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Deletion of the murine ortholog of the 8q24 gene desert has anti-cancer effects in transgenic mammary cancer models

BACKGROUND: The gene desert on human chromosomal band 8q24 harbors multiple genetic variants associated with common cancers, including breast cancer. The locus, including the gene desert and its flanking genes, MYC, PVT1 and FAM84B, is also frequently amplified in human breast cancer. We generated a...

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Autores principales: Homer-Bouthiette, Collin, Zhao, Yang, Shunkwiler, Lauren B., Van Peel, Benjamine, Garrett-Mayer, Elizabeth, Baird, Rachael C., Rissman, Anna I., Guest, Stephen T., Ethier, Stephen P., John, Manorama C., Powers, Patricia A., Haag, Jill D., Gould, Michael N., Smits, Bart M. G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6288875/
https://www.ncbi.nlm.nih.gov/pubmed/30526553
http://dx.doi.org/10.1186/s12885-018-5109-8
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author Homer-Bouthiette, Collin
Zhao, Yang
Shunkwiler, Lauren B.
Van Peel, Benjamine
Garrett-Mayer, Elizabeth
Baird, Rachael C.
Rissman, Anna I.
Guest, Stephen T.
Ethier, Stephen P.
John, Manorama C.
Powers, Patricia A.
Haag, Jill D.
Gould, Michael N.
Smits, Bart M. G.
author_facet Homer-Bouthiette, Collin
Zhao, Yang
Shunkwiler, Lauren B.
Van Peel, Benjamine
Garrett-Mayer, Elizabeth
Baird, Rachael C.
Rissman, Anna I.
Guest, Stephen T.
Ethier, Stephen P.
John, Manorama C.
Powers, Patricia A.
Haag, Jill D.
Gould, Michael N.
Smits, Bart M. G.
author_sort Homer-Bouthiette, Collin
collection PubMed
description BACKGROUND: The gene desert on human chromosomal band 8q24 harbors multiple genetic variants associated with common cancers, including breast cancer. The locus, including the gene desert and its flanking genes, MYC, PVT1 and FAM84B, is also frequently amplified in human breast cancer. We generated a megadeletion (MD) mouse model lacking 430-Kb of sequence orthologous to the breast cancer-associated region in the gene desert. The goals were to examine the effect of the deletion on mammary cancer development and on transcript level regulation of the candidate genes within the locus. METHODS: The MD allele was engineered using the MICER system in embryonic stem cells and bred onto 3 well-characterized transgenic models for breast cancer, namely MMTV-PyVT, MMTV-neu and C3(1)-TAg. Mammary tumor growth, latency, multiplicity and metastasis were compared between homozygous MD and wild type mice carrying the transgenes. A reciprocal mammary gland transplantation assay was conducted to distinguish mammary cell-autonomous from non-mammary cell-autonomous anti-cancer effects. Gene expression analysis was done using quantitative real-time PCR. Chromatin interactions were evaluated by 3C. Gene-specific patient outcome data were analysed using the METABRIC and TCGA data sets through the cBioPortal website. RESULTS: Mice homozygous for the MD allele are viable, fertile, lactate sufficiently to nourish their pups, but maintain a 10% lower body weight mainly due to decreased adiposity. The deletion interferes with mammary tumorigenesis in mouse models for luminal and basal breast cancer. In the MMTV-PyVT model the mammary cancer-reducing effects of the allele are mammary cell-autonomous. We found organ-specific effects on transcript level regulation, with Myc and Fam84b being downregulated in mammary gland, prostate and mammary tumor samples. Through analysis using the METABRIC and TCGA datasets, we provide evidence that MYC and FAM84B are frequently co-amplified in breast cancer, but in contrast with MYC, FAM84B is frequently overexpressed in the luminal subtype, whereas MYC activity affect basal breast cancer outcomes. CONCLUSION: Deletion of a breast cancer-associated non-protein coding region affects mammary cancer development in 3 transgenic mouse models. We propose Myc as a candidate susceptibility gene, regulated by the gene desert locus, and a potential role for Fam84b in modifying breast cancer development. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (10.1186/s12885-018-5109-8) contains supplementary material, which is available to authorized users.
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spelling pubmed-62888752018-12-14 Deletion of the murine ortholog of the 8q24 gene desert has anti-cancer effects in transgenic mammary cancer models Homer-Bouthiette, Collin Zhao, Yang Shunkwiler, Lauren B. Van Peel, Benjamine Garrett-Mayer, Elizabeth Baird, Rachael C. Rissman, Anna I. Guest, Stephen T. Ethier, Stephen P. John, Manorama C. Powers, Patricia A. Haag, Jill D. Gould, Michael N. Smits, Bart M. G. BMC Cancer Research Article BACKGROUND: The gene desert on human chromosomal band 8q24 harbors multiple genetic variants associated with common cancers, including breast cancer. The locus, including the gene desert and its flanking genes, MYC, PVT1 and FAM84B, is also frequently amplified in human breast cancer. We generated a megadeletion (MD) mouse model lacking 430-Kb of sequence orthologous to the breast cancer-associated region in the gene desert. The goals were to examine the effect of the deletion on mammary cancer development and on transcript level regulation of the candidate genes within the locus. METHODS: The MD allele was engineered using the MICER system in embryonic stem cells and bred onto 3 well-characterized transgenic models for breast cancer, namely MMTV-PyVT, MMTV-neu and C3(1)-TAg. Mammary tumor growth, latency, multiplicity and metastasis were compared between homozygous MD and wild type mice carrying the transgenes. A reciprocal mammary gland transplantation assay was conducted to distinguish mammary cell-autonomous from non-mammary cell-autonomous anti-cancer effects. Gene expression analysis was done using quantitative real-time PCR. Chromatin interactions were evaluated by 3C. Gene-specific patient outcome data were analysed using the METABRIC and TCGA data sets through the cBioPortal website. RESULTS: Mice homozygous for the MD allele are viable, fertile, lactate sufficiently to nourish their pups, but maintain a 10% lower body weight mainly due to decreased adiposity. The deletion interferes with mammary tumorigenesis in mouse models for luminal and basal breast cancer. In the MMTV-PyVT model the mammary cancer-reducing effects of the allele are mammary cell-autonomous. We found organ-specific effects on transcript level regulation, with Myc and Fam84b being downregulated in mammary gland, prostate and mammary tumor samples. Through analysis using the METABRIC and TCGA datasets, we provide evidence that MYC and FAM84B are frequently co-amplified in breast cancer, but in contrast with MYC, FAM84B is frequently overexpressed in the luminal subtype, whereas MYC activity affect basal breast cancer outcomes. CONCLUSION: Deletion of a breast cancer-associated non-protein coding region affects mammary cancer development in 3 transgenic mouse models. We propose Myc as a candidate susceptibility gene, regulated by the gene desert locus, and a potential role for Fam84b in modifying breast cancer development. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (10.1186/s12885-018-5109-8) contains supplementary material, which is available to authorized users. BioMed Central 2018-12-10 /pmc/articles/PMC6288875/ /pubmed/30526553 http://dx.doi.org/10.1186/s12885-018-5109-8 Text en © The Author(s). 2018 Open Access This article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research Article
Homer-Bouthiette, Collin
Zhao, Yang
Shunkwiler, Lauren B.
Van Peel, Benjamine
Garrett-Mayer, Elizabeth
Baird, Rachael C.
Rissman, Anna I.
Guest, Stephen T.
Ethier, Stephen P.
John, Manorama C.
Powers, Patricia A.
Haag, Jill D.
Gould, Michael N.
Smits, Bart M. G.
Deletion of the murine ortholog of the 8q24 gene desert has anti-cancer effects in transgenic mammary cancer models
title Deletion of the murine ortholog of the 8q24 gene desert has anti-cancer effects in transgenic mammary cancer models
title_full Deletion of the murine ortholog of the 8q24 gene desert has anti-cancer effects in transgenic mammary cancer models
title_fullStr Deletion of the murine ortholog of the 8q24 gene desert has anti-cancer effects in transgenic mammary cancer models
title_full_unstemmed Deletion of the murine ortholog of the 8q24 gene desert has anti-cancer effects in transgenic mammary cancer models
title_short Deletion of the murine ortholog of the 8q24 gene desert has anti-cancer effects in transgenic mammary cancer models
title_sort deletion of the murine ortholog of the 8q24 gene desert has anti-cancer effects in transgenic mammary cancer models
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6288875/
https://www.ncbi.nlm.nih.gov/pubmed/30526553
http://dx.doi.org/10.1186/s12885-018-5109-8
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