Cargando…

Pictolysin-III, a Hemorrhagic Type-III Metalloproteinase Isolated from Bothrops pictus (Serpentes: Viperidae) Venom, Reduces Mitochondrial Respiration and Induces Cytokine Secretion in Epithelial and Stromal Cell Lines

From the venom of the Bothrops pictus snake, an endemic species from Peru, we recently have described toxins that inhibited platelet aggregation and cancer cell migration. In this work, we characterize a novel P-III class snake venom metalloproteinase, called pictolysin-III (Pic-III). It is a 62 kDa...

Descripción completa

Detalles Bibliográficos
Autores principales: Vivas-Ruiz, Dan E., Rosas, Paola, Proleón, Alex, Torrejón, Daniel, Lazo, Fanny, Tenorio-Ricca, Ana Belén, Guajardo, Francisco, Almarza, Cristopher, Andrades, Víctor, Astorga, Jessica, Oropesa, Daniel, Toledo, Jorge, Vera, María Jesús, Martínez, Jorge, Araya-Maturana, Ramiro, Dubois-Camacho, Karen, Hermoso, Marcela A., Alvarenga, Valéria G., Sanchez, Eladio Flores, Yarlequé, Armando, Oliveira, Luciana Souza, Urra, Félix A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10222873/
https://www.ncbi.nlm.nih.gov/pubmed/37242775
http://dx.doi.org/10.3390/pharmaceutics15051533
_version_ 1785049804734201856
author Vivas-Ruiz, Dan E.
Rosas, Paola
Proleón, Alex
Torrejón, Daniel
Lazo, Fanny
Tenorio-Ricca, Ana Belén
Guajardo, Francisco
Almarza, Cristopher
Andrades, Víctor
Astorga, Jessica
Oropesa, Daniel
Toledo, Jorge
Vera, María Jesús
Martínez, Jorge
Araya-Maturana, Ramiro
Dubois-Camacho, Karen
Hermoso, Marcela A.
Alvarenga, Valéria G.
Sanchez, Eladio Flores
Yarlequé, Armando
Oliveira, Luciana Souza
Urra, Félix A.
author_facet Vivas-Ruiz, Dan E.
Rosas, Paola
Proleón, Alex
Torrejón, Daniel
Lazo, Fanny
Tenorio-Ricca, Ana Belén
Guajardo, Francisco
Almarza, Cristopher
Andrades, Víctor
Astorga, Jessica
Oropesa, Daniel
Toledo, Jorge
Vera, María Jesús
Martínez, Jorge
Araya-Maturana, Ramiro
Dubois-Camacho, Karen
Hermoso, Marcela A.
Alvarenga, Valéria G.
Sanchez, Eladio Flores
Yarlequé, Armando
Oliveira, Luciana Souza
Urra, Félix A.
author_sort Vivas-Ruiz, Dan E.
collection PubMed
description From the venom of the Bothrops pictus snake, an endemic species from Peru, we recently have described toxins that inhibited platelet aggregation and cancer cell migration. In this work, we characterize a novel P-III class snake venom metalloproteinase, called pictolysin-III (Pic-III). It is a 62 kDa proteinase that hydrolyzes dimethyl casein, azocasein, gelatin, fibrinogen, and fibrin. The cations Mg(2+) and Ca(2+) enhanced its enzymatic activity, whereas Zn(2+) inhibited it. In addition, EDTA and marimastat were also effective inhibitors. The amino acid sequence deduced from cDNA shows a multidomain structure that includes a proprotein, metalloproteinase, disintegrin-like, and cysteine-rich domains. Additionally, Pic-III reduces the convulxin- and thrombin-stimulated platelet aggregation and in vivo, it has hemorrhagic activity (DHM = 0.3 µg). In epithelial cell lines (MDA-MB-231 and Caco-2) and RMF-621 fibroblast, it triggers morphological changes that are accompanied by a decrease in mitochondrial respiration, glycolysis, and ATP levels, and an increase in NAD(P)H, mitochondrial ROS, and cytokine secretion. Moreover, Pic-III sensitizes to the cytotoxic BH3 mimetic drug ABT-199 (Venetoclax) in MDA-MB-231 cells. To our knowledge, Pic-III is the first SVMP reported with action on mitochondrial bioenergetics and may offer novel opportunities for promising lead compounds that inhibit platelet aggregation or ECM–cancer-cell interactions.
format Online
Article
Text
id pubmed-10222873
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-102228732023-05-28 Pictolysin-III, a Hemorrhagic Type-III Metalloproteinase Isolated from Bothrops pictus (Serpentes: Viperidae) Venom, Reduces Mitochondrial Respiration and Induces Cytokine Secretion in Epithelial and Stromal Cell Lines Vivas-Ruiz, Dan E. Rosas, Paola Proleón, Alex Torrejón, Daniel Lazo, Fanny Tenorio-Ricca, Ana Belén Guajardo, Francisco Almarza, Cristopher Andrades, Víctor Astorga, Jessica Oropesa, Daniel Toledo, Jorge Vera, María Jesús Martínez, Jorge Araya-Maturana, Ramiro Dubois-Camacho, Karen Hermoso, Marcela A. Alvarenga, Valéria G. Sanchez, Eladio Flores Yarlequé, Armando Oliveira, Luciana Souza Urra, Félix A. Pharmaceutics Article From the venom of the Bothrops pictus snake, an endemic species from Peru, we recently have described toxins that inhibited platelet aggregation and cancer cell migration. In this work, we characterize a novel P-III class snake venom metalloproteinase, called pictolysin-III (Pic-III). It is a 62 kDa proteinase that hydrolyzes dimethyl casein, azocasein, gelatin, fibrinogen, and fibrin. The cations Mg(2+) and Ca(2+) enhanced its enzymatic activity, whereas Zn(2+) inhibited it. In addition, EDTA and marimastat were also effective inhibitors. The amino acid sequence deduced from cDNA shows a multidomain structure that includes a proprotein, metalloproteinase, disintegrin-like, and cysteine-rich domains. Additionally, Pic-III reduces the convulxin- and thrombin-stimulated platelet aggregation and in vivo, it has hemorrhagic activity (DHM = 0.3 µg). In epithelial cell lines (MDA-MB-231 and Caco-2) and RMF-621 fibroblast, it triggers morphological changes that are accompanied by a decrease in mitochondrial respiration, glycolysis, and ATP levels, and an increase in NAD(P)H, mitochondrial ROS, and cytokine secretion. Moreover, Pic-III sensitizes to the cytotoxic BH3 mimetic drug ABT-199 (Venetoclax) in MDA-MB-231 cells. To our knowledge, Pic-III is the first SVMP reported with action on mitochondrial bioenergetics and may offer novel opportunities for promising lead compounds that inhibit platelet aggregation or ECM–cancer-cell interactions. MDPI 2023-05-18 /pmc/articles/PMC10222873/ /pubmed/37242775 http://dx.doi.org/10.3390/pharmaceutics15051533 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
Vivas-Ruiz, Dan E.
Rosas, Paola
Proleón, Alex
Torrejón, Daniel
Lazo, Fanny
Tenorio-Ricca, Ana Belén
Guajardo, Francisco
Almarza, Cristopher
Andrades, Víctor
Astorga, Jessica
Oropesa, Daniel
Toledo, Jorge
Vera, María Jesús
Martínez, Jorge
Araya-Maturana, Ramiro
Dubois-Camacho, Karen
Hermoso, Marcela A.
Alvarenga, Valéria G.
Sanchez, Eladio Flores
Yarlequé, Armando
Oliveira, Luciana Souza
Urra, Félix A.
Pictolysin-III, a Hemorrhagic Type-III Metalloproteinase Isolated from Bothrops pictus (Serpentes: Viperidae) Venom, Reduces Mitochondrial Respiration and Induces Cytokine Secretion in Epithelial and Stromal Cell Lines
title Pictolysin-III, a Hemorrhagic Type-III Metalloproteinase Isolated from Bothrops pictus (Serpentes: Viperidae) Venom, Reduces Mitochondrial Respiration and Induces Cytokine Secretion in Epithelial and Stromal Cell Lines
title_full Pictolysin-III, a Hemorrhagic Type-III Metalloproteinase Isolated from Bothrops pictus (Serpentes: Viperidae) Venom, Reduces Mitochondrial Respiration and Induces Cytokine Secretion in Epithelial and Stromal Cell Lines
title_fullStr Pictolysin-III, a Hemorrhagic Type-III Metalloproteinase Isolated from Bothrops pictus (Serpentes: Viperidae) Venom, Reduces Mitochondrial Respiration and Induces Cytokine Secretion in Epithelial and Stromal Cell Lines
title_full_unstemmed Pictolysin-III, a Hemorrhagic Type-III Metalloproteinase Isolated from Bothrops pictus (Serpentes: Viperidae) Venom, Reduces Mitochondrial Respiration and Induces Cytokine Secretion in Epithelial and Stromal Cell Lines
title_short Pictolysin-III, a Hemorrhagic Type-III Metalloproteinase Isolated from Bothrops pictus (Serpentes: Viperidae) Venom, Reduces Mitochondrial Respiration and Induces Cytokine Secretion in Epithelial and Stromal Cell Lines
title_sort pictolysin-iii, a hemorrhagic type-iii metalloproteinase isolated from bothrops pictus (serpentes: viperidae) venom, reduces mitochondrial respiration and induces cytokine secretion in epithelial and stromal cell lines
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10222873/
https://www.ncbi.nlm.nih.gov/pubmed/37242775
http://dx.doi.org/10.3390/pharmaceutics15051533
work_keys_str_mv AT vivasruizdane pictolysiniiiahemorrhagictypeiiimetalloproteinaseisolatedfrombothropspictusserpentesviperidaevenomreducesmitochondrialrespirationandinducescytokinesecretioninepithelialandstromalcelllines
AT rosaspaola pictolysiniiiahemorrhagictypeiiimetalloproteinaseisolatedfrombothropspictusserpentesviperidaevenomreducesmitochondrialrespirationandinducescytokinesecretioninepithelialandstromalcelllines
AT proleonalex pictolysiniiiahemorrhagictypeiiimetalloproteinaseisolatedfrombothropspictusserpentesviperidaevenomreducesmitochondrialrespirationandinducescytokinesecretioninepithelialandstromalcelllines
AT torrejondaniel pictolysiniiiahemorrhagictypeiiimetalloproteinaseisolatedfrombothropspictusserpentesviperidaevenomreducesmitochondrialrespirationandinducescytokinesecretioninepithelialandstromalcelllines
AT lazofanny pictolysiniiiahemorrhagictypeiiimetalloproteinaseisolatedfrombothropspictusserpentesviperidaevenomreducesmitochondrialrespirationandinducescytokinesecretioninepithelialandstromalcelllines
AT tenorioriccaanabelen pictolysiniiiahemorrhagictypeiiimetalloproteinaseisolatedfrombothropspictusserpentesviperidaevenomreducesmitochondrialrespirationandinducescytokinesecretioninepithelialandstromalcelllines
AT guajardofrancisco pictolysiniiiahemorrhagictypeiiimetalloproteinaseisolatedfrombothropspictusserpentesviperidaevenomreducesmitochondrialrespirationandinducescytokinesecretioninepithelialandstromalcelllines
AT almarzacristopher pictolysiniiiahemorrhagictypeiiimetalloproteinaseisolatedfrombothropspictusserpentesviperidaevenomreducesmitochondrialrespirationandinducescytokinesecretioninepithelialandstromalcelllines
AT andradesvictor pictolysiniiiahemorrhagictypeiiimetalloproteinaseisolatedfrombothropspictusserpentesviperidaevenomreducesmitochondrialrespirationandinducescytokinesecretioninepithelialandstromalcelllines
AT astorgajessica pictolysiniiiahemorrhagictypeiiimetalloproteinaseisolatedfrombothropspictusserpentesviperidaevenomreducesmitochondrialrespirationandinducescytokinesecretioninepithelialandstromalcelllines
AT oropesadaniel pictolysiniiiahemorrhagictypeiiimetalloproteinaseisolatedfrombothropspictusserpentesviperidaevenomreducesmitochondrialrespirationandinducescytokinesecretioninepithelialandstromalcelllines
AT toledojorge pictolysiniiiahemorrhagictypeiiimetalloproteinaseisolatedfrombothropspictusserpentesviperidaevenomreducesmitochondrialrespirationandinducescytokinesecretioninepithelialandstromalcelllines
AT veramariajesus pictolysiniiiahemorrhagictypeiiimetalloproteinaseisolatedfrombothropspictusserpentesviperidaevenomreducesmitochondrialrespirationandinducescytokinesecretioninepithelialandstromalcelllines
AT martinezjorge pictolysiniiiahemorrhagictypeiiimetalloproteinaseisolatedfrombothropspictusserpentesviperidaevenomreducesmitochondrialrespirationandinducescytokinesecretioninepithelialandstromalcelllines
AT arayamaturanaramiro pictolysiniiiahemorrhagictypeiiimetalloproteinaseisolatedfrombothropspictusserpentesviperidaevenomreducesmitochondrialrespirationandinducescytokinesecretioninepithelialandstromalcelllines
AT duboiscamachokaren pictolysiniiiahemorrhagictypeiiimetalloproteinaseisolatedfrombothropspictusserpentesviperidaevenomreducesmitochondrialrespirationandinducescytokinesecretioninepithelialandstromalcelllines
AT hermosomarcelaa pictolysiniiiahemorrhagictypeiiimetalloproteinaseisolatedfrombothropspictusserpentesviperidaevenomreducesmitochondrialrespirationandinducescytokinesecretioninepithelialandstromalcelllines
AT alvarengavaleriag pictolysiniiiahemorrhagictypeiiimetalloproteinaseisolatedfrombothropspictusserpentesviperidaevenomreducesmitochondrialrespirationandinducescytokinesecretioninepithelialandstromalcelllines
AT sanchezeladioflores pictolysiniiiahemorrhagictypeiiimetalloproteinaseisolatedfrombothropspictusserpentesviperidaevenomreducesmitochondrialrespirationandinducescytokinesecretioninepithelialandstromalcelllines
AT yarlequearmando pictolysiniiiahemorrhagictypeiiimetalloproteinaseisolatedfrombothropspictusserpentesviperidaevenomreducesmitochondrialrespirationandinducescytokinesecretioninepithelialandstromalcelllines
AT oliveiralucianasouza pictolysiniiiahemorrhagictypeiiimetalloproteinaseisolatedfrombothropspictusserpentesviperidaevenomreducesmitochondrialrespirationandinducescytokinesecretioninepithelialandstromalcelllines
AT urrafelixa pictolysiniiiahemorrhagictypeiiimetalloproteinaseisolatedfrombothropspictusserpentesviperidaevenomreducesmitochondrialrespirationandinducescytokinesecretioninepithelialandstromalcelllines