The validation of artificial anti-monkeypox antibodies by in silico and experimental approaches.

Immun Inflamm Dis

Department of Medical Nanotechnology, Faculty of Advanced Sciences and Technology, Tehran Medical Science, Islamic Azad University, Tehran, Iran.

Published: April 2023

AI Article Synopsis

  • A significant portion of the global population lacks immunity to smallpox due to the cessation of immunization programs, raising concerns about the spread of monkeypox amidst insufficient treatment options.
  • Novel antibodies were modeled using a human antibody heavy chain and peptide fragments, demonstrating promising docking energies and structural stability during molecular dynamics simulations, particularly with antibody 62 showing the highest stability.
  • Evaluation of interactions between C19L protein and the antibodies revealed synthetic antibodies, especially antibody 62, exhibited higher binding affinity than their wild-type counterparts, indicating potential for further development in combatting monkeypox.

Article Abstract

As a result of smallpox immunization programs that ended more than 40 years ago, a significant portion of the world's population is not immune. Moreover, due to the lack of anti-monkeypox drugs and vaccines against monkeypox, the spread of this virus may be the beginning of another challenge. In this study, novel antibodies against monkeypox virus were modeled based on a heavy chain of human antibody and a small peptide fragment. Docking of modeled antibodies with C19L protein showed the range of docking energy, and root-mean-square deviation (RMSD) was from -124 to -154 kcal/mL and 4-6 angstrom, respectively. Also, docking of modeled antibodies-C19L complex with gamma Fc receptor type I illustrated the range of docking energy, and RMSD was from -132 to -155 kcal/ml and 5-7 angstrom, respectively. Moreover, molecular dynamics simulation showed that antibody 62 had the highest stability with the lowest energy level and RMSD. Interestingly, no modeled antibodies had immunogenicity, allergenicity, and toxicity. Although all of them had good stability, only antibodies 25, 28, 54, and 62 had a half-life of >10 h. Moreover, the interaction between C19L protein and anti-C19L antibodies (wild-type and synthetic) was evaluated by the SPR method. We found that K in synthetic antibodies was lower than wild antibody. In terms of δH°, TδS°, and δG°, the results were consistent with binding parameters. Here, the lowest value of thermodynamic parameters was obtained for antibody 62. These data show that the synthetic antibodies, especially antibody 62, had a higher affinity than the wild-type antibody.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10091375PMC
http://dx.doi.org/10.1002/iid3.834DOI Listing

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