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BCL11A mRNA Targeting by miR-210: A Possible Network Regulating γ-Globin Gene Expression

The involvement of microRNAs in the control of repressors of human γ-globin gene transcription has been firmly demonstrated, as described for the miR-486-3p mediated down-regulation of BCL11A. On the other hand, we have reported that miR-210 is involved in erythroid differentiation and, possibly, in...

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Autores principales: Gasparello, Jessica, Fabbri, Enrica, Bianchi, Nicoletta, Breveglieri, Giulia, Zuccato, Cristina, Borgatti, Monica, Gambari, Roberto, Finotti, Alessia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5751133/
https://www.ncbi.nlm.nih.gov/pubmed/29186860
http://dx.doi.org/10.3390/ijms18122530
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author Gasparello, Jessica
Fabbri, Enrica
Bianchi, Nicoletta
Breveglieri, Giulia
Zuccato, Cristina
Borgatti, Monica
Gambari, Roberto
Finotti, Alessia
author_facet Gasparello, Jessica
Fabbri, Enrica
Bianchi, Nicoletta
Breveglieri, Giulia
Zuccato, Cristina
Borgatti, Monica
Gambari, Roberto
Finotti, Alessia
author_sort Gasparello, Jessica
collection PubMed
description The involvement of microRNAs in the control of repressors of human γ-globin gene transcription has been firmly demonstrated, as described for the miR-486-3p mediated down-regulation of BCL11A. On the other hand, we have reported that miR-210 is involved in erythroid differentiation and, possibly, in γ-globin gene up-regulation. In the present study, we have identified the coding sequence of BCL11A as a possible target of miR-210. The following results sustain this hypothesis: (a) interactions between miR-210 and the miR-210 BCL11A site were demonstrated by SPR-based biomolecular interaction analysis (BIA); (b) the miR-210 site of BCL11A is conserved through molecular evolution; (c) forced expression of miR-210 leads to decrease of BCL11A-XL and increase of γ-globin mRNA content in erythroid cells, including erythroid precursors isolated from β-thalassemia patients. Our study suggests that the coding mRNA sequence of BCL11A can be targeted by miR-210. In addition to the theoretical point of view, these data are of interest from the applied point of view, supporting a novel strategy to inhibit BCL11A by mimicking miR-210 functions, accordingly with the concept supported by several papers and patent applications that inhibition of BCL11A is an efficient strategy for fetal hemoglobin induction in the treatment of β-thalassemia.
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spelling pubmed-57511332018-01-08 BCL11A mRNA Targeting by miR-210: A Possible Network Regulating γ-Globin Gene Expression Gasparello, Jessica Fabbri, Enrica Bianchi, Nicoletta Breveglieri, Giulia Zuccato, Cristina Borgatti, Monica Gambari, Roberto Finotti, Alessia Int J Mol Sci Article The involvement of microRNAs in the control of repressors of human γ-globin gene transcription has been firmly demonstrated, as described for the miR-486-3p mediated down-regulation of BCL11A. On the other hand, we have reported that miR-210 is involved in erythroid differentiation and, possibly, in γ-globin gene up-regulation. In the present study, we have identified the coding sequence of BCL11A as a possible target of miR-210. The following results sustain this hypothesis: (a) interactions between miR-210 and the miR-210 BCL11A site were demonstrated by SPR-based biomolecular interaction analysis (BIA); (b) the miR-210 site of BCL11A is conserved through molecular evolution; (c) forced expression of miR-210 leads to decrease of BCL11A-XL and increase of γ-globin mRNA content in erythroid cells, including erythroid precursors isolated from β-thalassemia patients. Our study suggests that the coding mRNA sequence of BCL11A can be targeted by miR-210. In addition to the theoretical point of view, these data are of interest from the applied point of view, supporting a novel strategy to inhibit BCL11A by mimicking miR-210 functions, accordingly with the concept supported by several papers and patent applications that inhibition of BCL11A is an efficient strategy for fetal hemoglobin induction in the treatment of β-thalassemia. MDPI 2017-11-26 /pmc/articles/PMC5751133/ /pubmed/29186860 http://dx.doi.org/10.3390/ijms18122530 Text en © 2017 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Gasparello, Jessica
Fabbri, Enrica
Bianchi, Nicoletta
Breveglieri, Giulia
Zuccato, Cristina
Borgatti, Monica
Gambari, Roberto
Finotti, Alessia
BCL11A mRNA Targeting by miR-210: A Possible Network Regulating γ-Globin Gene Expression
title BCL11A mRNA Targeting by miR-210: A Possible Network Regulating γ-Globin Gene Expression
title_full BCL11A mRNA Targeting by miR-210: A Possible Network Regulating γ-Globin Gene Expression
title_fullStr BCL11A mRNA Targeting by miR-210: A Possible Network Regulating γ-Globin Gene Expression
title_full_unstemmed BCL11A mRNA Targeting by miR-210: A Possible Network Regulating γ-Globin Gene Expression
title_short BCL11A mRNA Targeting by miR-210: A Possible Network Regulating γ-Globin Gene Expression
title_sort bcl11a mrna targeting by mir-210: a possible network regulating γ-globin gene expression
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5751133/
https://www.ncbi.nlm.nih.gov/pubmed/29186860
http://dx.doi.org/10.3390/ijms18122530
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