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Necdin is a breast cancer metastasis suppressor that regulates the transcription of c-Myc

Metastasis is the primary cause of death in breast cancer. Earlier studies using a mammary tumorigenesis mouse model identified Necdin (Ndn) as a germline modifier of metastasis. Differential expression of Ndn induces a gene-expression signature that predicts prognosis in human breast cancer. Additi...

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Autores principales: Lee, Minnkyong, Beggs, Sarah M., Gildea, Derek, Bupp, Sujata, Lichtenberg, Jens, Trivedi, Niraj S., Hu, Ying, Bodine, David M., Crawford, Nigel P.S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4741624/
https://www.ncbi.nlm.nih.gov/pubmed/26384308
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author Lee, Minnkyong
Beggs, Sarah M.
Gildea, Derek
Bupp, Sujata
Lichtenberg, Jens
Trivedi, Niraj S.
Hu, Ying
Bodine, David M.
Crawford, Nigel P.S.
author_facet Lee, Minnkyong
Beggs, Sarah M.
Gildea, Derek
Bupp, Sujata
Lichtenberg, Jens
Trivedi, Niraj S.
Hu, Ying
Bodine, David M.
Crawford, Nigel P.S.
author_sort Lee, Minnkyong
collection PubMed
description Metastasis is the primary cause of death in breast cancer. Earlier studies using a mammary tumorigenesis mouse model identified Necdin (Ndn) as a germline modifier of metastasis. Differential expression of Ndn induces a gene-expression signature that predicts prognosis in human breast cancer. Additionally, a non-synonymous germline single nucleotide polymorphism (T50C; V17A) in Ndn distinguishes mouse strains with differing metastatic capacities. To better understand how hereditary factors influence metastasis in breast cancer, we characterized NDN-mediated transcription. Haplotype analysis in a well-characterized breast cancer cohort revealed that NDN germline variation is associated with both NDN expression levels and patient outcome. To examine the role of NDN in mammary tumor metastasis and transcriptional regulation, mouse mammary tumor cell lines stably over-expressing either the wildtype 50T or variant 50C Ndn allele were generated. Cells over-expressing Ndn 50T, but not Ndn 50C, exhibited significant decrease in cell invasiveness and pulmonary metastases compared to control cells. Transcriptome analyses identified a 71-gene expression signature that distinguishes cells over-expressing the two Ndn allelic variants. Furthermore, ChIP assays revealed c-Myc, a target gene of NDN, to be differentially regulated by the allelic variants. These data demonstrate that NDN and the T50C allele regulate gene expression and metastasis efficiency.
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spelling pubmed-47416242016-03-03 Necdin is a breast cancer metastasis suppressor that regulates the transcription of c-Myc Lee, Minnkyong Beggs, Sarah M. Gildea, Derek Bupp, Sujata Lichtenberg, Jens Trivedi, Niraj S. Hu, Ying Bodine, David M. Crawford, Nigel P.S. Oncotarget Research Paper Metastasis is the primary cause of death in breast cancer. Earlier studies using a mammary tumorigenesis mouse model identified Necdin (Ndn) as a germline modifier of metastasis. Differential expression of Ndn induces a gene-expression signature that predicts prognosis in human breast cancer. Additionally, a non-synonymous germline single nucleotide polymorphism (T50C; V17A) in Ndn distinguishes mouse strains with differing metastatic capacities. To better understand how hereditary factors influence metastasis in breast cancer, we characterized NDN-mediated transcription. Haplotype analysis in a well-characterized breast cancer cohort revealed that NDN germline variation is associated with both NDN expression levels and patient outcome. To examine the role of NDN in mammary tumor metastasis and transcriptional regulation, mouse mammary tumor cell lines stably over-expressing either the wildtype 50T or variant 50C Ndn allele were generated. Cells over-expressing Ndn 50T, but not Ndn 50C, exhibited significant decrease in cell invasiveness and pulmonary metastases compared to control cells. Transcriptome analyses identified a 71-gene expression signature that distinguishes cells over-expressing the two Ndn allelic variants. Furthermore, ChIP assays revealed c-Myc, a target gene of NDN, to be differentially regulated by the allelic variants. These data demonstrate that NDN and the T50C allele regulate gene expression and metastasis efficiency. Impact Journals LLC 2015-08-19 /pmc/articles/PMC4741624/ /pubmed/26384308 Text en Copyright: © 2015 Lee et al. http://creativecommons.org/licenses/by/2.5/ 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 credited.
spellingShingle Research Paper
Lee, Minnkyong
Beggs, Sarah M.
Gildea, Derek
Bupp, Sujata
Lichtenberg, Jens
Trivedi, Niraj S.
Hu, Ying
Bodine, David M.
Crawford, Nigel P.S.
Necdin is a breast cancer metastasis suppressor that regulates the transcription of c-Myc
title Necdin is a breast cancer metastasis suppressor that regulates the transcription of c-Myc
title_full Necdin is a breast cancer metastasis suppressor that regulates the transcription of c-Myc
title_fullStr Necdin is a breast cancer metastasis suppressor that regulates the transcription of c-Myc
title_full_unstemmed Necdin is a breast cancer metastasis suppressor that regulates the transcription of c-Myc
title_short Necdin is a breast cancer metastasis suppressor that regulates the transcription of c-Myc
title_sort necdin is a breast cancer metastasis suppressor that regulates the transcription of c-myc
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4741624/
https://www.ncbi.nlm.nih.gov/pubmed/26384308
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