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Enter the Dragon: The Dynamic and Multifunctional Evolution of Anguimorpha Lizard Venoms

While snake venoms have been the subject of intense study, comparatively little work has been done on lizard venoms. In this study, we have examined the structural and functional diversification of anguimorph lizard venoms and associated toxins, and related these results to dentition and predatory e...

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Autores principales: Koludarov, Ivan, Jackson, Timothy NW, op den Brouw, Bianca, Dobson, James, Dashevsky, Daniel, Arbuckle, Kevin, Clemente, Christofer J., Stockdale, Edward J., Cochran, Chip, Debono, Jordan, Stephens, Carson, Panagides, Nadya, Li, Bin, Roy Manchadi, Mary-Louise, Violette, Aude, Fourmy, Rudy, Hendrikx, Iwan, Nouwens, Amanda, Clements, Judith, Martelli, Paolo, Kwok, Hang Fai, Fry, Bryan G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5577576/
https://www.ncbi.nlm.nih.gov/pubmed/28783084
http://dx.doi.org/10.3390/toxins9080242
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author Koludarov, Ivan
Jackson, Timothy NW
op den Brouw, Bianca
Dobson, James
Dashevsky, Daniel
Arbuckle, Kevin
Clemente, Christofer J.
Stockdale, Edward J.
Cochran, Chip
Debono, Jordan
Stephens, Carson
Panagides, Nadya
Li, Bin
Roy Manchadi, Mary-Louise
Violette, Aude
Fourmy, Rudy
Hendrikx, Iwan
Nouwens, Amanda
Clements, Judith
Martelli, Paolo
Kwok, Hang Fai
Fry, Bryan G.
author_facet Koludarov, Ivan
Jackson, Timothy NW
op den Brouw, Bianca
Dobson, James
Dashevsky, Daniel
Arbuckle, Kevin
Clemente, Christofer J.
Stockdale, Edward J.
Cochran, Chip
Debono, Jordan
Stephens, Carson
Panagides, Nadya
Li, Bin
Roy Manchadi, Mary-Louise
Violette, Aude
Fourmy, Rudy
Hendrikx, Iwan
Nouwens, Amanda
Clements, Judith
Martelli, Paolo
Kwok, Hang Fai
Fry, Bryan G.
author_sort Koludarov, Ivan
collection PubMed
description While snake venoms have been the subject of intense study, comparatively little work has been done on lizard venoms. In this study, we have examined the structural and functional diversification of anguimorph lizard venoms and associated toxins, and related these results to dentition and predatory ecology. Venom composition was shown to be highly variable across the 20 species of Heloderma, Lanthanotus, and Varanus included in our study. While kallikrein enzymes were ubiquitous, they were also a particularly multifunctional toxin type, with differential activities on enzyme substrates and also ability to degrade alpha or beta chains of fibrinogen that reflects structural variability. Examination of other toxin types also revealed similar variability in their presence and activity levels. The high level of venom chemistry variation in varanid lizards compared to that of helodermatid lizards suggests that venom may be subject to different selection pressures in these two families. These results not only contribute to our understanding of venom evolution but also reveal anguimorph lizard venoms to be rich sources of novel bioactive molecules with potential as drug design and development lead compounds.
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spelling pubmed-55775762017-09-05 Enter the Dragon: The Dynamic and Multifunctional Evolution of Anguimorpha Lizard Venoms Koludarov, Ivan Jackson, Timothy NW op den Brouw, Bianca Dobson, James Dashevsky, Daniel Arbuckle, Kevin Clemente, Christofer J. Stockdale, Edward J. Cochran, Chip Debono, Jordan Stephens, Carson Panagides, Nadya Li, Bin Roy Manchadi, Mary-Louise Violette, Aude Fourmy, Rudy Hendrikx, Iwan Nouwens, Amanda Clements, Judith Martelli, Paolo Kwok, Hang Fai Fry, Bryan G. Toxins (Basel) Article While snake venoms have been the subject of intense study, comparatively little work has been done on lizard venoms. In this study, we have examined the structural and functional diversification of anguimorph lizard venoms and associated toxins, and related these results to dentition and predatory ecology. Venom composition was shown to be highly variable across the 20 species of Heloderma, Lanthanotus, and Varanus included in our study. While kallikrein enzymes were ubiquitous, they were also a particularly multifunctional toxin type, with differential activities on enzyme substrates and also ability to degrade alpha or beta chains of fibrinogen that reflects structural variability. Examination of other toxin types also revealed similar variability in their presence and activity levels. The high level of venom chemistry variation in varanid lizards compared to that of helodermatid lizards suggests that venom may be subject to different selection pressures in these two families. These results not only contribute to our understanding of venom evolution but also reveal anguimorph lizard venoms to be rich sources of novel bioactive molecules with potential as drug design and development lead compounds. MDPI 2017-08-06 /pmc/articles/PMC5577576/ /pubmed/28783084 http://dx.doi.org/10.3390/toxins9080242 Text en © 2017 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 (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Koludarov, Ivan
Jackson, Timothy NW
op den Brouw, Bianca
Dobson, James
Dashevsky, Daniel
Arbuckle, Kevin
Clemente, Christofer J.
Stockdale, Edward J.
Cochran, Chip
Debono, Jordan
Stephens, Carson
Panagides, Nadya
Li, Bin
Roy Manchadi, Mary-Louise
Violette, Aude
Fourmy, Rudy
Hendrikx, Iwan
Nouwens, Amanda
Clements, Judith
Martelli, Paolo
Kwok, Hang Fai
Fry, Bryan G.
Enter the Dragon: The Dynamic and Multifunctional Evolution of Anguimorpha Lizard Venoms
title Enter the Dragon: The Dynamic and Multifunctional Evolution of Anguimorpha Lizard Venoms
title_full Enter the Dragon: The Dynamic and Multifunctional Evolution of Anguimorpha Lizard Venoms
title_fullStr Enter the Dragon: The Dynamic and Multifunctional Evolution of Anguimorpha Lizard Venoms
title_full_unstemmed Enter the Dragon: The Dynamic and Multifunctional Evolution of Anguimorpha Lizard Venoms
title_short Enter the Dragon: The Dynamic and Multifunctional Evolution of Anguimorpha Lizard Venoms
title_sort enter the dragon: the dynamic and multifunctional evolution of anguimorpha lizard venoms
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5577576/
https://www.ncbi.nlm.nih.gov/pubmed/28783084
http://dx.doi.org/10.3390/toxins9080242
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