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Epigenetic Downregulation of Hsa-miR-193b-3p Increases Cyclin D1 Expression Level and Cell Proliferation in Human Meningiomas

Meningiomas are common intracranial tumors in adults. Abnormal microRNA (miRNA) expression plays a role in their pathogenesis. Change in miRNA expression level can be caused by impaired epigenetic regulation of miRNA-encoding genes. We found the genomic region covering the MIR193B gene to be DNA hyp...

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Autores principales: Kober, Paulina, Mossakowska, Beata Joanna, Rusetska, Natalia, Baluszek, Szymon, Grecka, Emilia, Konopiński, Ryszard, Matyja, Ewa, Oziębło, Artur, Mandat, Tomasz, Bujko, Mateusz
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10487813/
https://www.ncbi.nlm.nih.gov/pubmed/37686289
http://dx.doi.org/10.3390/ijms241713483
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author Kober, Paulina
Mossakowska, Beata Joanna
Rusetska, Natalia
Baluszek, Szymon
Grecka, Emilia
Konopiński, Ryszard
Matyja, Ewa
Oziębło, Artur
Mandat, Tomasz
Bujko, Mateusz
author_facet Kober, Paulina
Mossakowska, Beata Joanna
Rusetska, Natalia
Baluszek, Szymon
Grecka, Emilia
Konopiński, Ryszard
Matyja, Ewa
Oziębło, Artur
Mandat, Tomasz
Bujko, Mateusz
author_sort Kober, Paulina
collection PubMed
description Meningiomas are common intracranial tumors in adults. Abnormal microRNA (miRNA) expression plays a role in their pathogenesis. Change in miRNA expression level can be caused by impaired epigenetic regulation of miRNA-encoding genes. We found the genomic region covering the MIR193B gene to be DNA hypermethylated in meningiomas based on analysis of genome-wide methylation (HumanMethylation450K Illumina arrays). Hypermethylation of MIR193B was also confirmed via bisulfite pyrosequencing. Both hsa-miR-193b-3p and hsa-miR-193b-5p are downregulated in meningiomas. Lower expression of hsa-miR-193b-3p and higher MIR193B methylation was observed in World Health Organization (WHO) grade (G) II/III tumors as compared to GI meningiomas. CCND1 mRNA was identified as a target of hsa-miR-193b-3p as further validated using luciferase reporter assay in IOMM-Lee meningioma cells. IOMM-Lee cells transfected with hsa-miR-193b-3p mimic showed a decreased cyclin D1 level and lower cell viability and proliferation, confirming the suppressive nature of this miRNA. Cyclin D1 protein expression (immunoreactivity) was higher in atypical than in benign meningiomas, accordingly to observations of lower hsa-miR-193b-3p levels in GII tumors. The commonly observed hypermethylation of MIR193B in meningiomas apparently contributes to the downregulation of hsa-miR-193b-3p. Since hsa-miR-193b-3p regulates proliferation of meningioma cells through negative regulation of cyclin D1 expression, it seems to be an important tumor suppressor in meningiomas.
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spelling pubmed-104878132023-09-09 Epigenetic Downregulation of Hsa-miR-193b-3p Increases Cyclin D1 Expression Level and Cell Proliferation in Human Meningiomas Kober, Paulina Mossakowska, Beata Joanna Rusetska, Natalia Baluszek, Szymon Grecka, Emilia Konopiński, Ryszard Matyja, Ewa Oziębło, Artur Mandat, Tomasz Bujko, Mateusz Int J Mol Sci Article Meningiomas are common intracranial tumors in adults. Abnormal microRNA (miRNA) expression plays a role in their pathogenesis. Change in miRNA expression level can be caused by impaired epigenetic regulation of miRNA-encoding genes. We found the genomic region covering the MIR193B gene to be DNA hypermethylated in meningiomas based on analysis of genome-wide methylation (HumanMethylation450K Illumina arrays). Hypermethylation of MIR193B was also confirmed via bisulfite pyrosequencing. Both hsa-miR-193b-3p and hsa-miR-193b-5p are downregulated in meningiomas. Lower expression of hsa-miR-193b-3p and higher MIR193B methylation was observed in World Health Organization (WHO) grade (G) II/III tumors as compared to GI meningiomas. CCND1 mRNA was identified as a target of hsa-miR-193b-3p as further validated using luciferase reporter assay in IOMM-Lee meningioma cells. IOMM-Lee cells transfected with hsa-miR-193b-3p mimic showed a decreased cyclin D1 level and lower cell viability and proliferation, confirming the suppressive nature of this miRNA. Cyclin D1 protein expression (immunoreactivity) was higher in atypical than in benign meningiomas, accordingly to observations of lower hsa-miR-193b-3p levels in GII tumors. The commonly observed hypermethylation of MIR193B in meningiomas apparently contributes to the downregulation of hsa-miR-193b-3p. Since hsa-miR-193b-3p regulates proliferation of meningioma cells through negative regulation of cyclin D1 expression, it seems to be an important tumor suppressor in meningiomas. MDPI 2023-08-30 /pmc/articles/PMC10487813/ /pubmed/37686289 http://dx.doi.org/10.3390/ijms241713483 Text en © 2023 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
Kober, Paulina
Mossakowska, Beata Joanna
Rusetska, Natalia
Baluszek, Szymon
Grecka, Emilia
Konopiński, Ryszard
Matyja, Ewa
Oziębło, Artur
Mandat, Tomasz
Bujko, Mateusz
Epigenetic Downregulation of Hsa-miR-193b-3p Increases Cyclin D1 Expression Level and Cell Proliferation in Human Meningiomas
title Epigenetic Downregulation of Hsa-miR-193b-3p Increases Cyclin D1 Expression Level and Cell Proliferation in Human Meningiomas
title_full Epigenetic Downregulation of Hsa-miR-193b-3p Increases Cyclin D1 Expression Level and Cell Proliferation in Human Meningiomas
title_fullStr Epigenetic Downregulation of Hsa-miR-193b-3p Increases Cyclin D1 Expression Level and Cell Proliferation in Human Meningiomas
title_full_unstemmed Epigenetic Downregulation of Hsa-miR-193b-3p Increases Cyclin D1 Expression Level and Cell Proliferation in Human Meningiomas
title_short Epigenetic Downregulation of Hsa-miR-193b-3p Increases Cyclin D1 Expression Level and Cell Proliferation in Human Meningiomas
title_sort epigenetic downregulation of hsa-mir-193b-3p increases cyclin d1 expression level and cell proliferation in human meningiomas
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10487813/
https://www.ncbi.nlm.nih.gov/pubmed/37686289
http://dx.doi.org/10.3390/ijms241713483
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