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Novel Bradykinin-Potentiating Peptides and Three-Finger Toxins from Viper Venom: Combined NGS Venom Gland Transcriptomics and Quantitative Venom Proteomics of the Azemiops feae Viper

Feae’s viper Azemipos feae belongs to the Azemiopinae subfamily of the Viperidae family. The effects of Viperidae venoms are mostly coagulopathic with limited neurotoxicity manifested by phospholipases A2. From A. feae venom, we have earlier isolated azemiopsin, a novel neurotoxin inhibiting the nic...

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Autores principales: Babenko, Vladislav V., Ziganshin, Rustam H., Weise, Christoph, Dyachenko, Igor, Shaykhutdinova, Elvira, Murashev, Arkady N., Zhmak, Maxim, Starkov, Vladislav, Hoang, Anh Ngoc, Tsetlin, Victor, Utkin, Yuri
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7460416/
https://www.ncbi.nlm.nih.gov/pubmed/32731454
http://dx.doi.org/10.3390/biomedicines8080249
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author Babenko, Vladislav V.
Ziganshin, Rustam H.
Weise, Christoph
Dyachenko, Igor
Shaykhutdinova, Elvira
Murashev, Arkady N.
Zhmak, Maxim
Starkov, Vladislav
Hoang, Anh Ngoc
Tsetlin, Victor
Utkin, Yuri
author_facet Babenko, Vladislav V.
Ziganshin, Rustam H.
Weise, Christoph
Dyachenko, Igor
Shaykhutdinova, Elvira
Murashev, Arkady N.
Zhmak, Maxim
Starkov, Vladislav
Hoang, Anh Ngoc
Tsetlin, Victor
Utkin, Yuri
author_sort Babenko, Vladislav V.
collection PubMed
description Feae’s viper Azemipos feae belongs to the Azemiopinae subfamily of the Viperidae family. The effects of Viperidae venoms are mostly coagulopathic with limited neurotoxicity manifested by phospholipases A2. From A. feae venom, we have earlier isolated azemiopsin, a novel neurotoxin inhibiting the nicotinic acetylcholine receptor. To characterize other A. feae toxins, we applied label-free quantitative proteomics, which revealed 120 unique proteins, the most abundant being serine proteinases and phospholipases A2. In total, toxins representing 14 families were identified, among which bradykinin-potentiating peptides with unique amino acid sequences possessed biological activity in vivo. The proteomic analysis revealed also basal (commonly known as non-conventional) three-finger toxins belonging to the group of those possessing neurotoxic activity. This is the first indication of the presence of three-finger neurotoxins in viper venom. In parallel, the transcriptomic analysis of venom gland performed by Illumina next-generation sequencing further revealed 206 putative venom transcripts. Together, the study unveiled the venom proteome and venom gland transciptome of A. feae, which in general resemble those of other snakes from the Viperidae family. However, new toxins not found earlier in viper venom and including three-finger toxins and unusual bradykinin-potentiating peptides were discovered.
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spelling pubmed-74604162020-09-03 Novel Bradykinin-Potentiating Peptides and Three-Finger Toxins from Viper Venom: Combined NGS Venom Gland Transcriptomics and Quantitative Venom Proteomics of the Azemiops feae Viper Babenko, Vladislav V. Ziganshin, Rustam H. Weise, Christoph Dyachenko, Igor Shaykhutdinova, Elvira Murashev, Arkady N. Zhmak, Maxim Starkov, Vladislav Hoang, Anh Ngoc Tsetlin, Victor Utkin, Yuri Biomedicines Article Feae’s viper Azemipos feae belongs to the Azemiopinae subfamily of the Viperidae family. The effects of Viperidae venoms are mostly coagulopathic with limited neurotoxicity manifested by phospholipases A2. From A. feae venom, we have earlier isolated azemiopsin, a novel neurotoxin inhibiting the nicotinic acetylcholine receptor. To characterize other A. feae toxins, we applied label-free quantitative proteomics, which revealed 120 unique proteins, the most abundant being serine proteinases and phospholipases A2. In total, toxins representing 14 families were identified, among which bradykinin-potentiating peptides with unique amino acid sequences possessed biological activity in vivo. The proteomic analysis revealed also basal (commonly known as non-conventional) three-finger toxins belonging to the group of those possessing neurotoxic activity. This is the first indication of the presence of three-finger neurotoxins in viper venom. In parallel, the transcriptomic analysis of venom gland performed by Illumina next-generation sequencing further revealed 206 putative venom transcripts. Together, the study unveiled the venom proteome and venom gland transciptome of A. feae, which in general resemble those of other snakes from the Viperidae family. However, new toxins not found earlier in viper venom and including three-finger toxins and unusual bradykinin-potentiating peptides were discovered. MDPI 2020-07-28 /pmc/articles/PMC7460416/ /pubmed/32731454 http://dx.doi.org/10.3390/biomedicines8080249 Text en © 2020 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
Babenko, Vladislav V.
Ziganshin, Rustam H.
Weise, Christoph
Dyachenko, Igor
Shaykhutdinova, Elvira
Murashev, Arkady N.
Zhmak, Maxim
Starkov, Vladislav
Hoang, Anh Ngoc
Tsetlin, Victor
Utkin, Yuri
Novel Bradykinin-Potentiating Peptides and Three-Finger Toxins from Viper Venom: Combined NGS Venom Gland Transcriptomics and Quantitative Venom Proteomics of the Azemiops feae Viper
title Novel Bradykinin-Potentiating Peptides and Three-Finger Toxins from Viper Venom: Combined NGS Venom Gland Transcriptomics and Quantitative Venom Proteomics of the Azemiops feae Viper
title_full Novel Bradykinin-Potentiating Peptides and Three-Finger Toxins from Viper Venom: Combined NGS Venom Gland Transcriptomics and Quantitative Venom Proteomics of the Azemiops feae Viper
title_fullStr Novel Bradykinin-Potentiating Peptides and Three-Finger Toxins from Viper Venom: Combined NGS Venom Gland Transcriptomics and Quantitative Venom Proteomics of the Azemiops feae Viper
title_full_unstemmed Novel Bradykinin-Potentiating Peptides and Three-Finger Toxins from Viper Venom: Combined NGS Venom Gland Transcriptomics and Quantitative Venom Proteomics of the Azemiops feae Viper
title_short Novel Bradykinin-Potentiating Peptides and Three-Finger Toxins from Viper Venom: Combined NGS Venom Gland Transcriptomics and Quantitative Venom Proteomics of the Azemiops feae Viper
title_sort novel bradykinin-potentiating peptides and three-finger toxins from viper venom: combined ngs venom gland transcriptomics and quantitative venom proteomics of the azemiops feae viper
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7460416/
https://www.ncbi.nlm.nih.gov/pubmed/32731454
http://dx.doi.org/10.3390/biomedicines8080249
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