TY - JOUR
T1 - Exome sequencing of oral squamous cell carcinoma in users of Arabian snuff reveals novel candidates for driver genes
AU - Al-Hebshi, Nezar Noor
AU - Li, Shiyong
AU - Nasher, Akram Thabet
AU - El-Setouhy, Maged
AU - Alsanosi, Rashad
AU - Blancato, Jan
AU - Loffredo, Christopher
N1 - Publisher Copyright:
© 2016 UICC.
PY - 2016/7/15
Y1 - 2016/7/15
N2 - The study sought to identify genetic aberrations driving oral squamous cell carcinoma (OSCC) development among users of shammah, an Arabian preparation of smokeless tobacco. Twenty archival OSCC samples, 15 of which with a history of shammah exposure, were whole-exome sequenced at an average depth of 127×. Somatic mutations were identified using a novel, matched controls-independent filtration algorithm. CODEX and Exomedepth coupled with a novel, Database of Genomic Variant-based filter were employed to call somatic gene-copy number variations. Significantly mutated genes were identified with Oncodrive FM and the Youn and Simon's method. Candidate driver genes were nominated based on Gene Set Enrichment Analysis. The observed mutational spectrum was similar to that reported by the TCGA project. In addition to confirming known genes of OSCC (TP53, CDKNA2, CASP8, PIK3CA, HRAS, FAT1, TP63, CCND1 and FADD) the analysis identified several candidate novel driver events including mutations of NOTCH3, CSMD3, CRB1, CLTCL1, OSMR and TRPM2, amplification of the proto-oncogenes FOSL1, RELA, TRAF6, MDM2, FRS2 and BAG1, and deletion of the recently described tumor suppressor SMARCC1. Analysis also revealed significantly altered pathways not previously implicated in OSCC including Oncostatin-M signalling pathway, AP-1 and C-MYB transcription networks and endocytosis. There was a trend for higher number of mutations, amplifications and driver events in samples with history of shammah exposure particularly those that tested EBV positive, suggesting an interaction between tobacco exposure and EBV. The work provides further evidence for the genetic heterogeneity of oral cancer and suggests shammah-Associated OSCC is characterized by extensive amplification of oncogenes.
AB - The study sought to identify genetic aberrations driving oral squamous cell carcinoma (OSCC) development among users of shammah, an Arabian preparation of smokeless tobacco. Twenty archival OSCC samples, 15 of which with a history of shammah exposure, were whole-exome sequenced at an average depth of 127×. Somatic mutations were identified using a novel, matched controls-independent filtration algorithm. CODEX and Exomedepth coupled with a novel, Database of Genomic Variant-based filter were employed to call somatic gene-copy number variations. Significantly mutated genes were identified with Oncodrive FM and the Youn and Simon's method. Candidate driver genes were nominated based on Gene Set Enrichment Analysis. The observed mutational spectrum was similar to that reported by the TCGA project. In addition to confirming known genes of OSCC (TP53, CDKNA2, CASP8, PIK3CA, HRAS, FAT1, TP63, CCND1 and FADD) the analysis identified several candidate novel driver events including mutations of NOTCH3, CSMD3, CRB1, CLTCL1, OSMR and TRPM2, amplification of the proto-oncogenes FOSL1, RELA, TRAF6, MDM2, FRS2 and BAG1, and deletion of the recently described tumor suppressor SMARCC1. Analysis also revealed significantly altered pathways not previously implicated in OSCC including Oncostatin-M signalling pathway, AP-1 and C-MYB transcription networks and endocytosis. There was a trend for higher number of mutations, amplifications and driver events in samples with history of shammah exposure particularly those that tested EBV positive, suggesting an interaction between tobacco exposure and EBV. The work provides further evidence for the genetic heterogeneity of oral cancer and suggests shammah-Associated OSCC is characterized by extensive amplification of oncogenes.
KW - Adult
KW - Aged
KW - Biomarkers
KW - Carcinoma, Squamous Cell/epidemiology
KW - Chromosome Mapping
KW - DNA Copy Number Variations
KW - Exome
KW - Female
KW - Genetic Variation
KW - High-Throughput Nucleotide Sequencing
KW - Humans
KW - Male
KW - Middle Aged
KW - Mouth Neoplasms/epidemiology
KW - Mutation
KW - Neoplasm Staging
KW - Oncogenes
KW - Signal Transduction
KW - Tobacco, Smokeless/adverse effects
UR - http://www.scopus.com/inward/record.url?scp=84960911441&partnerID=8YFLogxK
UR - https://www.webofscience.com/api/gateway?GWVersion=2&SrcApp=purepublist2023&SrcAuth=WosAPI&KeyUT=WOS:000378417500012&DestLinkType=FullRecord&DestApp=WOS
U2 - 10.1002/ijc.30068
DO - 10.1002/ijc.30068
M3 - Article
C2 - 26934577
SN - 0020-7136
VL - 139
SP - 363
EP - 372
JO - International Journal of Cancer
JF - International Journal of Cancer
IS - 2
ER -