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Ophiophagus hannah Venom: Proteome, Components Bound by Naja kaouthia Antivenin and Neutralization by N. kaouthia Neurotoxin-Specific Human ScFv

Venomous snakebites are an important health problem in tropical and subtropical countries. King cobra (Ophiophagus hannah) is the largest venomous snake found in South and Southeast Asia. In this study, the O. hannah venom proteome and the venom components cross-reactive to N. kaouthia monospecific...

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Autores principales: Danpaiboon, Witchuda, Reamtong, Onrapak, Sookrung, Nitat, Seesuay, Watee, Sakolvaree, Yuwaporn, Thanongsaksrikul, Jeeraphong, Dong-din-on, Fonthip, Srimanote, Potjanee, Thueng-in, Kanyarat, Chaicumpa, Wanpen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4052251/
https://www.ncbi.nlm.nih.gov/pubmed/24828754
http://dx.doi.org/10.3390/toxins6051526
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author Danpaiboon, Witchuda
Reamtong, Onrapak
Sookrung, Nitat
Seesuay, Watee
Sakolvaree, Yuwaporn
Thanongsaksrikul, Jeeraphong
Dong-din-on, Fonthip
Srimanote, Potjanee
Thueng-in, Kanyarat
Chaicumpa, Wanpen
author_facet Danpaiboon, Witchuda
Reamtong, Onrapak
Sookrung, Nitat
Seesuay, Watee
Sakolvaree, Yuwaporn
Thanongsaksrikul, Jeeraphong
Dong-din-on, Fonthip
Srimanote, Potjanee
Thueng-in, Kanyarat
Chaicumpa, Wanpen
author_sort Danpaiboon, Witchuda
collection PubMed
description Venomous snakebites are an important health problem in tropical and subtropical countries. King cobra (Ophiophagus hannah) is the largest venomous snake found in South and Southeast Asia. In this study, the O. hannah venom proteome and the venom components cross-reactive to N. kaouthia monospecific antivenin were studied. O. hannah venom consisted of 14 different protein families, including three finger toxins, phospholipases, cysteine-rich secretory proteins, cobra venom factor, muscarinic toxin, L-amino acid oxidase, hypothetical proteins, low cysteine protein, phosphodiesterase, proteases, vespryn toxin, Kunitz, growth factor activators and others (coagulation factor, endonuclease, 5’-nucleotidase). N. kaouthia antivenin recognized several functionally different O. hannah venom proteins and mediated paratherapeutic efficacy by rescuing the O. hannah envenomed mice from lethality. An engineered human ScFv specific to N. kaouthia long neurotoxin (NkLN-HuScFv) cross-neutralized the O. hannah venom and extricated the O. hannah envenomed mice from death in a dose escalation manner. Homology modeling and molecular docking revealed that NkLN-HuScFv interacted with residues in loops 2 and 3 of the neurotoxins of both snake species, which are important for neuronal acetylcholine receptor binding. The data of this study are useful for snakebite treatment when and where the polyspecific antivenin is not available. Because the supply of horse-derived antivenin is limited and the preparation may cause some adverse effects in recipients, a cocktail of recombinant human ScFvs for various toxic venom components shared by different venomous snakes, exemplified by the in vitro produced NkLN-HuScFv in this study, should contribute to a possible future route for an improved alternative to the antivenins.
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spelling pubmed-40522512014-06-11 Ophiophagus hannah Venom: Proteome, Components Bound by Naja kaouthia Antivenin and Neutralization by N. kaouthia Neurotoxin-Specific Human ScFv Danpaiboon, Witchuda Reamtong, Onrapak Sookrung, Nitat Seesuay, Watee Sakolvaree, Yuwaporn Thanongsaksrikul, Jeeraphong Dong-din-on, Fonthip Srimanote, Potjanee Thueng-in, Kanyarat Chaicumpa, Wanpen Toxins (Basel) Article Venomous snakebites are an important health problem in tropical and subtropical countries. King cobra (Ophiophagus hannah) is the largest venomous snake found in South and Southeast Asia. In this study, the O. hannah venom proteome and the venom components cross-reactive to N. kaouthia monospecific antivenin were studied. O. hannah venom consisted of 14 different protein families, including three finger toxins, phospholipases, cysteine-rich secretory proteins, cobra venom factor, muscarinic toxin, L-amino acid oxidase, hypothetical proteins, low cysteine protein, phosphodiesterase, proteases, vespryn toxin, Kunitz, growth factor activators and others (coagulation factor, endonuclease, 5’-nucleotidase). N. kaouthia antivenin recognized several functionally different O. hannah venom proteins and mediated paratherapeutic efficacy by rescuing the O. hannah envenomed mice from lethality. An engineered human ScFv specific to N. kaouthia long neurotoxin (NkLN-HuScFv) cross-neutralized the O. hannah venom and extricated the O. hannah envenomed mice from death in a dose escalation manner. Homology modeling and molecular docking revealed that NkLN-HuScFv interacted with residues in loops 2 and 3 of the neurotoxins of both snake species, which are important for neuronal acetylcholine receptor binding. The data of this study are useful for snakebite treatment when and where the polyspecific antivenin is not available. Because the supply of horse-derived antivenin is limited and the preparation may cause some adverse effects in recipients, a cocktail of recombinant human ScFvs for various toxic venom components shared by different venomous snakes, exemplified by the in vitro produced NkLN-HuScFv in this study, should contribute to a possible future route for an improved alternative to the antivenins. MDPI 2014-05-13 /pmc/articles/PMC4052251/ /pubmed/24828754 http://dx.doi.org/10.3390/toxins6051526 Text en © 2014 by the authors; licensee MDPI, Basel, Switzerland. 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
Danpaiboon, Witchuda
Reamtong, Onrapak
Sookrung, Nitat
Seesuay, Watee
Sakolvaree, Yuwaporn
Thanongsaksrikul, Jeeraphong
Dong-din-on, Fonthip
Srimanote, Potjanee
Thueng-in, Kanyarat
Chaicumpa, Wanpen
Ophiophagus hannah Venom: Proteome, Components Bound by Naja kaouthia Antivenin and Neutralization by N. kaouthia Neurotoxin-Specific Human ScFv
title Ophiophagus hannah Venom: Proteome, Components Bound by Naja kaouthia Antivenin and Neutralization by N. kaouthia Neurotoxin-Specific Human ScFv
title_full Ophiophagus hannah Venom: Proteome, Components Bound by Naja kaouthia Antivenin and Neutralization by N. kaouthia Neurotoxin-Specific Human ScFv
title_fullStr Ophiophagus hannah Venom: Proteome, Components Bound by Naja kaouthia Antivenin and Neutralization by N. kaouthia Neurotoxin-Specific Human ScFv
title_full_unstemmed Ophiophagus hannah Venom: Proteome, Components Bound by Naja kaouthia Antivenin and Neutralization by N. kaouthia Neurotoxin-Specific Human ScFv
title_short Ophiophagus hannah Venom: Proteome, Components Bound by Naja kaouthia Antivenin and Neutralization by N. kaouthia Neurotoxin-Specific Human ScFv
title_sort ophiophagus hannah venom: proteome, components bound by naja kaouthia antivenin and neutralization by n. kaouthia neurotoxin-specific human scfv
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4052251/
https://www.ncbi.nlm.nih.gov/pubmed/24828754
http://dx.doi.org/10.3390/toxins6051526
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