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miR-4482 and miR-3912 aim for 3ʹUTR of ERG mRNA in prostate cancer

Ets-related gene (ERG) is overexpressed as a fusion protein in prostate cancer. During metastasis, the pathological role of ERG is associated with cell proliferation, invasion, and angiogenesis. Here, we hypothesized that miRNAs regulate ERG expression through its 3ʹUTR. Several bioinformatics tools...

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Detalles Bibliográficos
Autores principales: Mumtaz, Sidra, Usman Rashid, Muhammad, Khan, Rizwan Ullah, Malkani, Naila
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10263311/
https://www.ncbi.nlm.nih.gov/pubmed/37310937
http://dx.doi.org/10.1371/journal.pone.0286996
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author Mumtaz, Sidra
Usman Rashid, Muhammad
Khan, Rizwan Ullah
Malkani, Naila
author_facet Mumtaz, Sidra
Usman Rashid, Muhammad
Khan, Rizwan Ullah
Malkani, Naila
author_sort Mumtaz, Sidra
collection PubMed
description Ets-related gene (ERG) is overexpressed as a fusion protein in prostate cancer. During metastasis, the pathological role of ERG is associated with cell proliferation, invasion, and angiogenesis. Here, we hypothesized that miRNAs regulate ERG expression through its 3ʹUTR. Several bioinformatics tools were used to identify miRNAs and their binding sites on 3ʹUTR of ERG. The selected miRNAs expression was analyzed in prostate cancer samples by qPCR. The miRNAs overexpression was induced in prostate cancer cells (VCaP) to analyze ERG expression. Reporter gene assay was performed to evaluate the ERG activity in response to selected miRNAs. The expression of ERG downstream target genes was also investigated through qPCR after miRNAs overexpression. To observe the effects of selected miRNAs on cell proliferation and migration, scratch assay was performed to calculate the cell migration rate. miR-4482 and miR-3912 were selected from bioinformatics databases. miR-4482 and -3912 expression were decreased in prostate cancer samples, as compared to controls (p<0.05 and p<0.001), respectively. Overexpression of miR-4482 and miR-3912 significantly reduced ERG mRNA (p<0.001 and p<0.01), respectively) and protein (p<0.01) in prostate cancer cells. The transcriptional activity of ERG was significantly reduced (p<0.01) in response to miR-4482 and-3912. ERG angiogenic targets and cell migration rate was also reduced significantly (p<0.001) after miR-4482 and -3912 over-expression. This study indicates that miR-4482 and -3912 can suppress the ERG expression and its target genes, thereby, halt prostate cancer progression. These miRNAs may be employed as a potential therapeutic target for the miRNA-based therapy against prostate cancer.
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spelling pubmed-102633112023-06-15 miR-4482 and miR-3912 aim for 3ʹUTR of ERG mRNA in prostate cancer Mumtaz, Sidra Usman Rashid, Muhammad Khan, Rizwan Ullah Malkani, Naila PLoS One Research Article Ets-related gene (ERG) is overexpressed as a fusion protein in prostate cancer. During metastasis, the pathological role of ERG is associated with cell proliferation, invasion, and angiogenesis. Here, we hypothesized that miRNAs regulate ERG expression through its 3ʹUTR. Several bioinformatics tools were used to identify miRNAs and their binding sites on 3ʹUTR of ERG. The selected miRNAs expression was analyzed in prostate cancer samples by qPCR. The miRNAs overexpression was induced in prostate cancer cells (VCaP) to analyze ERG expression. Reporter gene assay was performed to evaluate the ERG activity in response to selected miRNAs. The expression of ERG downstream target genes was also investigated through qPCR after miRNAs overexpression. To observe the effects of selected miRNAs on cell proliferation and migration, scratch assay was performed to calculate the cell migration rate. miR-4482 and miR-3912 were selected from bioinformatics databases. miR-4482 and -3912 expression were decreased in prostate cancer samples, as compared to controls (p<0.05 and p<0.001), respectively. Overexpression of miR-4482 and miR-3912 significantly reduced ERG mRNA (p<0.001 and p<0.01), respectively) and protein (p<0.01) in prostate cancer cells. The transcriptional activity of ERG was significantly reduced (p<0.01) in response to miR-4482 and-3912. ERG angiogenic targets and cell migration rate was also reduced significantly (p<0.001) after miR-4482 and -3912 over-expression. This study indicates that miR-4482 and -3912 can suppress the ERG expression and its target genes, thereby, halt prostate cancer progression. These miRNAs may be employed as a potential therapeutic target for the miRNA-based therapy against prostate cancer. Public Library of Science 2023-06-13 /pmc/articles/PMC10263311/ /pubmed/37310937 http://dx.doi.org/10.1371/journal.pone.0286996 Text en © 2023 Mumtaz et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Mumtaz, Sidra
Usman Rashid, Muhammad
Khan, Rizwan Ullah
Malkani, Naila
miR-4482 and miR-3912 aim for 3ʹUTR of ERG mRNA in prostate cancer
title miR-4482 and miR-3912 aim for 3ʹUTR of ERG mRNA in prostate cancer
title_full miR-4482 and miR-3912 aim for 3ʹUTR of ERG mRNA in prostate cancer
title_fullStr miR-4482 and miR-3912 aim for 3ʹUTR of ERG mRNA in prostate cancer
title_full_unstemmed miR-4482 and miR-3912 aim for 3ʹUTR of ERG mRNA in prostate cancer
title_short miR-4482 and miR-3912 aim for 3ʹUTR of ERG mRNA in prostate cancer
title_sort mir-4482 and mir-3912 aim for 3ʹutr of erg mrna in prostate cancer
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10263311/
https://www.ncbi.nlm.nih.gov/pubmed/37310937
http://dx.doi.org/10.1371/journal.pone.0286996
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