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Differential Proteome Profiling Analysis under Pesticide Stress by the Use of a Nano-UHPLC-MS/MS Untargeted Proteomic-Based Approach on a 3D-Developed Neurospheroid Model: Identification of Protein Interactions, Prognostic Biomarkers, and Potential Therapeutic Targets in Human IDH Mutant High-Grade Gliomas

[Image: see text] High-grade gliomas represent the most common group of infiltrative primary brain tumors in adults associated with high invasiveness, agressivity, and resistance to therapy, which highlights the need to develop potent drugs with novel mechanisms of action. The aim of this study is t...

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Autores principales: Louati, Kaouthar, Maalej, Amina, Kolsi, Fatma, Kallel, Rim, Gdoura, Yassine, Borni, Mahdi, Hakim, Leila Sellami, Zribi, Rania, Choura, Sirine, Sayadi, Sami, Chamkha, Mohamed, Mnif, Basma, Khemakhem, Zouheir, Boudawara, Tahya Sellami, Boudawara, Mohamed Zaher, Safta, Fathi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10629271/
https://www.ncbi.nlm.nih.gov/pubmed/37651309
http://dx.doi.org/10.1021/acs.jproteome.3c00395
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author Louati, Kaouthar
Maalej, Amina
Kolsi, Fatma
Kallel, Rim
Gdoura, Yassine
Borni, Mahdi
Hakim, Leila Sellami
Zribi, Rania
Choura, Sirine
Sayadi, Sami
Chamkha, Mohamed
Mnif, Basma
Khemakhem, Zouheir
Boudawara, Tahya Sellami
Boudawara, Mohamed Zaher
Safta, Fathi
author_facet Louati, Kaouthar
Maalej, Amina
Kolsi, Fatma
Kallel, Rim
Gdoura, Yassine
Borni, Mahdi
Hakim, Leila Sellami
Zribi, Rania
Choura, Sirine
Sayadi, Sami
Chamkha, Mohamed
Mnif, Basma
Khemakhem, Zouheir
Boudawara, Tahya Sellami
Boudawara, Mohamed Zaher
Safta, Fathi
author_sort Louati, Kaouthar
collection PubMed
description [Image: see text] High-grade gliomas represent the most common group of infiltrative primary brain tumors in adults associated with high invasiveness, agressivity, and resistance to therapy, which highlights the need to develop potent drugs with novel mechanisms of action. The aim of this study is to reveal changes in proteome profiles under stressful conditions to identify prognostic biomarkers and altered apoptogenic pathways involved in the anticancer action of human isocitrate dehydrogenase (IDH) mutant high-grade gliomas. Our protocol consists first of a 3D in vitro developing neurospheroid model and then treatment by a pesticide mixture at relevant concentrations. Furthermore, we adopted an untargeted proteomic-based approach with high-resolution mass spectrometry for a comparative analysis of the differentially expressed proteins between treated and nontreated spheroids. Our analysis revealed that the majority of altered proteins were key members in glioma pathogenesis, implicated in the cellular metabolism, biological regulation, binding, and catalytic and structural activity and linked to many cascading regulatory pathways. Our finding revealed that grade-IV astrocytomas promote the downstream of the mitogen-activated-protein-kinases/extracellular-signal-regulated kinase (MAPK1/ERK2) pathway involving massive calcium influx. The gonadotrophin-releasing-hormone signaling enhances MAKP activity and may serve as a negative feedback compensating regulator. Thus, our study can pave the way for effective new therapeutic and diagnostic strategies to improve the overall survival.
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spelling pubmed-106292712023-11-08 Differential Proteome Profiling Analysis under Pesticide Stress by the Use of a Nano-UHPLC-MS/MS Untargeted Proteomic-Based Approach on a 3D-Developed Neurospheroid Model: Identification of Protein Interactions, Prognostic Biomarkers, and Potential Therapeutic Targets in Human IDH Mutant High-Grade Gliomas Louati, Kaouthar Maalej, Amina Kolsi, Fatma Kallel, Rim Gdoura, Yassine Borni, Mahdi Hakim, Leila Sellami Zribi, Rania Choura, Sirine Sayadi, Sami Chamkha, Mohamed Mnif, Basma Khemakhem, Zouheir Boudawara, Tahya Sellami Boudawara, Mohamed Zaher Safta, Fathi J Proteome Res [Image: see text] High-grade gliomas represent the most common group of infiltrative primary brain tumors in adults associated with high invasiveness, agressivity, and resistance to therapy, which highlights the need to develop potent drugs with novel mechanisms of action. The aim of this study is to reveal changes in proteome profiles under stressful conditions to identify prognostic biomarkers and altered apoptogenic pathways involved in the anticancer action of human isocitrate dehydrogenase (IDH) mutant high-grade gliomas. Our protocol consists first of a 3D in vitro developing neurospheroid model and then treatment by a pesticide mixture at relevant concentrations. Furthermore, we adopted an untargeted proteomic-based approach with high-resolution mass spectrometry for a comparative analysis of the differentially expressed proteins between treated and nontreated spheroids. Our analysis revealed that the majority of altered proteins were key members in glioma pathogenesis, implicated in the cellular metabolism, biological regulation, binding, and catalytic and structural activity and linked to many cascading regulatory pathways. Our finding revealed that grade-IV astrocytomas promote the downstream of the mitogen-activated-protein-kinases/extracellular-signal-regulated kinase (MAPK1/ERK2) pathway involving massive calcium influx. The gonadotrophin-releasing-hormone signaling enhances MAKP activity and may serve as a negative feedback compensating regulator. Thus, our study can pave the way for effective new therapeutic and diagnostic strategies to improve the overall survival. American Chemical Society 2023-08-31 /pmc/articles/PMC10629271/ /pubmed/37651309 http://dx.doi.org/10.1021/acs.jproteome.3c00395 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Louati, Kaouthar
Maalej, Amina
Kolsi, Fatma
Kallel, Rim
Gdoura, Yassine
Borni, Mahdi
Hakim, Leila Sellami
Zribi, Rania
Choura, Sirine
Sayadi, Sami
Chamkha, Mohamed
Mnif, Basma
Khemakhem, Zouheir
Boudawara, Tahya Sellami
Boudawara, Mohamed Zaher
Safta, Fathi
Differential Proteome Profiling Analysis under Pesticide Stress by the Use of a Nano-UHPLC-MS/MS Untargeted Proteomic-Based Approach on a 3D-Developed Neurospheroid Model: Identification of Protein Interactions, Prognostic Biomarkers, and Potential Therapeutic Targets in Human IDH Mutant High-Grade Gliomas
title Differential Proteome Profiling Analysis under Pesticide Stress by the Use of a Nano-UHPLC-MS/MS Untargeted Proteomic-Based Approach on a 3D-Developed Neurospheroid Model: Identification of Protein Interactions, Prognostic Biomarkers, and Potential Therapeutic Targets in Human IDH Mutant High-Grade Gliomas
title_full Differential Proteome Profiling Analysis under Pesticide Stress by the Use of a Nano-UHPLC-MS/MS Untargeted Proteomic-Based Approach on a 3D-Developed Neurospheroid Model: Identification of Protein Interactions, Prognostic Biomarkers, and Potential Therapeutic Targets in Human IDH Mutant High-Grade Gliomas
title_fullStr Differential Proteome Profiling Analysis under Pesticide Stress by the Use of a Nano-UHPLC-MS/MS Untargeted Proteomic-Based Approach on a 3D-Developed Neurospheroid Model: Identification of Protein Interactions, Prognostic Biomarkers, and Potential Therapeutic Targets in Human IDH Mutant High-Grade Gliomas
title_full_unstemmed Differential Proteome Profiling Analysis under Pesticide Stress by the Use of a Nano-UHPLC-MS/MS Untargeted Proteomic-Based Approach on a 3D-Developed Neurospheroid Model: Identification of Protein Interactions, Prognostic Biomarkers, and Potential Therapeutic Targets in Human IDH Mutant High-Grade Gliomas
title_short Differential Proteome Profiling Analysis under Pesticide Stress by the Use of a Nano-UHPLC-MS/MS Untargeted Proteomic-Based Approach on a 3D-Developed Neurospheroid Model: Identification of Protein Interactions, Prognostic Biomarkers, and Potential Therapeutic Targets in Human IDH Mutant High-Grade Gliomas
title_sort differential proteome profiling analysis under pesticide stress by the use of a nano-uhplc-ms/ms untargeted proteomic-based approach on a 3d-developed neurospheroid model: identification of protein interactions, prognostic biomarkers, and potential therapeutic targets in human idh mutant high-grade gliomas
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10629271/
https://www.ncbi.nlm.nih.gov/pubmed/37651309
http://dx.doi.org/10.1021/acs.jproteome.3c00395
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