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Hsa-miR-183-5p Modulates Cell Adhesion by Repression of ITGB1 Expression in Prostate Cancer

Prostate cancer is a major health problem worldwide. MiR-183 is an oncomiR and a candidate biomarker in prostate cancer, affecting various pathways responsible for disease initiation and progression. We sought to discover the most relevant processes controlled by miR-183 through an unbiased transcri...

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Autores principales: Oliveira-Rizzo, Carolina, Ottati, María Carolina, Fort, Rafael Sebastián, Chavez, Santiago, Trinidad, Juan Manuel, DiPaolo, Andrés, Garat, Beatriz, Sotelo-Silveira, José Roberto, Duhagon, María Ana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8875343/
https://www.ncbi.nlm.nih.gov/pubmed/35202085
http://dx.doi.org/10.3390/ncrna8010011
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author Oliveira-Rizzo, Carolina
Ottati, María Carolina
Fort, Rafael Sebastián
Chavez, Santiago
Trinidad, Juan Manuel
DiPaolo, Andrés
Garat, Beatriz
Sotelo-Silveira, José Roberto
Duhagon, María Ana
author_facet Oliveira-Rizzo, Carolina
Ottati, María Carolina
Fort, Rafael Sebastián
Chavez, Santiago
Trinidad, Juan Manuel
DiPaolo, Andrés
Garat, Beatriz
Sotelo-Silveira, José Roberto
Duhagon, María Ana
author_sort Oliveira-Rizzo, Carolina
collection PubMed
description Prostate cancer is a major health problem worldwide. MiR-183 is an oncomiR and a candidate biomarker in prostate cancer, affecting various pathways responsible for disease initiation and progression. We sought to discover the most relevant processes controlled by miR-183 through an unbiased transcriptomic approach using prostate cell lines and patient tissues to identify miR-183 responsive genes and pathways. Gain of function experiments, reporter gene assays, and transcript and protein measurements were conducted to validate predicted functional effects and protein mediators. A total of 135 candidate miR-183 target genes overrepresenting cell adhesion terms were inferred from the integrated transcriptomic analysis. Cell attachment, spreading assays and focal adhesion quantification of miR-183-overexpressing cells confirmed the predicted reduction in cell adhesion. ITGB1 was validated as a major target of repression by miR-183 as well as a mediator of cell adhesion in response to miR-183. The reporter gene assay and PAR-CLIP read mapping suggest that ITGB1 may be a direct target of miR-183. The negative correlation between miR-183 and ITGB1 expression in prostate cancer cohorts supports their interaction in the clinical set. Overall, cell adhesion was uncovered as a major pathway controlled by miR-183 in prostate cancer, and ITGB1 was identified as a relevant mediator of this effect.
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spelling pubmed-88753432022-02-26 Hsa-miR-183-5p Modulates Cell Adhesion by Repression of ITGB1 Expression in Prostate Cancer Oliveira-Rizzo, Carolina Ottati, María Carolina Fort, Rafael Sebastián Chavez, Santiago Trinidad, Juan Manuel DiPaolo, Andrés Garat, Beatriz Sotelo-Silveira, José Roberto Duhagon, María Ana Noncoding RNA Article Prostate cancer is a major health problem worldwide. MiR-183 is an oncomiR and a candidate biomarker in prostate cancer, affecting various pathways responsible for disease initiation and progression. We sought to discover the most relevant processes controlled by miR-183 through an unbiased transcriptomic approach using prostate cell lines and patient tissues to identify miR-183 responsive genes and pathways. Gain of function experiments, reporter gene assays, and transcript and protein measurements were conducted to validate predicted functional effects and protein mediators. A total of 135 candidate miR-183 target genes overrepresenting cell adhesion terms were inferred from the integrated transcriptomic analysis. Cell attachment, spreading assays and focal adhesion quantification of miR-183-overexpressing cells confirmed the predicted reduction in cell adhesion. ITGB1 was validated as a major target of repression by miR-183 as well as a mediator of cell adhesion in response to miR-183. The reporter gene assay and PAR-CLIP read mapping suggest that ITGB1 may be a direct target of miR-183. The negative correlation between miR-183 and ITGB1 expression in prostate cancer cohorts supports their interaction in the clinical set. Overall, cell adhesion was uncovered as a major pathway controlled by miR-183 in prostate cancer, and ITGB1 was identified as a relevant mediator of this effect. MDPI 2022-01-18 /pmc/articles/PMC8875343/ /pubmed/35202085 http://dx.doi.org/10.3390/ncrna8010011 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
Oliveira-Rizzo, Carolina
Ottati, María Carolina
Fort, Rafael Sebastián
Chavez, Santiago
Trinidad, Juan Manuel
DiPaolo, Andrés
Garat, Beatriz
Sotelo-Silveira, José Roberto
Duhagon, María Ana
Hsa-miR-183-5p Modulates Cell Adhesion by Repression of ITGB1 Expression in Prostate Cancer
title Hsa-miR-183-5p Modulates Cell Adhesion by Repression of ITGB1 Expression in Prostate Cancer
title_full Hsa-miR-183-5p Modulates Cell Adhesion by Repression of ITGB1 Expression in Prostate Cancer
title_fullStr Hsa-miR-183-5p Modulates Cell Adhesion by Repression of ITGB1 Expression in Prostate Cancer
title_full_unstemmed Hsa-miR-183-5p Modulates Cell Adhesion by Repression of ITGB1 Expression in Prostate Cancer
title_short Hsa-miR-183-5p Modulates Cell Adhesion by Repression of ITGB1 Expression in Prostate Cancer
title_sort hsa-mir-183-5p modulates cell adhesion by repression of itgb1 expression in prostate cancer
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8875343/
https://www.ncbi.nlm.nih.gov/pubmed/35202085
http://dx.doi.org/10.3390/ncrna8010011
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