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Integrative Genomic Analyses Identify BRF2 as a Novel Lineage-Specific Oncogene in Lung Squamous Cell Carcinoma

BACKGROUND: Traditionally, non-small cell lung cancer is treated as a single disease entity in terms of systemic therapy. Emerging evidence suggests the major subtypes—adenocarcinoma (AC) and squamous cell carcinoma (SqCC)—respond differently to therapy. Identification of the molecular differences b...

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Autores principales: Lockwood, William W., Chari, Raj, Coe, Bradley P., Thu, Kelsie L., Garnis, Cathie, Malloff, Chad A., Campbell, Jennifer, Williams, Ariane C., Hwang, Dorothy, Zhu, Chang-Qi, Buys, Timon P. H., Yee, John, English, John C., MacAulay, Calum, Tsao, Ming-Sound, Gazdar, Adi F., Minna, John D., Lam, Stephen, Lam, Wan L.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2910599/
https://www.ncbi.nlm.nih.gov/pubmed/20668658
http://dx.doi.org/10.1371/journal.pmed.1000315
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author Lockwood, William W.
Chari, Raj
Coe, Bradley P.
Thu, Kelsie L.
Garnis, Cathie
Malloff, Chad A.
Campbell, Jennifer
Williams, Ariane C.
Hwang, Dorothy
Zhu, Chang-Qi
Buys, Timon P. H.
Yee, John
English, John C.
MacAulay, Calum
Tsao, Ming-Sound
Gazdar, Adi F.
Minna, John D.
Lam, Stephen
Lam, Wan L.
author_facet Lockwood, William W.
Chari, Raj
Coe, Bradley P.
Thu, Kelsie L.
Garnis, Cathie
Malloff, Chad A.
Campbell, Jennifer
Williams, Ariane C.
Hwang, Dorothy
Zhu, Chang-Qi
Buys, Timon P. H.
Yee, John
English, John C.
MacAulay, Calum
Tsao, Ming-Sound
Gazdar, Adi F.
Minna, John D.
Lam, Stephen
Lam, Wan L.
author_sort Lockwood, William W.
collection PubMed
description BACKGROUND: Traditionally, non-small cell lung cancer is treated as a single disease entity in terms of systemic therapy. Emerging evidence suggests the major subtypes—adenocarcinoma (AC) and squamous cell carcinoma (SqCC)—respond differently to therapy. Identification of the molecular differences between these tumor types will have a significant impact in designing novel therapies that can improve the treatment outcome. METHODS AND FINDINGS: We used an integrative genomics approach, combing high-resolution comparative genomic hybridization and gene expression microarray profiles, to compare AC and SqCC tumors in order to uncover alterations at the DNA level, with corresponding gene transcription changes, which are selected for during development of lung cancer subtypes. Through the analysis of multiple independent cohorts of clinical tumor samples (>330), normal lung tissues and bronchial epithelial cells obtained by bronchial brushing in smokers without lung cancer, we identified the overexpression of BRF2, a gene on Chromosome 8p12, which is specific for development of SqCC of lung. Genetic activation of BRF2, which encodes a RNA polymerase III (Pol III) transcription initiation factor, was found to be associated with increased expression of small nuclear RNAs (snRNAs) that are involved in processes essential for cell growth, such as RNA splicing. Ectopic expression of BRF2 in human bronchial epithelial cells induced a transformed phenotype and demonstrates downstream oncogenic effects, whereas RNA interference (RNAi)-mediated knockdown suppressed growth and colony formation of SqCC cells overexpressing BRF2, but not AC cells. Frequent activation of BRF2 in >35% preinvasive bronchial carcinoma in situ, as well as in dysplastic lesions, provides evidence that BRF2 expression is an early event in cancer development of this cell lineage. CONCLUSIONS: This is the first study, to our knowledge, to show that the focal amplification of a gene in Chromosome 8p12, plays a key role in squamous cell lineage specificity of the disease. Our data suggest that genetic activation of BRF2 represents a unique mechanism of SqCC lung tumorigenesis through the increase of Pol III-mediated transcription. It can serve as a marker for lung SqCC and may provide a novel target for therapy. Please see later in the article for the Editors' Summary
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spelling pubmed-29105992010-07-28 Integrative Genomic Analyses Identify BRF2 as a Novel Lineage-Specific Oncogene in Lung Squamous Cell Carcinoma Lockwood, William W. Chari, Raj Coe, Bradley P. Thu, Kelsie L. Garnis, Cathie Malloff, Chad A. Campbell, Jennifer Williams, Ariane C. Hwang, Dorothy Zhu, Chang-Qi Buys, Timon P. H. Yee, John English, John C. MacAulay, Calum Tsao, Ming-Sound Gazdar, Adi F. Minna, John D. Lam, Stephen Lam, Wan L. PLoS Med Research Article BACKGROUND: Traditionally, non-small cell lung cancer is treated as a single disease entity in terms of systemic therapy. Emerging evidence suggests the major subtypes—adenocarcinoma (AC) and squamous cell carcinoma (SqCC)—respond differently to therapy. Identification of the molecular differences between these tumor types will have a significant impact in designing novel therapies that can improve the treatment outcome. METHODS AND FINDINGS: We used an integrative genomics approach, combing high-resolution comparative genomic hybridization and gene expression microarray profiles, to compare AC and SqCC tumors in order to uncover alterations at the DNA level, with corresponding gene transcription changes, which are selected for during development of lung cancer subtypes. Through the analysis of multiple independent cohorts of clinical tumor samples (>330), normal lung tissues and bronchial epithelial cells obtained by bronchial brushing in smokers without lung cancer, we identified the overexpression of BRF2, a gene on Chromosome 8p12, which is specific for development of SqCC of lung. Genetic activation of BRF2, which encodes a RNA polymerase III (Pol III) transcription initiation factor, was found to be associated with increased expression of small nuclear RNAs (snRNAs) that are involved in processes essential for cell growth, such as RNA splicing. Ectopic expression of BRF2 in human bronchial epithelial cells induced a transformed phenotype and demonstrates downstream oncogenic effects, whereas RNA interference (RNAi)-mediated knockdown suppressed growth and colony formation of SqCC cells overexpressing BRF2, but not AC cells. Frequent activation of BRF2 in >35% preinvasive bronchial carcinoma in situ, as well as in dysplastic lesions, provides evidence that BRF2 expression is an early event in cancer development of this cell lineage. CONCLUSIONS: This is the first study, to our knowledge, to show that the focal amplification of a gene in Chromosome 8p12, plays a key role in squamous cell lineage specificity of the disease. Our data suggest that genetic activation of BRF2 represents a unique mechanism of SqCC lung tumorigenesis through the increase of Pol III-mediated transcription. It can serve as a marker for lung SqCC and may provide a novel target for therapy. Please see later in the article for the Editors' Summary Public Library of Science 2010-07-27 /pmc/articles/PMC2910599/ /pubmed/20668658 http://dx.doi.org/10.1371/journal.pmed.1000315 Text en Lockwood 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
Lockwood, William W.
Chari, Raj
Coe, Bradley P.
Thu, Kelsie L.
Garnis, Cathie
Malloff, Chad A.
Campbell, Jennifer
Williams, Ariane C.
Hwang, Dorothy
Zhu, Chang-Qi
Buys, Timon P. H.
Yee, John
English, John C.
MacAulay, Calum
Tsao, Ming-Sound
Gazdar, Adi F.
Minna, John D.
Lam, Stephen
Lam, Wan L.
Integrative Genomic Analyses Identify BRF2 as a Novel Lineage-Specific Oncogene in Lung Squamous Cell Carcinoma
title Integrative Genomic Analyses Identify BRF2 as a Novel Lineage-Specific Oncogene in Lung Squamous Cell Carcinoma
title_full Integrative Genomic Analyses Identify BRF2 as a Novel Lineage-Specific Oncogene in Lung Squamous Cell Carcinoma
title_fullStr Integrative Genomic Analyses Identify BRF2 as a Novel Lineage-Specific Oncogene in Lung Squamous Cell Carcinoma
title_full_unstemmed Integrative Genomic Analyses Identify BRF2 as a Novel Lineage-Specific Oncogene in Lung Squamous Cell Carcinoma
title_short Integrative Genomic Analyses Identify BRF2 as a Novel Lineage-Specific Oncogene in Lung Squamous Cell Carcinoma
title_sort integrative genomic analyses identify brf2 as a novel lineage-specific oncogene in lung squamous cell carcinoma
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2910599/
https://www.ncbi.nlm.nih.gov/pubmed/20668658
http://dx.doi.org/10.1371/journal.pmed.1000315
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