Cargando…

H-Ferritin-Regulated MicroRNAs Modulate Gene Expression in K562 Cells

In a previous study, we showed that the silencing of the heavy subunit (FHC) offerritin, the central iron storage molecule in the cell, is accompanied by a modification in global gene expression. In this work, we explored whether different FHC amounts might modulate miRNA expression levels in K562 c...

Descripción completa

Detalles Bibliográficos
Autores principales: Biamonte, Flavia, Zolea, Fabiana, Bisognin, Andrea, Di Sanzo, Maddalena, Saccoman, Claudia, Scumaci, Domenica, Aversa, Ilenia, Panebianco, Mariafranca, Faniello, Maria Concetta, Bortoluzzi, Stefania, Cuda, Giovanni, Costanzo, Francesco
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4376865/
https://www.ncbi.nlm.nih.gov/pubmed/25815883
http://dx.doi.org/10.1371/journal.pone.0122105
_version_ 1782363799519494144
author Biamonte, Flavia
Zolea, Fabiana
Bisognin, Andrea
Di Sanzo, Maddalena
Saccoman, Claudia
Scumaci, Domenica
Aversa, Ilenia
Panebianco, Mariafranca
Faniello, Maria Concetta
Bortoluzzi, Stefania
Cuda, Giovanni
Costanzo, Francesco
author_facet Biamonte, Flavia
Zolea, Fabiana
Bisognin, Andrea
Di Sanzo, Maddalena
Saccoman, Claudia
Scumaci, Domenica
Aversa, Ilenia
Panebianco, Mariafranca
Faniello, Maria Concetta
Bortoluzzi, Stefania
Cuda, Giovanni
Costanzo, Francesco
author_sort Biamonte, Flavia
collection PubMed
description In a previous study, we showed that the silencing of the heavy subunit (FHC) offerritin, the central iron storage molecule in the cell, is accompanied by a modification in global gene expression. In this work, we explored whether different FHC amounts might modulate miRNA expression levels in K562 cells and studied the impact of miRNAs in gene expression profile modifications. To this aim, we performed a miRNA-mRNA integrative analysis in K562 silenced for FHC (K562(shFHC)) comparing it with K562 transduced with scrambled RNA (K562(shRNA)). Four miRNAs, namely hsa-let-7g, hsa-let-7f, hsa-let-7i and hsa-miR-125b, were significantly up-regulated in silenced cells. The remarkable down-regulation of these miRNAs, following FHC expression rescue, supports a specific relation between FHC silencing and miRNA-modulation. The integration of target predictions with miRNA and gene expression profiles led to the identification of a regulatory network which includes the miRNAs up-regulated by FHC silencing, as well as91 down-regulated putative target genes. These genes were further classified in 9 networks; the highest scoring network, “Cell Death and Survival, Hematological System Development and Function, Hematopoiesis”, is composed by 18 focus molecules including RAF1 and ERK1/2. We confirmed that, following FHC silencing, ERK1/2 phosphorylation is severely impaired and that RAF1 mRNA is significantly down-regulated. Taken all together, our data indicate that, in our experimental model, FHC silencing may affect RAF1/pERK1/2 levels through the modulation of a specific set of miRNAs and add new insights in to the relationship among iron homeostasis and miRNAs.
format Online
Article
Text
id pubmed-4376865
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-43768652015-04-04 H-Ferritin-Regulated MicroRNAs Modulate Gene Expression in K562 Cells Biamonte, Flavia Zolea, Fabiana Bisognin, Andrea Di Sanzo, Maddalena Saccoman, Claudia Scumaci, Domenica Aversa, Ilenia Panebianco, Mariafranca Faniello, Maria Concetta Bortoluzzi, Stefania Cuda, Giovanni Costanzo, Francesco PLoS One Research Article In a previous study, we showed that the silencing of the heavy subunit (FHC) offerritin, the central iron storage molecule in the cell, is accompanied by a modification in global gene expression. In this work, we explored whether different FHC amounts might modulate miRNA expression levels in K562 cells and studied the impact of miRNAs in gene expression profile modifications. To this aim, we performed a miRNA-mRNA integrative analysis in K562 silenced for FHC (K562(shFHC)) comparing it with K562 transduced with scrambled RNA (K562(shRNA)). Four miRNAs, namely hsa-let-7g, hsa-let-7f, hsa-let-7i and hsa-miR-125b, were significantly up-regulated in silenced cells. The remarkable down-regulation of these miRNAs, following FHC expression rescue, supports a specific relation between FHC silencing and miRNA-modulation. The integration of target predictions with miRNA and gene expression profiles led to the identification of a regulatory network which includes the miRNAs up-regulated by FHC silencing, as well as91 down-regulated putative target genes. These genes were further classified in 9 networks; the highest scoring network, “Cell Death and Survival, Hematological System Development and Function, Hematopoiesis”, is composed by 18 focus molecules including RAF1 and ERK1/2. We confirmed that, following FHC silencing, ERK1/2 phosphorylation is severely impaired and that RAF1 mRNA is significantly down-regulated. Taken all together, our data indicate that, in our experimental model, FHC silencing may affect RAF1/pERK1/2 levels through the modulation of a specific set of miRNAs and add new insights in to the relationship among iron homeostasis and miRNAs. Public Library of Science 2015-03-27 /pmc/articles/PMC4376865/ /pubmed/25815883 http://dx.doi.org/10.1371/journal.pone.0122105 Text en © 2015 Biamonte et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Biamonte, Flavia
Zolea, Fabiana
Bisognin, Andrea
Di Sanzo, Maddalena
Saccoman, Claudia
Scumaci, Domenica
Aversa, Ilenia
Panebianco, Mariafranca
Faniello, Maria Concetta
Bortoluzzi, Stefania
Cuda, Giovanni
Costanzo, Francesco
H-Ferritin-Regulated MicroRNAs Modulate Gene Expression in K562 Cells
title H-Ferritin-Regulated MicroRNAs Modulate Gene Expression in K562 Cells
title_full H-Ferritin-Regulated MicroRNAs Modulate Gene Expression in K562 Cells
title_fullStr H-Ferritin-Regulated MicroRNAs Modulate Gene Expression in K562 Cells
title_full_unstemmed H-Ferritin-Regulated MicroRNAs Modulate Gene Expression in K562 Cells
title_short H-Ferritin-Regulated MicroRNAs Modulate Gene Expression in K562 Cells
title_sort h-ferritin-regulated micrornas modulate gene expression in k562 cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4376865/
https://www.ncbi.nlm.nih.gov/pubmed/25815883
http://dx.doi.org/10.1371/journal.pone.0122105
work_keys_str_mv AT biamonteflavia hferritinregulatedmicrornasmodulategeneexpressionink562cells
AT zoleafabiana hferritinregulatedmicrornasmodulategeneexpressionink562cells
AT bisogninandrea hferritinregulatedmicrornasmodulategeneexpressionink562cells
AT disanzomaddalena hferritinregulatedmicrornasmodulategeneexpressionink562cells
AT saccomanclaudia hferritinregulatedmicrornasmodulategeneexpressionink562cells
AT scumacidomenica hferritinregulatedmicrornasmodulategeneexpressionink562cells
AT aversailenia hferritinregulatedmicrornasmodulategeneexpressionink562cells
AT panebiancomariafranca hferritinregulatedmicrornasmodulategeneexpressionink562cells
AT faniellomariaconcetta hferritinregulatedmicrornasmodulategeneexpressionink562cells
AT bortoluzzistefania hferritinregulatedmicrornasmodulategeneexpressionink562cells
AT cudagiovanni hferritinregulatedmicrornasmodulategeneexpressionink562cells
AT costanzofrancesco hferritinregulatedmicrornasmodulategeneexpressionink562cells