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Copy number signature analysis tool and its application in prostate cancer reveals distinct mutational processes and clinical outcomes
by
Wang, Shixiang
, Wu, Tao
, Wu, Kai
, He, Zaoke
, Liu, Xue-Song
, Zhao, Xiangyu
, Song, Minfang
, Tao, Ziyu
, Li, Huimin
in
Biology and Life Sciences
/ Biomarkers, Tumor
/ Chromosomes
/ Copy number
/ Copy number variations
/ Datasets
/ Deoxyribonucleic acid
/ DNA
/ DNA Copy Number Variations - genetics
/ DNA damage
/ DNA Mutational Analysis
/ Double-strand break repair
/ Genetic aspects
/ Genome, Human - genetics
/ Genomes
/ Genomic Instability
/ Genomics
/ Health aspects
/ Humans
/ Male
/ Medicine and Health Sciences
/ Metastases
/ Mutagenesis - genetics
/ Mutation
/ Mutation (Biology)
/ Ovarian cancer
/ Patient outcomes
/ Prognosis
/ Proportional Hazards Models
/ Prostate cancer
/ Prostatic Neoplasms - classification
/ Prostatic Neoplasms - diagnosis
/ Prostatic Neoplasms - genetics
/ Quality control
/ Software
/ Survival Analysis
/ Treatment Outcome
/ Tumors
2021
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Copy number signature analysis tool and its application in prostate cancer reveals distinct mutational processes and clinical outcomes
by
Wang, Shixiang
, Wu, Tao
, Wu, Kai
, He, Zaoke
, Liu, Xue-Song
, Zhao, Xiangyu
, Song, Minfang
, Tao, Ziyu
, Li, Huimin
in
Biology and Life Sciences
/ Biomarkers, Tumor
/ Chromosomes
/ Copy number
/ Copy number variations
/ Datasets
/ Deoxyribonucleic acid
/ DNA
/ DNA Copy Number Variations - genetics
/ DNA damage
/ DNA Mutational Analysis
/ Double-strand break repair
/ Genetic aspects
/ Genome, Human - genetics
/ Genomes
/ Genomic Instability
/ Genomics
/ Health aspects
/ Humans
/ Male
/ Medicine and Health Sciences
/ Metastases
/ Mutagenesis - genetics
/ Mutation
/ Mutation (Biology)
/ Ovarian cancer
/ Patient outcomes
/ Prognosis
/ Proportional Hazards Models
/ Prostate cancer
/ Prostatic Neoplasms - classification
/ Prostatic Neoplasms - diagnosis
/ Prostatic Neoplasms - genetics
/ Quality control
/ Software
/ Survival Analysis
/ Treatment Outcome
/ Tumors
2021
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Copy number signature analysis tool and its application in prostate cancer reveals distinct mutational processes and clinical outcomes
by
Wang, Shixiang
, Wu, Tao
, Wu, Kai
, He, Zaoke
, Liu, Xue-Song
, Zhao, Xiangyu
, Song, Minfang
, Tao, Ziyu
, Li, Huimin
in
Biology and Life Sciences
/ Biomarkers, Tumor
/ Chromosomes
/ Copy number
/ Copy number variations
/ Datasets
/ Deoxyribonucleic acid
/ DNA
/ DNA Copy Number Variations - genetics
/ DNA damage
/ DNA Mutational Analysis
/ Double-strand break repair
/ Genetic aspects
/ Genome, Human - genetics
/ Genomes
/ Genomic Instability
/ Genomics
/ Health aspects
/ Humans
/ Male
/ Medicine and Health Sciences
/ Metastases
/ Mutagenesis - genetics
/ Mutation
/ Mutation (Biology)
/ Ovarian cancer
/ Patient outcomes
/ Prognosis
/ Proportional Hazards Models
/ Prostate cancer
/ Prostatic Neoplasms - classification
/ Prostatic Neoplasms - diagnosis
/ Prostatic Neoplasms - genetics
/ Quality control
/ Software
/ Survival Analysis
/ Treatment Outcome
/ Tumors
2021
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Copy number signature analysis tool and its application in prostate cancer reveals distinct mutational processes and clinical outcomes
Journal Article
Copy number signature analysis tool and its application in prostate cancer reveals distinct mutational processes and clinical outcomes
2021
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Overview
Genome alteration signatures reflect recurring patterns caused by distinct endogenous or exogenous mutational events during the evolution of cancer. Signatures of single base substitution (SBS) have been extensively studied in different types of cancer. Copy number alterations are important drivers for the progression of multiple cancer. However, practical tools for studying the signatures of copy number alterations are still lacking. Here, a user-friendly open source bioinformatics tool “sigminer” has been constructed for copy number signature extraction, analysis and visualization. This tool has been applied in prostate cancer (PC), which is particularly driven by complex genome alterations. Five copy number signatures are identified from human PC genome with this tool. The underlying mutational processes for each copy number signature have been illustrated. Sample clustering based on copy number signature exposure reveals considerable heterogeneity of PC, and copy number signatures show improved PC clinical outcome association when compared with SBS signatures. This copy number signature analysis in PC provides distinct insight into the etiology of PC, and potential biomarkers for PC stratification and prognosis.
Publisher
Public Library of Science,Public Library of Science (PLoS)
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