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Heterologous Expression of an Insecticidal Peptide Obtained from the Transcriptome of the Colombian Spider Phoneutria depilate

Spider venoms are composed, among other substances, of peptide toxins whose selectivity for certain physiological targets has made them powerful tools for applications such as bioinsecticides, analgesics, antiarrhythmics, antibacterials, antifungals and antimalarials, among others. Bioinsecticides a...

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Autores principales: Vásquez-Escobar, Julieta, Benjumea-Gutiérrez, Dora María, Lopera, Carolina, Clement, Herlinda C., Bolaños, Damaris I., Higuita-Castro, Jorge Luis, Corzo, Gerardo A., Corrales-Garcia, Ligia Luz
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10467102/
https://www.ncbi.nlm.nih.gov/pubmed/37505705
http://dx.doi.org/10.3390/toxins15070436
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author Vásquez-Escobar, Julieta
Benjumea-Gutiérrez, Dora María
Lopera, Carolina
Clement, Herlinda C.
Bolaños, Damaris I.
Higuita-Castro, Jorge Luis
Corzo, Gerardo A.
Corrales-Garcia, Ligia Luz
author_facet Vásquez-Escobar, Julieta
Benjumea-Gutiérrez, Dora María
Lopera, Carolina
Clement, Herlinda C.
Bolaños, Damaris I.
Higuita-Castro, Jorge Luis
Corzo, Gerardo A.
Corrales-Garcia, Ligia Luz
author_sort Vásquez-Escobar, Julieta
collection PubMed
description Spider venoms are composed, among other substances, of peptide toxins whose selectivity for certain physiological targets has made them powerful tools for applications such as bioinsecticides, analgesics, antiarrhythmics, antibacterials, antifungals and antimalarials, among others. Bioinsecticides are an environmentally friendly alternative to conventional agrochemicals. In this paper, the primary structure of an insecticidal peptide was obtained from the venom gland transcriptome of the ctenid spider Phoneutria depilata (Transcript ID PhdNtxNav24). The peptide contains 53 amino acids, including 10 Cys residues that form 5 disulfide bonds. Using the amino acid sequence of such peptide, a synthetic gene was constructed de novo by overlapping PCRs and cloned into an expression vector. A recombinant peptide, named delta-ctenitoxin (rCtx-4), was obtained. It was expressed, folded, purified and validated using mass spectrometry (7994.61 Da). The insecticidal activity of rCtx-4 was demonstrated through intrathoracic injection in crickets (LD(50) 1.2 μg/g insect) and it was not toxic to mice. rCtx-4 is a potential bioinsecticide that could have a broad spectrum of applications in agriculture.
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spelling pubmed-104671022023-08-31 Heterologous Expression of an Insecticidal Peptide Obtained from the Transcriptome of the Colombian Spider Phoneutria depilate Vásquez-Escobar, Julieta Benjumea-Gutiérrez, Dora María Lopera, Carolina Clement, Herlinda C. Bolaños, Damaris I. Higuita-Castro, Jorge Luis Corzo, Gerardo A. Corrales-Garcia, Ligia Luz Toxins (Basel) Article Spider venoms are composed, among other substances, of peptide toxins whose selectivity for certain physiological targets has made them powerful tools for applications such as bioinsecticides, analgesics, antiarrhythmics, antibacterials, antifungals and antimalarials, among others. Bioinsecticides are an environmentally friendly alternative to conventional agrochemicals. In this paper, the primary structure of an insecticidal peptide was obtained from the venom gland transcriptome of the ctenid spider Phoneutria depilata (Transcript ID PhdNtxNav24). The peptide contains 53 amino acids, including 10 Cys residues that form 5 disulfide bonds. Using the amino acid sequence of such peptide, a synthetic gene was constructed de novo by overlapping PCRs and cloned into an expression vector. A recombinant peptide, named delta-ctenitoxin (rCtx-4), was obtained. It was expressed, folded, purified and validated using mass spectrometry (7994.61 Da). The insecticidal activity of rCtx-4 was demonstrated through intrathoracic injection in crickets (LD(50) 1.2 μg/g insect) and it was not toxic to mice. rCtx-4 is a potential bioinsecticide that could have a broad spectrum of applications in agriculture. MDPI 2023-07-02 /pmc/articles/PMC10467102/ /pubmed/37505705 http://dx.doi.org/10.3390/toxins15070436 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Vásquez-Escobar, Julieta
Benjumea-Gutiérrez, Dora María
Lopera, Carolina
Clement, Herlinda C.
Bolaños, Damaris I.
Higuita-Castro, Jorge Luis
Corzo, Gerardo A.
Corrales-Garcia, Ligia Luz
Heterologous Expression of an Insecticidal Peptide Obtained from the Transcriptome of the Colombian Spider Phoneutria depilate
title Heterologous Expression of an Insecticidal Peptide Obtained from the Transcriptome of the Colombian Spider Phoneutria depilate
title_full Heterologous Expression of an Insecticidal Peptide Obtained from the Transcriptome of the Colombian Spider Phoneutria depilate
title_fullStr Heterologous Expression of an Insecticidal Peptide Obtained from the Transcriptome of the Colombian Spider Phoneutria depilate
title_full_unstemmed Heterologous Expression of an Insecticidal Peptide Obtained from the Transcriptome of the Colombian Spider Phoneutria depilate
title_short Heterologous Expression of an Insecticidal Peptide Obtained from the Transcriptome of the Colombian Spider Phoneutria depilate
title_sort heterologous expression of an insecticidal peptide obtained from the transcriptome of the colombian spider phoneutria depilate
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10467102/
https://www.ncbi.nlm.nih.gov/pubmed/37505705
http://dx.doi.org/10.3390/toxins15070436
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