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Genome-wide interrogation of structural variation reveals novel African-specific prostate cancer oncogenic drivers
by
Sadsad, Rosemarie
, Jiang, Jue
, Jaratlerdsiri, Weerachai
, Lyons, Ruth J.
, Chan, Eva K. F.
, Papenfuss, Anthony T.
, Patrick, Sean M.
, Hayes, Vanessa M.
, Chew, Tracy
, Gong, Tingting
, Haynes, Anne-Maree
, Willet, Cali
, Stricker, Phillip D.
, Brum, Ilma Simoni
, Mutambirwa, Shingai B. A.
, Bornman, Riana M. S.
, Pasqualim, Gabriela
in
Advanced disease
/ African Americans
/ African ancestry
/ Analysis
/ Annotations
/ Australia
/ Automobile drivers
/ Bioinformatics
/ Biomedical and Life Sciences
/ Biomedicine
/ Black people
/ Black People - genetics
/ Brazil
/ Cancer
/ Cancer Research
/ Carcinogenesis - genetics
/ Chromosomal instability
/ Copy number
/ Cultural differences
/ DNA sequencing
/ Ethnic disparity
/ Gene deletion
/ Genetic aspects
/ Genetic research
/ Genomes
/ Genomics
/ Health aspects
/ Human Genetics
/ Humans
/ Male
/ Medical research
/ Medicine, Experimental
/ Medicine/Public Health
/ Men
/ Metabolomics
/ Mortality
/ Mutation
/ Myc protein
/ Neoplasm Grading
/ Nuclear Proteins - genetics
/ Nucleotide sequencing
/ Patients
/ Phosphodiesterase
/ Prostate cancer
/ Prostatic Neoplasms - genetics
/ Prostatic Neoplasms - pathology
/ Questioning
/ Repressor Proteins - genetics
/ Risk factors
/ South Africa
/ Sub-Saharan Africa
/ Systems Biology
/ Therapeutic targets
/ Tumors
/ Whole genome sequencing
2022
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Genome-wide interrogation of structural variation reveals novel African-specific prostate cancer oncogenic drivers
by
Sadsad, Rosemarie
, Jiang, Jue
, Jaratlerdsiri, Weerachai
, Lyons, Ruth J.
, Chan, Eva K. F.
, Papenfuss, Anthony T.
, Patrick, Sean M.
, Hayes, Vanessa M.
, Chew, Tracy
, Gong, Tingting
, Haynes, Anne-Maree
, Willet, Cali
, Stricker, Phillip D.
, Brum, Ilma Simoni
, Mutambirwa, Shingai B. A.
, Bornman, Riana M. S.
, Pasqualim, Gabriela
in
Advanced disease
/ African Americans
/ African ancestry
/ Analysis
/ Annotations
/ Australia
/ Automobile drivers
/ Bioinformatics
/ Biomedical and Life Sciences
/ Biomedicine
/ Black people
/ Black People - genetics
/ Brazil
/ Cancer
/ Cancer Research
/ Carcinogenesis - genetics
/ Chromosomal instability
/ Copy number
/ Cultural differences
/ DNA sequencing
/ Ethnic disparity
/ Gene deletion
/ Genetic aspects
/ Genetic research
/ Genomes
/ Genomics
/ Health aspects
/ Human Genetics
/ Humans
/ Male
/ Medical research
/ Medicine, Experimental
/ Medicine/Public Health
/ Men
/ Metabolomics
/ Mortality
/ Mutation
/ Myc protein
/ Neoplasm Grading
/ Nuclear Proteins - genetics
/ Nucleotide sequencing
/ Patients
/ Phosphodiesterase
/ Prostate cancer
/ Prostatic Neoplasms - genetics
/ Prostatic Neoplasms - pathology
/ Questioning
/ Repressor Proteins - genetics
/ Risk factors
/ South Africa
/ Sub-Saharan Africa
/ Systems Biology
/ Therapeutic targets
/ Tumors
/ Whole genome sequencing
2022
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Genome-wide interrogation of structural variation reveals novel African-specific prostate cancer oncogenic drivers
by
Sadsad, Rosemarie
, Jiang, Jue
, Jaratlerdsiri, Weerachai
, Lyons, Ruth J.
, Chan, Eva K. F.
, Papenfuss, Anthony T.
, Patrick, Sean M.
, Hayes, Vanessa M.
, Chew, Tracy
, Gong, Tingting
, Haynes, Anne-Maree
, Willet, Cali
, Stricker, Phillip D.
, Brum, Ilma Simoni
, Mutambirwa, Shingai B. A.
, Bornman, Riana M. S.
, Pasqualim, Gabriela
in
Advanced disease
/ African Americans
/ African ancestry
/ Analysis
/ Annotations
/ Australia
/ Automobile drivers
/ Bioinformatics
/ Biomedical and Life Sciences
/ Biomedicine
/ Black people
/ Black People - genetics
/ Brazil
/ Cancer
/ Cancer Research
/ Carcinogenesis - genetics
/ Chromosomal instability
/ Copy number
/ Cultural differences
/ DNA sequencing
/ Ethnic disparity
/ Gene deletion
/ Genetic aspects
/ Genetic research
/ Genomes
/ Genomics
/ Health aspects
/ Human Genetics
/ Humans
/ Male
/ Medical research
/ Medicine, Experimental
/ Medicine/Public Health
/ Men
/ Metabolomics
/ Mortality
/ Mutation
/ Myc protein
/ Neoplasm Grading
/ Nuclear Proteins - genetics
/ Nucleotide sequencing
/ Patients
/ Phosphodiesterase
/ Prostate cancer
/ Prostatic Neoplasms - genetics
/ Prostatic Neoplasms - pathology
/ Questioning
/ Repressor Proteins - genetics
/ Risk factors
/ South Africa
/ Sub-Saharan Africa
/ Systems Biology
/ Therapeutic targets
/ Tumors
/ Whole genome sequencing
2022
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Genome-wide interrogation of structural variation reveals novel African-specific prostate cancer oncogenic drivers
Journal Article
Genome-wide interrogation of structural variation reveals novel African-specific prostate cancer oncogenic drivers
2022
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Overview
Background
African ancestry is a significant risk factor for advanced prostate cancer (PCa). Mortality rates in sub-Saharan Africa are 2.5-fold greater than global averages. However, the region has largely been excluded from the benefits of whole genome interrogation studies. Additionally, while structural variation (SV) is highly prevalent, PCa genomic studies are still biased towards small variant interrogation.
Methods
Using whole genome sequencing and best practice workflows, we performed a comprehensive analysis of SVs for 180 (predominantly Gleason score ≥ 8) prostate tumours derived from 115 African, 61 European and four ancestrally admixed patients. We investigated the landscape and relationship of somatic SVs in driving ethnic disparity (African
versus
European), with a focus on African men from southern Africa.
Results
Duplication events showed the greatest ethnic disparity, with a 1.6- (relative frequency) to 2.5-fold (count) increase in African-derived tumours. Furthermore, we found duplication events to be associated with
CDK12
inactivation and
MYC
copy number gain, and deletion events associated with
SPOP
mutation. Overall, African-derived tumours were 2-fold more likely to present with a hyper-SV subtype. In addition to hyper-duplication and deletion subtypes, we describe a new hyper-translocation subtype. While we confirm a lower
TMPRSS2-ERG
fusion-positive rate in tumours from African cases (10%
versus
33%), novel African-specific PCa ETS family member and
TMPRSS2
fusion partners were identified, including
LINC01525, FBXO7
,
GTF3C2
,
NTNG1
and
YPEL5
. Notably, we found 74 somatic SV hotspots impacting 18 new candidate driver genes, with
CADM2
,
LSAMP
,
PTPRD
,
PDE4D
and
PACRG
having therapeutic implications for African patients.
Conclusions
In this first African-inclusive SV study for high-risk PCa, we demonstrate the power of SV interrogation for the identification of novel subtypes, oncogenic drivers and therapeutic targets. Identifying a novel spectrum of SVs in tumours derived from African patients provides a mechanism that may contribute, at least in part, to the observed ethnic disparity in advanced PCa presentation in men of African ancestry.
Publisher
BioMed Central,BioMed Central Ltd,Springer Nature B.V,BMC
Subject
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