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miRNome landscape analysis reveals a 30 miRNA core in retinoblastoma

BACKGROUND: miRNAs exert their effect through a negative regulatory mechanism silencing expression upon hybridizing to their target mRNA, and have a prominent position in the control of many cellular processes including carcinogenesis. Previous miRNA studies on retinoblastoma (Rb) have been limited...

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Autores principales: Castro-Magdonel, Blanca Elena, Orjuela, Manuela, Camacho, Javier, García-Chéquer, Adda Jeanette, Cabrera-Muñoz, Lourdes, Sadowinski-Pine, Stanislaw, Durán-Figueroa, Noé, Orozco-Romero, María de Jesús, Velázquez-Wong, Ana Claudia, Hernández-Ángeles, Adriana, Hernández-Galván, Claudia, Lara-Molina, Citlali, Ponce-Castañeda, M. Verónica
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5493862/
https://www.ncbi.nlm.nih.gov/pubmed/28668075
http://dx.doi.org/10.1186/s12885-017-3421-3
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author Castro-Magdonel, Blanca Elena
Orjuela, Manuela
Camacho, Javier
García-Chéquer, Adda Jeanette
Cabrera-Muñoz, Lourdes
Sadowinski-Pine, Stanislaw
Durán-Figueroa, Noé
Orozco-Romero, María de Jesús
Velázquez-Wong, Ana Claudia
Hernández-Ángeles, Adriana
Hernández-Galván, Claudia
Lara-Molina, Citlali
Ponce-Castañeda, M. Verónica
author_facet Castro-Magdonel, Blanca Elena
Orjuela, Manuela
Camacho, Javier
García-Chéquer, Adda Jeanette
Cabrera-Muñoz, Lourdes
Sadowinski-Pine, Stanislaw
Durán-Figueroa, Noé
Orozco-Romero, María de Jesús
Velázquez-Wong, Ana Claudia
Hernández-Ángeles, Adriana
Hernández-Galván, Claudia
Lara-Molina, Citlali
Ponce-Castañeda, M. Verónica
author_sort Castro-Magdonel, Blanca Elena
collection PubMed
description BACKGROUND: miRNAs exert their effect through a negative regulatory mechanism silencing expression upon hybridizing to their target mRNA, and have a prominent position in the control of many cellular processes including carcinogenesis. Previous miRNA studies on retinoblastoma (Rb) have been limited to specific miRNAs reported in other tumors or to medium density arrays. Here we report expression analysis of the whole miRNome on 12 retinoblastoma tumor samples using a high throughput microarray platform including 2578 mature miRNAs. METHODS: Twelve retinoblastoma tumor samples were analyzed using an Affymetrix platform including 2578 mature miRNAs. We applied RMA analysis to normalize raw data, obtained categorical data from detection call values, and also used signal intensity derived expression data. We used Diana-Tools-microT-CDS to find miRNA targets and ChromDraw to map miRNAs in chromosomes. RESULTS: We discovered a core-cluster of 30 miRNAs that were highly expressed in all the cases and a cluster of 993 miRNAs that were uniformly absent in all cases. Another 1022 miRNA were variably present in the samples reflecting heterogeneity between tumors. We explored mRNA targets, pathways and biological processes affected by some of these miRNAs. We propose that the core-cluster of 30 miRs represent miRNA machinery common to all Rb, and affecting most pathways considered hallmarks of cancer. In this core, we identified miR-3613 as a potential and critical down regulatory hub, because it is highly expressed in all the samples and its potential mRNA targets include at least 36 tumor suppressor genes, including RB1. In the variably expressed miRNA, 36 were differentially expressed between males and females. Some of the potential pathways targeted by these 36 miRNAs were associated with hormonal production. CONCLUSION: These findings indicate that Rb tumor samples share a common miRNA expression profile regardless of tumor heterogeneity, and shed light on potential novel therapeutic targets such as mir-3613 This is the first work to delineate the miRNA landscape in retinoblastoma tumor samples using an unbiased approach. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s12885-017-3421-3) contains supplementary material, which is available to authorized users.
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spelling pubmed-54938622017-07-05 miRNome landscape analysis reveals a 30 miRNA core in retinoblastoma Castro-Magdonel, Blanca Elena Orjuela, Manuela Camacho, Javier García-Chéquer, Adda Jeanette Cabrera-Muñoz, Lourdes Sadowinski-Pine, Stanislaw Durán-Figueroa, Noé Orozco-Romero, María de Jesús Velázquez-Wong, Ana Claudia Hernández-Ángeles, Adriana Hernández-Galván, Claudia Lara-Molina, Citlali Ponce-Castañeda, M. Verónica BMC Cancer Research Article BACKGROUND: miRNAs exert their effect through a negative regulatory mechanism silencing expression upon hybridizing to their target mRNA, and have a prominent position in the control of many cellular processes including carcinogenesis. Previous miRNA studies on retinoblastoma (Rb) have been limited to specific miRNAs reported in other tumors or to medium density arrays. Here we report expression analysis of the whole miRNome on 12 retinoblastoma tumor samples using a high throughput microarray platform including 2578 mature miRNAs. METHODS: Twelve retinoblastoma tumor samples were analyzed using an Affymetrix platform including 2578 mature miRNAs. We applied RMA analysis to normalize raw data, obtained categorical data from detection call values, and also used signal intensity derived expression data. We used Diana-Tools-microT-CDS to find miRNA targets and ChromDraw to map miRNAs in chromosomes. RESULTS: We discovered a core-cluster of 30 miRNAs that were highly expressed in all the cases and a cluster of 993 miRNAs that were uniformly absent in all cases. Another 1022 miRNA were variably present in the samples reflecting heterogeneity between tumors. We explored mRNA targets, pathways and biological processes affected by some of these miRNAs. We propose that the core-cluster of 30 miRs represent miRNA machinery common to all Rb, and affecting most pathways considered hallmarks of cancer. In this core, we identified miR-3613 as a potential and critical down regulatory hub, because it is highly expressed in all the samples and its potential mRNA targets include at least 36 tumor suppressor genes, including RB1. In the variably expressed miRNA, 36 were differentially expressed between males and females. Some of the potential pathways targeted by these 36 miRNAs were associated with hormonal production. CONCLUSION: These findings indicate that Rb tumor samples share a common miRNA expression profile regardless of tumor heterogeneity, and shed light on potential novel therapeutic targets such as mir-3613 This is the first work to delineate the miRNA landscape in retinoblastoma tumor samples using an unbiased approach. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s12885-017-3421-3) contains supplementary material, which is available to authorized users. BioMed Central 2017-07-01 /pmc/articles/PMC5493862/ /pubmed/28668075 http://dx.doi.org/10.1186/s12885-017-3421-3 Text en © The Author(s). 2017 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research Article
Castro-Magdonel, Blanca Elena
Orjuela, Manuela
Camacho, Javier
García-Chéquer, Adda Jeanette
Cabrera-Muñoz, Lourdes
Sadowinski-Pine, Stanislaw
Durán-Figueroa, Noé
Orozco-Romero, María de Jesús
Velázquez-Wong, Ana Claudia
Hernández-Ángeles, Adriana
Hernández-Galván, Claudia
Lara-Molina, Citlali
Ponce-Castañeda, M. Verónica
miRNome landscape analysis reveals a 30 miRNA core in retinoblastoma
title miRNome landscape analysis reveals a 30 miRNA core in retinoblastoma
title_full miRNome landscape analysis reveals a 30 miRNA core in retinoblastoma
title_fullStr miRNome landscape analysis reveals a 30 miRNA core in retinoblastoma
title_full_unstemmed miRNome landscape analysis reveals a 30 miRNA core in retinoblastoma
title_short miRNome landscape analysis reveals a 30 miRNA core in retinoblastoma
title_sort mirnome landscape analysis reveals a 30 mirna core in retinoblastoma
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5493862/
https://www.ncbi.nlm.nih.gov/pubmed/28668075
http://dx.doi.org/10.1186/s12885-017-3421-3
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