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Humanized-Single Domain Antibodies (VH/V(H)H) that Bound Specifically to Naja kaouthia Phospholipase A2 and Neutralized the Enzymatic Activity

Naja kaouthia (monocled cobra) venom contains many isoforms of secreted phospholipase A2 (sPLA(2)). The PLA(2) exerts several pharmacologic and toxic effects in the snake bitten subject, dependent or independent on the enzymatic activity. N. kaouthia venom appeared in two protein profiles, P3 and P5...

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Autores principales: Chavanayarn, Charnwit, Thanongsaksrikul, Jeeraphong, Thueng-in, Kanyarat, Bangphoomi, Kunan, Sookrung, Nitat, Chaicumpa, Wanpen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3407892/
https://www.ncbi.nlm.nih.gov/pubmed/22852068
http://dx.doi.org/10.3390/toxins4070554
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author Chavanayarn, Charnwit
Thanongsaksrikul, Jeeraphong
Thueng-in, Kanyarat
Bangphoomi, Kunan
Sookrung, Nitat
Chaicumpa, Wanpen
author_facet Chavanayarn, Charnwit
Thanongsaksrikul, Jeeraphong
Thueng-in, Kanyarat
Bangphoomi, Kunan
Sookrung, Nitat
Chaicumpa, Wanpen
author_sort Chavanayarn, Charnwit
collection PubMed
description Naja kaouthia (monocled cobra) venom contains many isoforms of secreted phospholipase A2 (sPLA(2)). The PLA(2) exerts several pharmacologic and toxic effects in the snake bitten subject, dependent or independent on the enzymatic activity. N. kaouthia venom appeared in two protein profiles, P3 and P5, after fractionating the venom by ion exchange column chromatography. In this study, phage clones displaying humanized-camel single domain antibodies (VH/V(H)H) that bound specifically to the P3 and P5 were selected from a humanized-camel VH/V(H)H phage display library. Two phagemid transfected E. coli clones (P3-1 and P3-3) produced humanized-V(H)H, while another clone (P3-7) produced humanized-VH. At the optimal venom:antibody ratio, the VH/V(H)H purified from the E. coli homogenates neutralized PLA(2) enzyme activity comparable to the horse immune serum against the N. kaouthia holo-venom. Homology modeling and molecular docking revealed that the VH/V(H)H covered the areas around the PLA(2) catalytic groove and inserted their Complementarity Determining Regions (CDRs) into the enzymatic cleft. It is envisaged that the VH/V(H)H would ameliorate/abrogate the principal toxicity of the venom PLA(2) (membrane phospholipid catabolism leading to cellular and subcellular membrane damage which consequently causes hemolysis, hemorrhage, and dermo-/myo-necrosis), if they were used for passive immunotherapy of the cobra bitten victim. The speculation needs further investigations.
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spelling pubmed-34078922012-07-31 Humanized-Single Domain Antibodies (VH/V(H)H) that Bound Specifically to Naja kaouthia Phospholipase A2 and Neutralized the Enzymatic Activity Chavanayarn, Charnwit Thanongsaksrikul, Jeeraphong Thueng-in, Kanyarat Bangphoomi, Kunan Sookrung, Nitat Chaicumpa, Wanpen Toxins (Basel) Article Naja kaouthia (monocled cobra) venom contains many isoforms of secreted phospholipase A2 (sPLA(2)). The PLA(2) exerts several pharmacologic and toxic effects in the snake bitten subject, dependent or independent on the enzymatic activity. N. kaouthia venom appeared in two protein profiles, P3 and P5, after fractionating the venom by ion exchange column chromatography. In this study, phage clones displaying humanized-camel single domain antibodies (VH/V(H)H) that bound specifically to the P3 and P5 were selected from a humanized-camel VH/V(H)H phage display library. Two phagemid transfected E. coli clones (P3-1 and P3-3) produced humanized-V(H)H, while another clone (P3-7) produced humanized-VH. At the optimal venom:antibody ratio, the VH/V(H)H purified from the E. coli homogenates neutralized PLA(2) enzyme activity comparable to the horse immune serum against the N. kaouthia holo-venom. Homology modeling and molecular docking revealed that the VH/V(H)H covered the areas around the PLA(2) catalytic groove and inserted their Complementarity Determining Regions (CDRs) into the enzymatic cleft. It is envisaged that the VH/V(H)H would ameliorate/abrogate the principal toxicity of the venom PLA(2) (membrane phospholipid catabolism leading to cellular and subcellular membrane damage which consequently causes hemolysis, hemorrhage, and dermo-/myo-necrosis), if they were used for passive immunotherapy of the cobra bitten victim. The speculation needs further investigations. MDPI 2012-07-19 /pmc/articles/PMC3407892/ /pubmed/22852068 http://dx.doi.org/10.3390/toxins4070554 Text en © 2012 by the authors; licensee MDPI, Basel, Switzerland. http://creativecommons.org/licenses/by/3.0/ This article is an open-access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/3.0/).
spellingShingle Article
Chavanayarn, Charnwit
Thanongsaksrikul, Jeeraphong
Thueng-in, Kanyarat
Bangphoomi, Kunan
Sookrung, Nitat
Chaicumpa, Wanpen
Humanized-Single Domain Antibodies (VH/V(H)H) that Bound Specifically to Naja kaouthia Phospholipase A2 and Neutralized the Enzymatic Activity
title Humanized-Single Domain Antibodies (VH/V(H)H) that Bound Specifically to Naja kaouthia Phospholipase A2 and Neutralized the Enzymatic Activity
title_full Humanized-Single Domain Antibodies (VH/V(H)H) that Bound Specifically to Naja kaouthia Phospholipase A2 and Neutralized the Enzymatic Activity
title_fullStr Humanized-Single Domain Antibodies (VH/V(H)H) that Bound Specifically to Naja kaouthia Phospholipase A2 and Neutralized the Enzymatic Activity
title_full_unstemmed Humanized-Single Domain Antibodies (VH/V(H)H) that Bound Specifically to Naja kaouthia Phospholipase A2 and Neutralized the Enzymatic Activity
title_short Humanized-Single Domain Antibodies (VH/V(H)H) that Bound Specifically to Naja kaouthia Phospholipase A2 and Neutralized the Enzymatic Activity
title_sort humanized-single domain antibodies (vh/v(h)h) that bound specifically to naja kaouthia phospholipase a2 and neutralized the enzymatic activity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3407892/
https://www.ncbi.nlm.nih.gov/pubmed/22852068
http://dx.doi.org/10.3390/toxins4070554
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