Gene-Level Associations in Patients With and Without Pathogenic Germline Variants in CDKN2A and Pancreatic Cancer

Author:

Astiazaran-Symonds Esteban123ORCID,Graham Cole1ORCID,Kim Jung1ORCID,Tucker Margaret A.1ORCID,Ingvar Christian4,Helgadottir Hildur5ORCID,Pastorino Lorenza67ORCID,van Doorn Remco8ORCID,Sampson Joshua N.1,Zhu Bin19,Bruno William67,Queirolo Paola10,Fornarini Giuseppe11ORCID,Sciallero Stefania11,Carter Brian12ORCID,Hicks Belynda19ORCID,Hutchinson Amy19ORCID,Jones Kristine19,Stewart Douglas R.1ORCID,Chanock Stephen J.1,Freedman Neal D.1,Landi Maria Teresa1,Höiom Veronica5,Puig Susana13ORCID,Gruis Nelleke8ORCID,Yang Xiaohong R.1,Ghiorzo Paola67ORCID,Goldstein Alisa M.1

Affiliation:

1. Division of Cancer Epidemiology and Genetics, NCI, NIH, Bethesda, MD

2. National Human Genome Research Institute, NIH, Bethesda, MD

3. Department of Medicine, College of Medicine-Tucson, University of Arizona, Tucson, AZ

4. Department of Surgery, Lund University Hospital, Lund, Sweden

5. Department of Oncology Pathology, Karolinska Institutet and Karolinska University Hospital, Stockholm, Sweden

6. Genetics of Rare Cancers, IRCCS Ospedale Policlinico San Martino, Genoa, Italy

7. Department of Internal Medicine and Medical Specialties, University of Genoa, Genoa, Italy

8. Department of Dermatology, Leiden University Medical Center, Leiden, the Netherlands

9. Cancer Genomics Research Laboratory, Leidos Biomedical Research Inc, Frederick National Laboratory for Cancer Research, Frederick, MD

10. Melanoma Sarcoma and Rare Tumors, IEO European Institute of Oncology, Milano, Italy

11. Medical Oncology Unit 1, IRCCS Ospedale Policlinico San Martino, Genoa, Italy

12. American Cancer Society, Atlanta, GA

13. Melanoma Unit, Hospital Clínic de Barcelona, IDIBAPS, Universitat de Barcelona and CIBERER, Barcelona, Spain

Abstract

PURPOSE Pancreatic ductal adenocarcinoma (PDAC) is a component of familial melanoma due to germline pathogenic variants (GPVs) in CDKN2A. However, it is unclear what role this gene or other genes play in its etiology. MATERIALS AND METHODS We analyzed 189 cancer predisposition genes using parametric rare-variant association (RVA) tests and nonparametric permutation tests to identify gene-level associations in PDAC for patients with ( CDKN2A +) and without ( CDKN2A–) GPV. Exome sequencing was performed on 84 patients with PDAC, 47 CDKN2A+ and 37 CDKN2A–. After variant filtering, various RVA tests and permutation tests were run separately by CDKN2A status. Genes with the strongest nominal associations were evaluated in patients with PDAC from The Cancer Genome Atlas and the UK Biobank (UKB). A secondary analysis including only GPV from UKB was also performed. RESULTS In RVA tests, ERCC4 and RET showed the most compelling evidence as plausible PDAC candidate genes for CDKN2A+ patients. In contrast, the findings in CDKN2A– patients provided evidence for HMBS, EPCAM, and MRE11 as potential new candidate genes and confirmed ATM, BRCA2, and PALB2 as PDAC genes, consistent with findings in The Cancer Genome Atlas and the UKB. As expected, CDKN2A– patients were more likely to harbor GPVs from the 189 genes investigated. When including only GPVs from UKB, significant associations with PDAC were seen for ATM, BRCA2, and CDKN2A. CONCLUSION These results suggest that variants in other genes likely play a role in PDAC in all patients and that PDAC in CDKN2A+ patients has a distinct etiology from PDAC in CDKN2A– patients.

Publisher

American Society of Clinical Oncology (ASCO)

Subject

Cancer Research,Oncology

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