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MicroRNA-138-5p Targets Pro-Apoptotic Factors and Favors Neural Cell Survival: Analysis in the Injured Spinal Cord

The central nervous system microRNA miR-138-5p has attracted much attention in cancer research because it inhibits pro-apoptotic genes including CASP3. We hypothesize that miR-138-5p downregulation after SCI leads to overexpression of pro-apoptotic genes, sensitizing neural cells to noxious stimuli....

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Autores principales: Maza, Rodrigo M., Barreda-Manso, María Asunción, Reigada, David, Silván, Ágata, Muñoz-Galdeano, Teresa, Soto, Altea, del Águila, Ángela, Nieto-Díaz, Manuel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9312482/
https://www.ncbi.nlm.nih.gov/pubmed/35884864
http://dx.doi.org/10.3390/biomedicines10071559
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author Maza, Rodrigo M.
Barreda-Manso, María Asunción
Reigada, David
Silván, Ágata
Muñoz-Galdeano, Teresa
Soto, Altea
del Águila, Ángela
Nieto-Díaz, Manuel
author_facet Maza, Rodrigo M.
Barreda-Manso, María Asunción
Reigada, David
Silván, Ágata
Muñoz-Galdeano, Teresa
Soto, Altea
del Águila, Ángela
Nieto-Díaz, Manuel
author_sort Maza, Rodrigo M.
collection PubMed
description The central nervous system microRNA miR-138-5p has attracted much attention in cancer research because it inhibits pro-apoptotic genes including CASP3. We hypothesize that miR-138-5p downregulation after SCI leads to overexpression of pro-apoptotic genes, sensitizing neural cells to noxious stimuli. This study aimed to identify miR-138-5p targets among pro-apoptotic genes overexpressed following SCI and to confirm that miR-138-5p modulates cell death in neural cells. Gene expression and histological analyses revealed that the drop in miR-138-5p expression after SCI is due to the massive loss of neurons and oligodendrocytes and its downregulation in neurons. Computational analyses identified 176 potential targets of miR-138-5p becoming dysregulated after SCI, including apoptotic proteins CASP-3 and CASP-7, and BAK. Reporter, RT-qPCR, and immunoblot assays in neural cell cultures confirmed that miR-138-5p targets their 3′UTRs, reduces their expression and the enzymatic activity of CASP-3 and CASP-7, and protects cells from apoptotic stimuli. Subsequent RT-qPCR and histological analyses in a rat model of SCI revealed that miR-138-5p downregulation correlates with the overexpression of its pro-apoptotic targets. Our results suggest that the downregulation of miR-138-5p after SCI may have deleterious effects on neural cells, particularly on spinal neurons.
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spelling pubmed-93124822022-07-26 MicroRNA-138-5p Targets Pro-Apoptotic Factors and Favors Neural Cell Survival: Analysis in the Injured Spinal Cord Maza, Rodrigo M. Barreda-Manso, María Asunción Reigada, David Silván, Ágata Muñoz-Galdeano, Teresa Soto, Altea del Águila, Ángela Nieto-Díaz, Manuel Biomedicines Article The central nervous system microRNA miR-138-5p has attracted much attention in cancer research because it inhibits pro-apoptotic genes including CASP3. We hypothesize that miR-138-5p downregulation after SCI leads to overexpression of pro-apoptotic genes, sensitizing neural cells to noxious stimuli. This study aimed to identify miR-138-5p targets among pro-apoptotic genes overexpressed following SCI and to confirm that miR-138-5p modulates cell death in neural cells. Gene expression and histological analyses revealed that the drop in miR-138-5p expression after SCI is due to the massive loss of neurons and oligodendrocytes and its downregulation in neurons. Computational analyses identified 176 potential targets of miR-138-5p becoming dysregulated after SCI, including apoptotic proteins CASP-3 and CASP-7, and BAK. Reporter, RT-qPCR, and immunoblot assays in neural cell cultures confirmed that miR-138-5p targets their 3′UTRs, reduces their expression and the enzymatic activity of CASP-3 and CASP-7, and protects cells from apoptotic stimuli. Subsequent RT-qPCR and histological analyses in a rat model of SCI revealed that miR-138-5p downregulation correlates with the overexpression of its pro-apoptotic targets. Our results suggest that the downregulation of miR-138-5p after SCI may have deleterious effects on neural cells, particularly on spinal neurons. MDPI 2022-06-30 /pmc/articles/PMC9312482/ /pubmed/35884864 http://dx.doi.org/10.3390/biomedicines10071559 Text en © 2022 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
Maza, Rodrigo M.
Barreda-Manso, María Asunción
Reigada, David
Silván, Ágata
Muñoz-Galdeano, Teresa
Soto, Altea
del Águila, Ángela
Nieto-Díaz, Manuel
MicroRNA-138-5p Targets Pro-Apoptotic Factors and Favors Neural Cell Survival: Analysis in the Injured Spinal Cord
title MicroRNA-138-5p Targets Pro-Apoptotic Factors and Favors Neural Cell Survival: Analysis in the Injured Spinal Cord
title_full MicroRNA-138-5p Targets Pro-Apoptotic Factors and Favors Neural Cell Survival: Analysis in the Injured Spinal Cord
title_fullStr MicroRNA-138-5p Targets Pro-Apoptotic Factors and Favors Neural Cell Survival: Analysis in the Injured Spinal Cord
title_full_unstemmed MicroRNA-138-5p Targets Pro-Apoptotic Factors and Favors Neural Cell Survival: Analysis in the Injured Spinal Cord
title_short MicroRNA-138-5p Targets Pro-Apoptotic Factors and Favors Neural Cell Survival: Analysis in the Injured Spinal Cord
title_sort microrna-138-5p targets pro-apoptotic factors and favors neural cell survival: analysis in the injured spinal cord
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9312482/
https://www.ncbi.nlm.nih.gov/pubmed/35884864
http://dx.doi.org/10.3390/biomedicines10071559
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