Cargando…

Anti-Metalloprotease P-I Single-Domain Antibodies: Tools for Next-Generation Snakebite Antivenoms

In order to address the global antivenom crisis, novel antivenoms need to present high therapeutic efficacy, broad neutralization ability against systemic and local damage, sufficient safety, and cost-effectiveness. Due to biological characteristics of camelid single-domain antibodies (VHH) such as...

Descripción completa

Detalles Bibliográficos
Autores principales: Silva, Marcela C. S., Pereira, Soraya S., Gouveia, Marilia P., Luiz, Marcos B., Sousa, Rosa M. O., Kayano, Anderson M., Francisco, Aleff F., Prado, Nidiane D. R., Dill, Leandro S. M., Fontes, Marcos R. M., Zanchi, Fernando B., Stabeli, Rodrigo G., Soares, Andreimar M., Zuliani, Juliana P., Fernandes, Carla F. C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9325618/
https://www.ncbi.nlm.nih.gov/pubmed/35909472
http://dx.doi.org/10.1155/2022/2748962
_version_ 1784757095891992576
author Silva, Marcela C. S.
Pereira, Soraya S.
Gouveia, Marilia P.
Luiz, Marcos B.
Sousa, Rosa M. O.
Kayano, Anderson M.
Francisco, Aleff F.
Prado, Nidiane D. R.
Dill, Leandro S. M.
Fontes, Marcos R. M.
Zanchi, Fernando B.
Stabeli, Rodrigo G.
Soares, Andreimar M.
Zuliani, Juliana P.
Fernandes, Carla F. C.
author_facet Silva, Marcela C. S.
Pereira, Soraya S.
Gouveia, Marilia P.
Luiz, Marcos B.
Sousa, Rosa M. O.
Kayano, Anderson M.
Francisco, Aleff F.
Prado, Nidiane D. R.
Dill, Leandro S. M.
Fontes, Marcos R. M.
Zanchi, Fernando B.
Stabeli, Rodrigo G.
Soares, Andreimar M.
Zuliani, Juliana P.
Fernandes, Carla F. C.
author_sort Silva, Marcela C. S.
collection PubMed
description In order to address the global antivenom crisis, novel antivenoms need to present high therapeutic efficacy, broad neutralization ability against systemic and local damage, sufficient safety, and cost-effectiveness. Due to biological characteristics of camelid single-domain antibodies (VHH) such as high affinity, their ability to penetrate dense tissues, and facility for genetic manipulation, their application in antivenoms has expanded considerably. VHHs that are active against the metalloprotease BjussuMP-II from the snake Bothrops jararacussu were selected. After isolation of BjussuMP-II, a camelid was immunized with the purified toxin in order to construct the recombinant phage library. Following a round of biopanning, 52% of the selected clones were able to recognize BjussuMP-II in an ELISA assay. After sequencing, seven sequence profiles were identified. One selected clone (VHH61) showed cross-reactivity to B. brazili venom, but did not recognize the Crotalus and Lachesis genera, indicating specificity for the Bothrops genus. Through in vitro tests, the capacity to neutralize the toxicity triggered by BjussuMP-II was observed. Circular dichroism spectroscopy indicated a robust secondary structure for VHH61, and the calculated melting temperature (T(M)) for the clone was 56.4°C. In silico analysis, through molecular docking of anti-BjussuMP-II VHHs with metalloprotease, revealed their potential interaction with amino acids present in regions critical for the toxin's conformation and stability. The findings suggest that anti-BjussuMP-II VHHs may be beneficial in the development of next-generation antivenoms.
format Online
Article
Text
id pubmed-9325618
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Hindawi
record_format MEDLINE/PubMed
spelling pubmed-93256182022-07-28 Anti-Metalloprotease P-I Single-Domain Antibodies: Tools for Next-Generation Snakebite Antivenoms Silva, Marcela C. S. Pereira, Soraya S. Gouveia, Marilia P. Luiz, Marcos B. Sousa, Rosa M. O. Kayano, Anderson M. Francisco, Aleff F. Prado, Nidiane D. R. Dill, Leandro S. M. Fontes, Marcos R. M. Zanchi, Fernando B. Stabeli, Rodrigo G. Soares, Andreimar M. Zuliani, Juliana P. Fernandes, Carla F. C. Biomed Res Int Research Article In order to address the global antivenom crisis, novel antivenoms need to present high therapeutic efficacy, broad neutralization ability against systemic and local damage, sufficient safety, and cost-effectiveness. Due to biological characteristics of camelid single-domain antibodies (VHH) such as high affinity, their ability to penetrate dense tissues, and facility for genetic manipulation, their application in antivenoms has expanded considerably. VHHs that are active against the metalloprotease BjussuMP-II from the snake Bothrops jararacussu were selected. After isolation of BjussuMP-II, a camelid was immunized with the purified toxin in order to construct the recombinant phage library. Following a round of biopanning, 52% of the selected clones were able to recognize BjussuMP-II in an ELISA assay. After sequencing, seven sequence profiles were identified. One selected clone (VHH61) showed cross-reactivity to B. brazili venom, but did not recognize the Crotalus and Lachesis genera, indicating specificity for the Bothrops genus. Through in vitro tests, the capacity to neutralize the toxicity triggered by BjussuMP-II was observed. Circular dichroism spectroscopy indicated a robust secondary structure for VHH61, and the calculated melting temperature (T(M)) for the clone was 56.4°C. In silico analysis, through molecular docking of anti-BjussuMP-II VHHs with metalloprotease, revealed their potential interaction with amino acids present in regions critical for the toxin's conformation and stability. The findings suggest that anti-BjussuMP-II VHHs may be beneficial in the development of next-generation antivenoms. Hindawi 2022-07-19 /pmc/articles/PMC9325618/ /pubmed/35909472 http://dx.doi.org/10.1155/2022/2748962 Text en Copyright © 2022 Marcela C. S. Silva et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Silva, Marcela C. S.
Pereira, Soraya S.
Gouveia, Marilia P.
Luiz, Marcos B.
Sousa, Rosa M. O.
Kayano, Anderson M.
Francisco, Aleff F.
Prado, Nidiane D. R.
Dill, Leandro S. M.
Fontes, Marcos R. M.
Zanchi, Fernando B.
Stabeli, Rodrigo G.
Soares, Andreimar M.
Zuliani, Juliana P.
Fernandes, Carla F. C.
Anti-Metalloprotease P-I Single-Domain Antibodies: Tools for Next-Generation Snakebite Antivenoms
title Anti-Metalloprotease P-I Single-Domain Antibodies: Tools for Next-Generation Snakebite Antivenoms
title_full Anti-Metalloprotease P-I Single-Domain Antibodies: Tools for Next-Generation Snakebite Antivenoms
title_fullStr Anti-Metalloprotease P-I Single-Domain Antibodies: Tools for Next-Generation Snakebite Antivenoms
title_full_unstemmed Anti-Metalloprotease P-I Single-Domain Antibodies: Tools for Next-Generation Snakebite Antivenoms
title_short Anti-Metalloprotease P-I Single-Domain Antibodies: Tools for Next-Generation Snakebite Antivenoms
title_sort anti-metalloprotease p-i single-domain antibodies: tools for next-generation snakebite antivenoms
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9325618/
https://www.ncbi.nlm.nih.gov/pubmed/35909472
http://dx.doi.org/10.1155/2022/2748962
work_keys_str_mv AT silvamarcelacs antimetalloproteasepisingledomainantibodiestoolsfornextgenerationsnakebiteantivenoms
AT pereirasorayas antimetalloproteasepisingledomainantibodiestoolsfornextgenerationsnakebiteantivenoms
AT gouveiamariliap antimetalloproteasepisingledomainantibodiestoolsfornextgenerationsnakebiteantivenoms
AT luizmarcosb antimetalloproteasepisingledomainantibodiestoolsfornextgenerationsnakebiteantivenoms
AT sousarosamo antimetalloproteasepisingledomainantibodiestoolsfornextgenerationsnakebiteantivenoms
AT kayanoandersonm antimetalloproteasepisingledomainantibodiestoolsfornextgenerationsnakebiteantivenoms
AT franciscoalefff antimetalloproteasepisingledomainantibodiestoolsfornextgenerationsnakebiteantivenoms
AT pradonidianedr antimetalloproteasepisingledomainantibodiestoolsfornextgenerationsnakebiteantivenoms
AT dillleandrosm antimetalloproteasepisingledomainantibodiestoolsfornextgenerationsnakebiteantivenoms
AT fontesmarcosrm antimetalloproteasepisingledomainantibodiestoolsfornextgenerationsnakebiteantivenoms
AT zanchifernandob antimetalloproteasepisingledomainantibodiestoolsfornextgenerationsnakebiteantivenoms
AT stabelirodrigog antimetalloproteasepisingledomainantibodiestoolsfornextgenerationsnakebiteantivenoms
AT soaresandreimarm antimetalloproteasepisingledomainantibodiestoolsfornextgenerationsnakebiteantivenoms
AT zulianijulianap antimetalloproteasepisingledomainantibodiestoolsfornextgenerationsnakebiteantivenoms
AT fernandescarlafc antimetalloproteasepisingledomainantibodiestoolsfornextgenerationsnakebiteantivenoms