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Use of in silico approaches, synthesis and profiling of Pan-filovirus GP-1,2 preprotein specific antibodies

  • Maciej Wisniewski
  • , Peace Babirye
  • , Carol Musubika
  • , Eleni Papakonstantinou
  • , Samuel Kirimunda
  • , Michal Lazniewski
  • , Teresa Szczepinska
  • , Moses L. Joloba
  • , Elias Eliopoulos
  • , Erik Bongcam-Rudloff
  • , Dimitrios Vlachakis
  • , Anup Kumar Halder
  • , Dariusz Plewczynski
  • , Misaki Wayengera

    Publication: Contribution to journalReview articlepeer-review

    Abstract

    Intermolecular interactions of protein-protein complexes play a principal role in the process of discovering new substances used in the diagnosis and treatment of many diseases. Among such complexes of proteins, we have to mention antibodies; they interact with specific antigens of two genera of single-stranded RNA viruses belonging to the family Filoviridae-Ebolavirus and Marburgvirus; both cause rare but fatal viral hemorrhagic fever in Africa, with pandemic potential. In this research, we conduct studies aimed at the design and evaluation of antibodies targeting the filovirus glycoprotein precursor GP-1,2 to develop potential targets for the pan-filovirus easy-to-use rapid diagnostic tests. The in silico research using the available 3D structure of the natural antibody-antigen complex was carried out to determine the stability of individual protein segments in the process of its formation and maintenance. The computed free binding energy of the complex and its decomposition for all amino acids allowed us to define the residues that play an essential role in the structure and indicated the spots where potential antibodies can be improved. Following that, the study involved targeting six epitopes of the filovirus GP1,2 with two polyclonal antibodies (pABs) and 14 monoclonal antibodies (mABs). The evaluation conducted using Enzyme Immunoassays tested 62 different sandwich combinations of monoclonal antibodies (mAbs), identifying 10 combinations that successfully captured the recombinant GP1,2 (rGP). Among these combinations, the sandwich option (3G2G12* - (rGP) - 2D8F11) exhibited the highest propensity for capturing the rGP antigen.
    Original languageEnglish
    Pages (from-to)765-774
    Number of pages10
    JournalBriefings in Functional Genomics
    Volume23
    Issue number6
    DOIs
    Publication statusPublished - 2024

    UN SDGs

    This output contributes to the following UN Sustainable Development Goals (SDGs)

    1. SDG 3 - Good Health and Well-being
      SDG 3 Good Health and Well-being

    Keywords

    • ebola virus
    • marburg virus
    • filovirus
    • viral hemorrhagic fever
    • rapid diagnostic tests
    • monoclonal antibodies

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