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Silencing of miR-370 in Human Cholangiocarcinoma by Allelic Loss and Interleukin-6 Induced Maternal to Paternal Epigenotype Switch

Cholangiocarcinoma (CCA) is a highly lethal malignant tumor arising from the biliary tract epithelium. Interleukin-6 (IL-6) is a major mediator of inflammation and contributor to carcinogenesis within the biliary tree. Previous studies suggested that enforced IL-6 contributes to cholangiocarcinogene...

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Autores principales: An, Fangmei, Yamanaka, Sumitaka, Allen, Sarah, Roberts, Lewis R., Gores, Gregory J., Pawlik, Timothy M., Xie, Qing, Ishida, Masaharu, Mezey, Esteban, Ferguson-Smith, Anne C., Mori, Yuriko, Selaru, Florin M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3478287/
https://www.ncbi.nlm.nih.gov/pubmed/23110045
http://dx.doi.org/10.1371/journal.pone.0045606
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author An, Fangmei
Yamanaka, Sumitaka
Allen, Sarah
Roberts, Lewis R.
Gores, Gregory J.
Pawlik, Timothy M.
Xie, Qing
Ishida, Masaharu
Mezey, Esteban
Ferguson-Smith, Anne C.
Mori, Yuriko
Selaru, Florin M.
author_facet An, Fangmei
Yamanaka, Sumitaka
Allen, Sarah
Roberts, Lewis R.
Gores, Gregory J.
Pawlik, Timothy M.
Xie, Qing
Ishida, Masaharu
Mezey, Esteban
Ferguson-Smith, Anne C.
Mori, Yuriko
Selaru, Florin M.
author_sort An, Fangmei
collection PubMed
description Cholangiocarcinoma (CCA) is a highly lethal malignant tumor arising from the biliary tract epithelium. Interleukin-6 (IL-6) is a major mediator of inflammation and contributor to carcinogenesis within the biliary tree. Previous studies suggested that enforced IL-6 contributes to cholangiocarcinogenesis through hypermethylation of several genes implicated in CCA. However, the precise mechanisms of IL-6 effects in CCA remain unclear. We now demonstrate that microRNA (miR)-370 is underexpressed in a large cohort of human CCA vs. normal liver tissues. In addition, we show that IL-6 induces a time-dependent silencing of miR-370. In addition, demethylation of CCA cells results in upregulation of miR-370. Furthermore, we demonstrate that miR-370 is imprinted, and that the Intergenic Differentially Methylated Region (IG-DMR) responsible for imprinting regulation of this genomic locus is hypermethylated in response to IL-6 treatment. In addition, the IG-DMR is hypermethylated in human CCA specimens compared to normal matched controls, in the same location as the IL-6 induced hypermethylation. Finally, miR-370 was found to regulate WNT10B in luciferase as well as western blotting experiments. Our data indicate that the paternal allele of miR-370 is normally silenced through genomic imprinting and that the overexpression of IL-6 in CCA effectively suppresses the expression of miR-370 from the maternal allele, lending support to the theory that miR-370 silencing in human CCA follows a classic two-hit mechanism.
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spelling pubmed-34782872012-10-29 Silencing of miR-370 in Human Cholangiocarcinoma by Allelic Loss and Interleukin-6 Induced Maternal to Paternal Epigenotype Switch An, Fangmei Yamanaka, Sumitaka Allen, Sarah Roberts, Lewis R. Gores, Gregory J. Pawlik, Timothy M. Xie, Qing Ishida, Masaharu Mezey, Esteban Ferguson-Smith, Anne C. Mori, Yuriko Selaru, Florin M. PLoS One Research Article Cholangiocarcinoma (CCA) is a highly lethal malignant tumor arising from the biliary tract epithelium. Interleukin-6 (IL-6) is a major mediator of inflammation and contributor to carcinogenesis within the biliary tree. Previous studies suggested that enforced IL-6 contributes to cholangiocarcinogenesis through hypermethylation of several genes implicated in CCA. However, the precise mechanisms of IL-6 effects in CCA remain unclear. We now demonstrate that microRNA (miR)-370 is underexpressed in a large cohort of human CCA vs. normal liver tissues. In addition, we show that IL-6 induces a time-dependent silencing of miR-370. In addition, demethylation of CCA cells results in upregulation of miR-370. Furthermore, we demonstrate that miR-370 is imprinted, and that the Intergenic Differentially Methylated Region (IG-DMR) responsible for imprinting regulation of this genomic locus is hypermethylated in response to IL-6 treatment. In addition, the IG-DMR is hypermethylated in human CCA specimens compared to normal matched controls, in the same location as the IL-6 induced hypermethylation. Finally, miR-370 was found to regulate WNT10B in luciferase as well as western blotting experiments. Our data indicate that the paternal allele of miR-370 is normally silenced through genomic imprinting and that the overexpression of IL-6 in CCA effectively suppresses the expression of miR-370 from the maternal allele, lending support to the theory that miR-370 silencing in human CCA follows a classic two-hit mechanism. Public Library of Science 2012-10-22 /pmc/articles/PMC3478287/ /pubmed/23110045 http://dx.doi.org/10.1371/journal.pone.0045606 Text en © 2012 An 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
An, Fangmei
Yamanaka, Sumitaka
Allen, Sarah
Roberts, Lewis R.
Gores, Gregory J.
Pawlik, Timothy M.
Xie, Qing
Ishida, Masaharu
Mezey, Esteban
Ferguson-Smith, Anne C.
Mori, Yuriko
Selaru, Florin M.
Silencing of miR-370 in Human Cholangiocarcinoma by Allelic Loss and Interleukin-6 Induced Maternal to Paternal Epigenotype Switch
title Silencing of miR-370 in Human Cholangiocarcinoma by Allelic Loss and Interleukin-6 Induced Maternal to Paternal Epigenotype Switch
title_full Silencing of miR-370 in Human Cholangiocarcinoma by Allelic Loss and Interleukin-6 Induced Maternal to Paternal Epigenotype Switch
title_fullStr Silencing of miR-370 in Human Cholangiocarcinoma by Allelic Loss and Interleukin-6 Induced Maternal to Paternal Epigenotype Switch
title_full_unstemmed Silencing of miR-370 in Human Cholangiocarcinoma by Allelic Loss and Interleukin-6 Induced Maternal to Paternal Epigenotype Switch
title_short Silencing of miR-370 in Human Cholangiocarcinoma by Allelic Loss and Interleukin-6 Induced Maternal to Paternal Epigenotype Switch
title_sort silencing of mir-370 in human cholangiocarcinoma by allelic loss and interleukin-6 induced maternal to paternal epigenotype switch
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3478287/
https://www.ncbi.nlm.nih.gov/pubmed/23110045
http://dx.doi.org/10.1371/journal.pone.0045606
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