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In-solution buffer-free digestion for the analysis of SARS-CoV-2 RBD proteins allows a full sequence coverage and detection of post-translational modifications in a single ESI-MS spectrum
Luis Ariel Espinosa; Yassel Ramos; Ivan Andujar; Enso Onill Torres; Gleysin Cabrera; Alejandro Martin; Diamile Gonzalez; Glay Chinea; Monica Becquet; Isabel Gonzalez; Camila Canaan-Haden; Elias Nelson; Gertrudis Rojas; Beatriz Perez-Masson; Dayana Perez-Martinez; Tamy Boggiano; Julio Palacio; Sum Lai Lozada-Chang; Lourdes Hernandez; Kathya Rashida de la Luz; Saloheimo Markku; Vitikainen Marika; Yury Valdes-Balbin; Darielys Santana-Medero; Daniel G. Rivera; Vicente Verez Bencomo; Mark Emalfarb; Ronen Tchelet; Gerardo Guillen; Miladys Limonta; Eulogio Pimentel; Marta Ayala; Vladimir Besada; Luis Javier Gonzalez.
Afiliação
  • Luis Ariel Espinosa; Center for Genetic Engineering and Biotechnology
  • Yassel Ramos; Center for Genetic Engineering and Biotechnology
  • Ivan Andujar; Center for Genetic Engineering and Biotechnology
  • Enso Onill Torres; Center for genetic Engineering and Biotechnology
  • Gleysin Cabrera; Center for Genetic Engineering and Biotechnology
  • Alejandro Martin; Center for Genetic Engineering and Biotechnology
  • Diamile Gonzalez; Center for Genetic Engineering and Biotechnology
  • Glay Chinea; Center for Genetic Engineering and Biotechnology
  • Monica Becquet; Center for Genetic Engineering and Biotechnology
  • Isabel Gonzalez; Center for Genetic Engineering and Biotechnology
  • Camila Canaan-Haden; Center for Genetic Engineering and Biotechnology
  • Elias Nelson; Center for Genetic Engineering and Biotechnology
  • Gertrudis Rojas; Center of Molecular Immunology
  • Beatriz Perez-Masson; Center of Molecular Immunology
  • Dayana Perez-Martinez; Center of Molecular Immunology
  • Tamy Boggiano; Center of Molecular Immunology
  • Julio Palacio; Center of Molecular Immunology
  • Sum Lai Lozada-Chang; Center of Molecular Immunology
  • Lourdes Hernandez; Center of Molecular Immunology
  • Kathya Rashida de la Luz; Center of Molecular Immunology
  • Saloheimo Markku; VTT Technical Research Centre of Finland Ltd. Dyadic International, Inc
  • Vitikainen Marika; VTT Technical Research Centre of Finland Ltd. Dyadic International, Inc
  • Yury Valdes-Balbin; Finlay Vaccine Institute
  • Darielys Santana-Medero; Finlay Vaccine Institute
  • Daniel G. Rivera; Laboratory of Synthetic and Biomolecular Chemistry, Faculty of Chemistry, University of Havana, Zapata & G, Havana 10400, Cuba
  • Vicente Verez Bencomo; Finlay Vaccine Institute
  • Mark Emalfarb; VTT Technical Research Centre of Finland Ltd. Dyadic International, Inc
  • Ronen Tchelet; VTT Technical Research Centre of Finland Ltd. Dyadic International, Inc
  • Gerardo Guillen; Center for Genetic Engineering and Biotechnology
  • Miladys Limonta; Center for Genetic Engineering and Biotechnology
  • Eulogio Pimentel; Center for Genetic Engineering and Biotechnology
  • Marta Ayala; Center for Genetic Engineering and Biotechnology
  • Vladimir Besada; Center for Genetic Engineering and Biotechnology
  • Luis Javier Gonzalez; Center for Genetic Engineering and Biotechnology
Preprint em Inglês | bioRxiv | ID: ppbiorxiv-443404
ABSTRACT
Subunit vaccines based on the receptor-binding domain (RBD) of the spike protein of SARS-CoV-2, are among the most promising strategies to fight the COVID-19 pandemic. The detailed characterization of the protein primary structure by mass spectrometry (MS) is mandatory, as described in ICHQ6B guidelines. In this work, several recombinant RBD proteins produced in five expression systems were characterized using a non-conventional protocol known as in-solution buffer-free digestion (BFD). In a single ESI-MS spectrum, BFD allowed very high sequence coverage ([≥] 99 %) and the detection of highly hydrophilic regions, including very short and hydrophilic peptides (2-8 amino acids), the His6-tagged C-terminal peptide carrying several post-translational modifications at Cys538 such as cysteinylation, glutathionylation, cyanilation, among others. The analysis using the conventional digestion protocol allowed lower sequence coverage (80-90 %) and did not detect peptides carrying some of the above-mentioned post-translational modifications. The two C-terminal peptides of a dimer [RBD(319-541)-(His)6]2 linked by an intermolecular disulfide bond (Cys538-Cys538) with twelve histidine residues were only detected by BFD. This protocol allows the detection of the four disulfide bonds present in the native RBD and the low-abundance scrambling variants, free cysteine residues, O-glycoforms and incomplete processing of the N-terminal end, if present. Artifacts that might be generated by the in-solution BFD protocol were also characterized. BFD can be easily implemented and we foresee that it can be also helpful to the characterization of mutated RBD.
Texto completo: Disponível Coleções: Preprints Base de dados: bioRxiv Idioma: Inglês Ano de publicação: 2021 Tipo de documento: Preprint
Texto completo: Disponível Coleções: Preprints Base de dados: bioRxiv Idioma: Inglês Ano de publicação: 2021 Tipo de documento: Preprint
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