Cargando…

A Micro-RNA Connection in BRaf (V600E)-Mediated Premature Senescence of Human Melanocytes

Recent high-throughput-sequencing of the cancer genome has identified oncogenic mutations in BRaf genetic locus as one of the critical events in melanomagenesis. In normal cells, the activity of BRaf is tightly regulated. Gain-of-function mutations like those identified in melanoma frequently lead t...

Descripción completa

Detalles Bibliográficos
Autores principales: Ren, Gang, Feng, Jingwei, Datar, Ila, Yeung, Aaron H., Saladi, Srinivas Vinod, Feng, Yongqing, de la Serna, Ivana, Yeung, Kam C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3348633/
https://www.ncbi.nlm.nih.gov/pubmed/22611400
http://dx.doi.org/10.1155/2012/913242
_version_ 1782232402402213888
author Ren, Gang
Feng, Jingwei
Datar, Ila
Yeung, Aaron H.
Saladi, Srinivas Vinod
Feng, Yongqing
de la Serna, Ivana
Yeung, Kam C.
author_facet Ren, Gang
Feng, Jingwei
Datar, Ila
Yeung, Aaron H.
Saladi, Srinivas Vinod
Feng, Yongqing
de la Serna, Ivana
Yeung, Kam C.
author_sort Ren, Gang
collection PubMed
description Recent high-throughput-sequencing of the cancer genome has identified oncogenic mutations in BRaf genetic locus as one of the critical events in melanomagenesis. In normal cells, the activity of BRaf is tightly regulated. Gain-of-function mutations like those identified in melanoma frequently lead to enhanced cell-survival and unrestrained growth. The activating mutation of BRaf will also induce the cells to senesce. However, the mechanism by which the oncogenic BRaf induces the senescent barrier remains poorly defined. microRNAs have regulatory functions toward the expression of genes that are important in carcinogenesis. Here we show that expression of several microRNAs is altered when the oncogenic version of BRaf is introduced in cultured primary melanocytes and these cells undergo premature cellular senescence. These include eight microRNAs whose expression rates are significantly stimulated and three that are repressed. While most of the induced microRNAs have documented negative effects on cell cycle progression, one of the repressed microRNAs has proven oncogenic functions. Ectopic expression of some of these induced microRNAs increased the expression of senescence markers and induced growth arrest and senescence in primary melanocytes. Taken together, our results suggest that the change in microRNA expression rates may play a vital role in senescence induced by the oncogenic BRaf.
format Online
Article
Text
id pubmed-3348633
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Hindawi Publishing Corporation
record_format MEDLINE/PubMed
spelling pubmed-33486332012-05-18 A Micro-RNA Connection in BRaf (V600E)-Mediated Premature Senescence of Human Melanocytes Ren, Gang Feng, Jingwei Datar, Ila Yeung, Aaron H. Saladi, Srinivas Vinod Feng, Yongqing de la Serna, Ivana Yeung, Kam C. Int J Cell Biol Research Article Recent high-throughput-sequencing of the cancer genome has identified oncogenic mutations in BRaf genetic locus as one of the critical events in melanomagenesis. In normal cells, the activity of BRaf is tightly regulated. Gain-of-function mutations like those identified in melanoma frequently lead to enhanced cell-survival and unrestrained growth. The activating mutation of BRaf will also induce the cells to senesce. However, the mechanism by which the oncogenic BRaf induces the senescent barrier remains poorly defined. microRNAs have regulatory functions toward the expression of genes that are important in carcinogenesis. Here we show that expression of several microRNAs is altered when the oncogenic version of BRaf is introduced in cultured primary melanocytes and these cells undergo premature cellular senescence. These include eight microRNAs whose expression rates are significantly stimulated and three that are repressed. While most of the induced microRNAs have documented negative effects on cell cycle progression, one of the repressed microRNAs has proven oncogenic functions. Ectopic expression of some of these induced microRNAs increased the expression of senescence markers and induced growth arrest and senescence in primary melanocytes. Taken together, our results suggest that the change in microRNA expression rates may play a vital role in senescence induced by the oncogenic BRaf. Hindawi Publishing Corporation 2012 2012-04-24 /pmc/articles/PMC3348633/ /pubmed/22611400 http://dx.doi.org/10.1155/2012/913242 Text en Copyright © 2012 Gang Ren et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Ren, Gang
Feng, Jingwei
Datar, Ila
Yeung, Aaron H.
Saladi, Srinivas Vinod
Feng, Yongqing
de la Serna, Ivana
Yeung, Kam C.
A Micro-RNA Connection in BRaf (V600E)-Mediated Premature Senescence of Human Melanocytes
title A Micro-RNA Connection in BRaf (V600E)-Mediated Premature Senescence of Human Melanocytes
title_full A Micro-RNA Connection in BRaf (V600E)-Mediated Premature Senescence of Human Melanocytes
title_fullStr A Micro-RNA Connection in BRaf (V600E)-Mediated Premature Senescence of Human Melanocytes
title_full_unstemmed A Micro-RNA Connection in BRaf (V600E)-Mediated Premature Senescence of Human Melanocytes
title_short A Micro-RNA Connection in BRaf (V600E)-Mediated Premature Senescence of Human Melanocytes
title_sort micro-rna connection in braf (v600e)-mediated premature senescence of human melanocytes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3348633/
https://www.ncbi.nlm.nih.gov/pubmed/22611400
http://dx.doi.org/10.1155/2012/913242
work_keys_str_mv AT rengang amicrornaconnectioninbrafv600emediatedprematuresenescenceofhumanmelanocytes
AT fengjingwei amicrornaconnectioninbrafv600emediatedprematuresenescenceofhumanmelanocytes
AT datarila amicrornaconnectioninbrafv600emediatedprematuresenescenceofhumanmelanocytes
AT yeungaaronh amicrornaconnectioninbrafv600emediatedprematuresenescenceofhumanmelanocytes
AT saladisrinivasvinod amicrornaconnectioninbrafv600emediatedprematuresenescenceofhumanmelanocytes
AT fengyongqing amicrornaconnectioninbrafv600emediatedprematuresenescenceofhumanmelanocytes
AT delasernaivana amicrornaconnectioninbrafv600emediatedprematuresenescenceofhumanmelanocytes
AT yeungkamc amicrornaconnectioninbrafv600emediatedprematuresenescenceofhumanmelanocytes
AT rengang micrornaconnectioninbrafv600emediatedprematuresenescenceofhumanmelanocytes
AT fengjingwei micrornaconnectioninbrafv600emediatedprematuresenescenceofhumanmelanocytes
AT datarila micrornaconnectioninbrafv600emediatedprematuresenescenceofhumanmelanocytes
AT yeungaaronh micrornaconnectioninbrafv600emediatedprematuresenescenceofhumanmelanocytes
AT saladisrinivasvinod micrornaconnectioninbrafv600emediatedprematuresenescenceofhumanmelanocytes
AT fengyongqing micrornaconnectioninbrafv600emediatedprematuresenescenceofhumanmelanocytes
AT delasernaivana micrornaconnectioninbrafv600emediatedprematuresenescenceofhumanmelanocytes
AT yeungkamc micrornaconnectioninbrafv600emediatedprematuresenescenceofhumanmelanocytes