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AaTs-1: A Tetrapeptide from Androctonus australis Scorpion Venom, Inhibiting U87 Glioblastoma Cells Proliferation by p53 and FPRL-1 Up-Regulations

Glioblastoma is an aggressive cancer, against which medical professionals are still quite helpless, due to its resistance to current treatments. Scorpion toxins have been proposed as a promising alternative for the development of effective targeted glioblastoma therapy and diagnostic. However, the e...

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Autores principales: Aissaoui-Zid, Dorra, Saada, Mohamed-Chiheb, Moslah, Wassim, Potier-Cartereau, Marie, Lemettre, Aude, Othman, Houcemeddine, Gaysinski, Marc, Abdelkafi-Koubaa, Zaineb, Souid, Soumaya, Marrakchi, Naziha, Vandier, Christophe, Essafi-Benkhadir, Khadija, Srairi-Abid, Najet
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8704564/
https://www.ncbi.nlm.nih.gov/pubmed/34946686
http://dx.doi.org/10.3390/molecules26247610
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author Aissaoui-Zid, Dorra
Saada, Mohamed-Chiheb
Moslah, Wassim
Potier-Cartereau, Marie
Lemettre, Aude
Othman, Houcemeddine
Gaysinski, Marc
Abdelkafi-Koubaa, Zaineb
Souid, Soumaya
Marrakchi, Naziha
Vandier, Christophe
Essafi-Benkhadir, Khadija
Srairi-Abid, Najet
author_facet Aissaoui-Zid, Dorra
Saada, Mohamed-Chiheb
Moslah, Wassim
Potier-Cartereau, Marie
Lemettre, Aude
Othman, Houcemeddine
Gaysinski, Marc
Abdelkafi-Koubaa, Zaineb
Souid, Soumaya
Marrakchi, Naziha
Vandier, Christophe
Essafi-Benkhadir, Khadija
Srairi-Abid, Najet
author_sort Aissaoui-Zid, Dorra
collection PubMed
description Glioblastoma is an aggressive cancer, against which medical professionals are still quite helpless, due to its resistance to current treatments. Scorpion toxins have been proposed as a promising alternative for the development of effective targeted glioblastoma therapy and diagnostic. However, the exploitation of the long peptides could present disadvantages. In this work, we identified and synthetized AaTs-1, the first tetrapeptide from Androctonus australis scorpion venom (Aa), which exhibited an antiproliferative effect specifically against human glioblastoma cells. Both the native and synthetic AaTs-1 were endowed with the same inhibiting effect on the proliferation of U87 cells with an IC(50) of 0.56 mM. Interestingly, AaTs-1 was about two times more active than the anti-glioblastoma conventional chemotherapeutic drug, temozolomide (TMZ), and enhanced its efficacy on U87 cells. AaTs-1 showed a significant similarity with the synthetic peptide WKYMVm, an agonist of a G-coupled formyl-peptide receptor, FPRL-1, known to be involved in the proliferation of glioma cells. Interestingly, the tetrapeptide triggered the dephosphorylation of ERK, p38, and JNK kinases. It also enhanced the expression of p53 and FPRL-1, likely leading to the inhibition of the store operated calcium entry. Overall, our work uncovered AaTs-1 as a first natural potential FPRL-1 antagonist, which could be proposed as a promising target to develop new generation of innovative molecules used alone or in combination with TMZ to improve glioblastoma treatment response. Its chemical synthesis in non-limiting quantity represents a valuable advantage to design and develop low-cost active analogues to treat glioblastoma cancer.
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spelling pubmed-87045642021-12-25 AaTs-1: A Tetrapeptide from Androctonus australis Scorpion Venom, Inhibiting U87 Glioblastoma Cells Proliferation by p53 and FPRL-1 Up-Regulations Aissaoui-Zid, Dorra Saada, Mohamed-Chiheb Moslah, Wassim Potier-Cartereau, Marie Lemettre, Aude Othman, Houcemeddine Gaysinski, Marc Abdelkafi-Koubaa, Zaineb Souid, Soumaya Marrakchi, Naziha Vandier, Christophe Essafi-Benkhadir, Khadija Srairi-Abid, Najet Molecules Article Glioblastoma is an aggressive cancer, against which medical professionals are still quite helpless, due to its resistance to current treatments. Scorpion toxins have been proposed as a promising alternative for the development of effective targeted glioblastoma therapy and diagnostic. However, the exploitation of the long peptides could present disadvantages. In this work, we identified and synthetized AaTs-1, the first tetrapeptide from Androctonus australis scorpion venom (Aa), which exhibited an antiproliferative effect specifically against human glioblastoma cells. Both the native and synthetic AaTs-1 were endowed with the same inhibiting effect on the proliferation of U87 cells with an IC(50) of 0.56 mM. Interestingly, AaTs-1 was about two times more active than the anti-glioblastoma conventional chemotherapeutic drug, temozolomide (TMZ), and enhanced its efficacy on U87 cells. AaTs-1 showed a significant similarity with the synthetic peptide WKYMVm, an agonist of a G-coupled formyl-peptide receptor, FPRL-1, known to be involved in the proliferation of glioma cells. Interestingly, the tetrapeptide triggered the dephosphorylation of ERK, p38, and JNK kinases. It also enhanced the expression of p53 and FPRL-1, likely leading to the inhibition of the store operated calcium entry. Overall, our work uncovered AaTs-1 as a first natural potential FPRL-1 antagonist, which could be proposed as a promising target to develop new generation of innovative molecules used alone or in combination with TMZ to improve glioblastoma treatment response. Its chemical synthesis in non-limiting quantity represents a valuable advantage to design and develop low-cost active analogues to treat glioblastoma cancer. MDPI 2021-12-15 /pmc/articles/PMC8704564/ /pubmed/34946686 http://dx.doi.org/10.3390/molecules26247610 Text en © 2021 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
Aissaoui-Zid, Dorra
Saada, Mohamed-Chiheb
Moslah, Wassim
Potier-Cartereau, Marie
Lemettre, Aude
Othman, Houcemeddine
Gaysinski, Marc
Abdelkafi-Koubaa, Zaineb
Souid, Soumaya
Marrakchi, Naziha
Vandier, Christophe
Essafi-Benkhadir, Khadija
Srairi-Abid, Najet
AaTs-1: A Tetrapeptide from Androctonus australis Scorpion Venom, Inhibiting U87 Glioblastoma Cells Proliferation by p53 and FPRL-1 Up-Regulations
title AaTs-1: A Tetrapeptide from Androctonus australis Scorpion Venom, Inhibiting U87 Glioblastoma Cells Proliferation by p53 and FPRL-1 Up-Regulations
title_full AaTs-1: A Tetrapeptide from Androctonus australis Scorpion Venom, Inhibiting U87 Glioblastoma Cells Proliferation by p53 and FPRL-1 Up-Regulations
title_fullStr AaTs-1: A Tetrapeptide from Androctonus australis Scorpion Venom, Inhibiting U87 Glioblastoma Cells Proliferation by p53 and FPRL-1 Up-Regulations
title_full_unstemmed AaTs-1: A Tetrapeptide from Androctonus australis Scorpion Venom, Inhibiting U87 Glioblastoma Cells Proliferation by p53 and FPRL-1 Up-Regulations
title_short AaTs-1: A Tetrapeptide from Androctonus australis Scorpion Venom, Inhibiting U87 Glioblastoma Cells Proliferation by p53 and FPRL-1 Up-Regulations
title_sort aats-1: a tetrapeptide from androctonus australis scorpion venom, inhibiting u87 glioblastoma cells proliferation by p53 and fprl-1 up-regulations
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8704564/
https://www.ncbi.nlm.nih.gov/pubmed/34946686
http://dx.doi.org/10.3390/molecules26247610
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