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Whole Transcriptome of the Venom Gland from Urodacus yaschenkoi Scorpion

Australian scorpion venoms have been poorly studied, probably because they do not pose an evident threat to humans. In addition, the continent has other medically important venomous animals capable of causing serious health problems. Urodacus yaschenkoi belongs to the most widely distributed family...

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Autores principales: Luna-Ramírez, Karen, Quintero-Hernández, Verónica, Juárez-González, Víctor Rivelino, Possani, Lourival D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4447460/
https://www.ncbi.nlm.nih.gov/pubmed/26020943
http://dx.doi.org/10.1371/journal.pone.0127883
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author Luna-Ramírez, Karen
Quintero-Hernández, Verónica
Juárez-González, Víctor Rivelino
Possani, Lourival D.
author_facet Luna-Ramírez, Karen
Quintero-Hernández, Verónica
Juárez-González, Víctor Rivelino
Possani, Lourival D.
author_sort Luna-Ramírez, Karen
collection PubMed
description Australian scorpion venoms have been poorly studied, probably because they do not pose an evident threat to humans. In addition, the continent has other medically important venomous animals capable of causing serious health problems. Urodacus yaschenkoi belongs to the most widely distributed family of Australian scorpions (Urodacidae) and it is found all over the continent, making it a useful model system for studying venom composition and evolution. This communication reports the whole set of mRNA transcripts produced by the venom gland. U. yaschenkoi venom is as complex as its overseas counterparts. These transcripts certainly code for several components similar to known scorpion venom components, such as: alpha-KTxs, beta-KTxs, calcins, protease inhibitors, antimicrobial peptides, sodium-channel toxins, toxin-like peptides, allergens, La1-like, hyaluronidases, ribosomal proteins, proteasome components and proteins related to cellular processes. A comparison with the venom gland transcriptome of Centruroides noxius (Buthidae) showed that these two scorpions have similar components related to biological processes, although important differences occur among the venom toxins. In contrast, a comparison with sequences reported for Urodacus manicatus revealed that these two Urodacidae species possess the same subfamily of scorpion toxins. A comparison with sequences of an U. yaschenkoi cDNA library previously reported by our group showed that both techniques are reliable for the description of the venom components, but the whole transcriptome generated with Next Generation Sequencing platform provides sequences of all transcripts expressed. Several of which were identified in the proteome, but many more transcripts were identified including uncommon transcripts. The information reported here constitutes a reference for non-Buthidae scorpion venoms, providing a comprehensive view of genes that are involved in venom production. Further, this work identifies new putative bioactive compounds that could be used to seed research into new pharmacological compounds and increase our understanding of the function of different ion channels.
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spelling pubmed-44474602015-06-09 Whole Transcriptome of the Venom Gland from Urodacus yaschenkoi Scorpion Luna-Ramírez, Karen Quintero-Hernández, Verónica Juárez-González, Víctor Rivelino Possani, Lourival D. PLoS One Research Article Australian scorpion venoms have been poorly studied, probably because they do not pose an evident threat to humans. In addition, the continent has other medically important venomous animals capable of causing serious health problems. Urodacus yaschenkoi belongs to the most widely distributed family of Australian scorpions (Urodacidae) and it is found all over the continent, making it a useful model system for studying venom composition and evolution. This communication reports the whole set of mRNA transcripts produced by the venom gland. U. yaschenkoi venom is as complex as its overseas counterparts. These transcripts certainly code for several components similar to known scorpion venom components, such as: alpha-KTxs, beta-KTxs, calcins, protease inhibitors, antimicrobial peptides, sodium-channel toxins, toxin-like peptides, allergens, La1-like, hyaluronidases, ribosomal proteins, proteasome components and proteins related to cellular processes. A comparison with the venom gland transcriptome of Centruroides noxius (Buthidae) showed that these two scorpions have similar components related to biological processes, although important differences occur among the venom toxins. In contrast, a comparison with sequences reported for Urodacus manicatus revealed that these two Urodacidae species possess the same subfamily of scorpion toxins. A comparison with sequences of an U. yaschenkoi cDNA library previously reported by our group showed that both techniques are reliable for the description of the venom components, but the whole transcriptome generated with Next Generation Sequencing platform provides sequences of all transcripts expressed. Several of which were identified in the proteome, but many more transcripts were identified including uncommon transcripts. The information reported here constitutes a reference for non-Buthidae scorpion venoms, providing a comprehensive view of genes that are involved in venom production. Further, this work identifies new putative bioactive compounds that could be used to seed research into new pharmacological compounds and increase our understanding of the function of different ion channels. Public Library of Science 2015-05-28 /pmc/articles/PMC4447460/ /pubmed/26020943 http://dx.doi.org/10.1371/journal.pone.0127883 Text en © 2015 Luna-Ramírez et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Luna-Ramírez, Karen
Quintero-Hernández, Verónica
Juárez-González, Víctor Rivelino
Possani, Lourival D.
Whole Transcriptome of the Venom Gland from Urodacus yaschenkoi Scorpion
title Whole Transcriptome of the Venom Gland from Urodacus yaschenkoi Scorpion
title_full Whole Transcriptome of the Venom Gland from Urodacus yaschenkoi Scorpion
title_fullStr Whole Transcriptome of the Venom Gland from Urodacus yaschenkoi Scorpion
title_full_unstemmed Whole Transcriptome of the Venom Gland from Urodacus yaschenkoi Scorpion
title_short Whole Transcriptome of the Venom Gland from Urodacus yaschenkoi Scorpion
title_sort whole transcriptome of the venom gland from urodacus yaschenkoi scorpion
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4447460/
https://www.ncbi.nlm.nih.gov/pubmed/26020943
http://dx.doi.org/10.1371/journal.pone.0127883
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