie, Ella M.
    Beucherl, Carolyn J.
    Weems, Lauren E.
    Sato, Shigeo
    Redwine, William B.
    Weaver, Kyle J.
    Miller, Brandon D.
    Delventhal, Kym M.
    Kary, John J.
    Koebbe, Andrew B.
    Deans, Alexander
    Witt, Jessica L.
    Remy, Laura M.
    Parmely, Tani J.
    Zhao, Chongbei
    Wang, Yan
    Conaway, Joan W.
    Unruh, Jay R.
    BIO-PROTOCOL, 2022, 12 (02):
  • [2] Development of a High-Throughput Mass Spectrometry-Based SARS-CoV-2 Immunoassay
    Sun, Jie
    Song, Jong Hee
    Danielson, Mary K.
    Colley, Nathan D.
    Thomas, Alia
    Hambly, David
    Barnes, Jonathan C.
    Gross, Michael L.
    ANALYTICAL CHEMISTRY, 2023, 96 (01) : 12 - 17
  • [3] A High-Throughput Platform for Selection of Protein Binding Peptides: Application to SARS-Cov-2 Spike Protein
    Chushak, Yaroslav
    Wolfe, Monica
    Webb, Sean
    Harbaugh, Svetlana
    Chavez, Jorge
    JOURNAL OF PEPTIDE SCIENCE, 2022, 28
  • [4] A high-throughput pipeline for design and selection of peptides targeting the SARS-Cov-2 Spike protein
    Wolfe, Monica
    Webb, Sean
    Chushak, Yaroslav
    Krabacher, Rachel
    Liu, Yi
    Swami, Nathan
    Harbaugh, Svetlana
    Chavez, Jorge
    SCIENTIFIC REPORTS, 2021, 11 (01)
  • [5] A high-throughput pipeline for design and selection of peptides targeting the SARS-Cov-2 Spike protein
    Monica Wolfe
    Sean Webb
    Yaroslav Chushak
    Rachel Krabacher
    Yi Liu
    Nathan Swami
    Svetlana Harbaugh
    Jorge Chávez
    Scientific Reports, 11
  • [6] High-throughput screening of mutations affecting SARS-CoV-2 spike functions
    Xia, Shuai
    Liu, Zezhong
    Jiang, Shibo
    TRENDS IN IMMUNOLOGY, 2023, 44 (05) : 321 - 323
  • [7] High-throughput detection of antibodies targeting the SARS-CoV-2 Spike in longitudinal convalescent plasma samples
    Anand, Sai Priya
    Prevost, Jeremie
    Richard, Jonathan
    Perreault, Josee
    Tremblay, Tony
    Drouin, Mathieu
    Fournier, Marie-Josee
    Lewin, Antoine
    Bazin, Renee
    Finzi, Andres
    TRANSFUSION, 2021, 61 (05) : 1377 - 1382
  • [8] Detection of SARS-CoV-2 IgG Targeting Nucleocapsid or Spike Protein by Four High-Throughput Immunoassays Authorized for Emergency Use
    Prince, Harry E.
    Givens, Tara S.
    Lape-Nixon, Mary
    Clarke, Nigel J.
    Schwab, Dale A.
    Batterman, Hollis J.
    Jones, Robert S.
    Meyer, William A., III
    Kapoor, Hema
    Rowland, Charles M.
    Haji-Sheikhi, Farnoosh
    Marlowe, Elizabeth M.
    JOURNAL OF CLINICAL MICROBIOLOGY, 2020, 58 (11)
  • [9] High-throughput identification of prefusion-stabilizing mutations in SARS-CoV-2 spike
    Timothy J. C. Tan
    Zongjun Mou
    Ruipeng Lei
    Wenhao O. Ouyang
    Meng Yuan
    Ge Song
    Raiees Andrabi
    Ian A. Wilson
    Collin Kieffer
    Xinghong Dai
    Kenneth A. Matreyek
    Nicholas C. Wu
    Nature Communications, 14
  • [10] High-throughput identification of prefusion-stabilizing mutations in SARS-CoV-2 spike
    Tan, Timothy J. C.
    Mou, Zongjun
    Lei, Ruipeng
    Ouyang, Wenhao O.
    Yuan, Meng
    Song, Ge
    Andrabi, Raiees
    Wilson, Ian A.
    Kieffer, Collin
    Dai, Xinghong
    Matreyek, Kenneth A.
    Wu, Nicholas C.
    NATURE COMMUNICATIONS, 2023, 14 (01)