Characterization of the Genomic Architecture and Mutational Spectrum of a Small Cell Prostate Carcinoma

We present the use of a series of laboratory, analytical and interpretation methods to investigate personalized cancer care for a case of small cell prostate carcinoma (SCPC), a rare and aggressive tumor with poor prognosis, for which the underlying genomic architecture and mutational spectrum has n...

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Main Authors: Alan F. Scott, David W. Mohr, Hua Ling, Robert B. Scharpf, Peng Zhang, Gregory S. Liptak
Format: Article
Language:English
Published: MDPI AG 2014-05-01
Series:Genes
Subjects:
Online Access:http://www.mdpi.com/2073-4425/5/2/366
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spelling doaj-90bac2127347468b9c4cb2e5b4ae99832020-11-24T23:07:05ZengMDPI AGGenes2073-44252014-05-015236638410.3390/genes5020366genes5020366Characterization of the Genomic Architecture and Mutational Spectrum of a Small Cell Prostate CarcinomaAlan F. Scott0David W. Mohr1Hua Ling2Robert B. Scharpf3Peng Zhang4Gregory S. Liptak5McKusick-Nathans Institute of Genetic Medicine, Johns Hopkins University School of Medicine, Baltimore, MD 21287, USAMcKusick-Nathans Institute of Genetic Medicine, Johns Hopkins University School of Medicine, Baltimore, MD 21287, USAMcKusick-Nathans Institute of Genetic Medicine, Johns Hopkins University School of Medicine, Baltimore, MD 21287, USADepartment of Oncology, Johns Hopkins University School of Medicine, Baltimore, MD 21287, USAMcKusick-Nathans Institute of Genetic Medicine, Johns Hopkins University School of Medicine, Baltimore, MD 21287, USADepartment of Pediatrics, SUNY Upstate Medical Center, Golisano Children's Hospital, Syracuse, NY 13210, USAWe present the use of a series of laboratory, analytical and interpretation methods to investigate personalized cancer care for a case of small cell prostate carcinoma (SCPC), a rare and aggressive tumor with poor prognosis, for which the underlying genomic architecture and mutational spectrum has not been well characterized. We performed both SNP genotyping and exome sequencing of a Virchow node metastasis from a patient with SCPC. A variety of methods were used to analyze and interpret the tumor genome for copy number variation, loss of heterozygosity (LOH), somatic mosaicism and mutations in genes from known cancer pathways. The combination of genotyping and exome sequencing approaches provided more information than either technique alone. The results showed widespread evidence of copy number changes involving most chromosomes including the possible loss of both alleles of CDKN1B (p27/Kip1). LOH was observed for the regions encompassing the tumor suppressors TP53, RB1, and CHD1. Predicted damaging somatic mutations were observed in the retained TP53 and RB1 alleles. Mutations in other genes that may be functionally relevant were noted, especially the recently reported high confidence cancer drivers FOXA1 and CCAR1. The disruption of multiple cancer drivers underscores why SCPC may be such a difficult cancer to manage.http://www.mdpi.com/2073-4425/5/2/366small cell prostate cancer (SCPC)exome sequencingIllumina SNP arrayIngenuityNGS (next generation sequencing)
collection DOAJ
language English
format Article
sources DOAJ
author Alan F. Scott
David W. Mohr
Hua Ling
Robert B. Scharpf
Peng Zhang
Gregory S. Liptak
spellingShingle Alan F. Scott
David W. Mohr
Hua Ling
Robert B. Scharpf
Peng Zhang
Gregory S. Liptak
Characterization of the Genomic Architecture and Mutational Spectrum of a Small Cell Prostate Carcinoma
Genes
small cell prostate cancer (SCPC)
exome sequencing
Illumina SNP array
Ingenuity
NGS (next generation sequencing)
author_facet Alan F. Scott
David W. Mohr
Hua Ling
Robert B. Scharpf
Peng Zhang
Gregory S. Liptak
author_sort Alan F. Scott
title Characterization of the Genomic Architecture and Mutational Spectrum of a Small Cell Prostate Carcinoma
title_short Characterization of the Genomic Architecture and Mutational Spectrum of a Small Cell Prostate Carcinoma
title_full Characterization of the Genomic Architecture and Mutational Spectrum of a Small Cell Prostate Carcinoma
title_fullStr Characterization of the Genomic Architecture and Mutational Spectrum of a Small Cell Prostate Carcinoma
title_full_unstemmed Characterization of the Genomic Architecture and Mutational Spectrum of a Small Cell Prostate Carcinoma
title_sort characterization of the genomic architecture and mutational spectrum of a small cell prostate carcinoma
publisher MDPI AG
series Genes
issn 2073-4425
publishDate 2014-05-01
description We present the use of a series of laboratory, analytical and interpretation methods to investigate personalized cancer care for a case of small cell prostate carcinoma (SCPC), a rare and aggressive tumor with poor prognosis, for which the underlying genomic architecture and mutational spectrum has not been well characterized. We performed both SNP genotyping and exome sequencing of a Virchow node metastasis from a patient with SCPC. A variety of methods were used to analyze and interpret the tumor genome for copy number variation, loss of heterozygosity (LOH), somatic mosaicism and mutations in genes from known cancer pathways. The combination of genotyping and exome sequencing approaches provided more information than either technique alone. The results showed widespread evidence of copy number changes involving most chromosomes including the possible loss of both alleles of CDKN1B (p27/Kip1). LOH was observed for the regions encompassing the tumor suppressors TP53, RB1, and CHD1. Predicted damaging somatic mutations were observed in the retained TP53 and RB1 alleles. Mutations in other genes that may be functionally relevant were noted, especially the recently reported high confidence cancer drivers FOXA1 and CCAR1. The disruption of multiple cancer drivers underscores why SCPC may be such a difficult cancer to manage.
topic small cell prostate cancer (SCPC)
exome sequencing
Illumina SNP array
Ingenuity
NGS (next generation sequencing)
url http://www.mdpi.com/2073-4425/5/2/366
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