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Identification of nuclear-enriched miRNAs during mouse granulopoiesis

BACKGROUND: MicroRNAs (miRNAs) are coordinators of cellular differentiation, including granulopoiesis. Although differential expression of many miRNAs is associated with the maturation of granulocytes, analysis of differentially expressed miRNAs and their cellular localization across all stages of g...

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Autores principales: Wong, Justin JL, Ritchie, William, Gao, Dadi, Lau, Katherine A, Gonzalez, Maria, Choudhary, Anupma, Taft, Ryan J, Rasko, John EJ, Holst, Jeff
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4046156/
https://www.ncbi.nlm.nih.gov/pubmed/24886830
http://dx.doi.org/10.1186/1756-8722-7-42
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author Wong, Justin JL
Ritchie, William
Gao, Dadi
Lau, Katherine A
Gonzalez, Maria
Choudhary, Anupma
Taft, Ryan J
Rasko, John EJ
Holst, Jeff
author_facet Wong, Justin JL
Ritchie, William
Gao, Dadi
Lau, Katherine A
Gonzalez, Maria
Choudhary, Anupma
Taft, Ryan J
Rasko, John EJ
Holst, Jeff
author_sort Wong, Justin JL
collection PubMed
description BACKGROUND: MicroRNAs (miRNAs) are coordinators of cellular differentiation, including granulopoiesis. Although differential expression of many miRNAs is associated with the maturation of granulocytes, analysis of differentially expressed miRNAs and their cellular localization across all stages of granulopoiesis, starting from hemopoietic stems cells, is not well characterized. METHODS: We analyzed whole cell miRNA and mRNA expression during granulopoiesis using Taqman low-density and Affymetrix arrays respectively. We also performed nuclear and cytoplasmic fractionation followed by Taqman low-density array and/or quantitative PCR to identify nuclear-enriched miRNAs in hemopoietic stem/progenitor cells, promyelocytes, myelocytes, granulocytes and several hemopoietic cell lines. Anti-correlation between the expression of miRNA and target pairs was used to determine putative miRNA targets. RESULTS: Analyses of our array data revealed distinct clusters of differentially expressed miRNAs that are specific to promyelocytes and granulocytes. While the roles of many of these miRNAs in granulopoiesis are not currently known, anti-correlation of the expression of miRNA/mRNA target pairs identified a suite of novel target genes. Clusters of miRNAs (including members of the let-7 and miR-17-92 families) are downregulated in hemopoietic stem/progenitor cells, potentially allowing the expression of target genes known to facilitate stem cell proliferation and homeostasis. Additionally, four miRNAs (miR-709, miR-706, miR-690 and miR-467a*) were found to be enriched in the nucleus of myeloid cells and multiple hemopoietic cell lines compared to other miRNAs, which are predominantly cytoplasmic-enriched. Both miR-709 and miR-706 are nuclear-enriched throughout granulopoiesis and have putative binding sites of extensive complementarity downstream of pri-miRNAs. Nuclear enrichment of miR-467a* is specific to hemopoietic stem/progenitors and promyelocytes. These miRNAs are also nuclear-enriched in other hemopoietic cell lines, where nuclear sequestering may fine-tune the expression of cytoplasmic mRNA targets. CONCLUSIONS: Overall, we have demonstrated differentially expressed miRNAs that have not previously been associated with hemopoietic differentiation and provided further evidence of regulated nuclear-enrichment of miRNAs. Further studies into miRNA function in granulocyte development may shed light on fundamental aspects of regulatory RNA biology and the role of nuclear miRNAs.
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spelling pubmed-40461562014-06-06 Identification of nuclear-enriched miRNAs during mouse granulopoiesis Wong, Justin JL Ritchie, William Gao, Dadi Lau, Katherine A Gonzalez, Maria Choudhary, Anupma Taft, Ryan J Rasko, John EJ Holst, Jeff J Hematol Oncol Research BACKGROUND: MicroRNAs (miRNAs) are coordinators of cellular differentiation, including granulopoiesis. Although differential expression of many miRNAs is associated with the maturation of granulocytes, analysis of differentially expressed miRNAs and their cellular localization across all stages of granulopoiesis, starting from hemopoietic stems cells, is not well characterized. METHODS: We analyzed whole cell miRNA and mRNA expression during granulopoiesis using Taqman low-density and Affymetrix arrays respectively. We also performed nuclear and cytoplasmic fractionation followed by Taqman low-density array and/or quantitative PCR to identify nuclear-enriched miRNAs in hemopoietic stem/progenitor cells, promyelocytes, myelocytes, granulocytes and several hemopoietic cell lines. Anti-correlation between the expression of miRNA and target pairs was used to determine putative miRNA targets. RESULTS: Analyses of our array data revealed distinct clusters of differentially expressed miRNAs that are specific to promyelocytes and granulocytes. While the roles of many of these miRNAs in granulopoiesis are not currently known, anti-correlation of the expression of miRNA/mRNA target pairs identified a suite of novel target genes. Clusters of miRNAs (including members of the let-7 and miR-17-92 families) are downregulated in hemopoietic stem/progenitor cells, potentially allowing the expression of target genes known to facilitate stem cell proliferation and homeostasis. Additionally, four miRNAs (miR-709, miR-706, miR-690 and miR-467a*) were found to be enriched in the nucleus of myeloid cells and multiple hemopoietic cell lines compared to other miRNAs, which are predominantly cytoplasmic-enriched. Both miR-709 and miR-706 are nuclear-enriched throughout granulopoiesis and have putative binding sites of extensive complementarity downstream of pri-miRNAs. Nuclear enrichment of miR-467a* is specific to hemopoietic stem/progenitors and promyelocytes. These miRNAs are also nuclear-enriched in other hemopoietic cell lines, where nuclear sequestering may fine-tune the expression of cytoplasmic mRNA targets. CONCLUSIONS: Overall, we have demonstrated differentially expressed miRNAs that have not previously been associated with hemopoietic differentiation and provided further evidence of regulated nuclear-enrichment of miRNAs. Further studies into miRNA function in granulocyte development may shed light on fundamental aspects of regulatory RNA biology and the role of nuclear miRNAs. BioMed Central 2014-05-15 /pmc/articles/PMC4046156/ /pubmed/24886830 http://dx.doi.org/10.1186/1756-8722-7-42 Text en Copyright © 2014 Wong et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/4.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly credited. 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
Wong, Justin JL
Ritchie, William
Gao, Dadi
Lau, Katherine A
Gonzalez, Maria
Choudhary, Anupma
Taft, Ryan J
Rasko, John EJ
Holst, Jeff
Identification of nuclear-enriched miRNAs during mouse granulopoiesis
title Identification of nuclear-enriched miRNAs during mouse granulopoiesis
title_full Identification of nuclear-enriched miRNAs during mouse granulopoiesis
title_fullStr Identification of nuclear-enriched miRNAs during mouse granulopoiesis
title_full_unstemmed Identification of nuclear-enriched miRNAs during mouse granulopoiesis
title_short Identification of nuclear-enriched miRNAs during mouse granulopoiesis
title_sort identification of nuclear-enriched mirnas during mouse granulopoiesis
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4046156/
https://www.ncbi.nlm.nih.gov/pubmed/24886830
http://dx.doi.org/10.1186/1756-8722-7-42
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