Enhancing a low-cost, minimally invasive screening test for dihydropyrimidine dehydrogenase mutations linked to 5-fluorouracil sensitivity by integrating computational mutation predictions.

J John M Janiga (Molecular Diagnostics Laboratory, Fralin Biomedical Research Institute at Virginia Tech, Roanoke, VA) D Dzenis Mahmutovic (Molecular Diagnostics Laboratory, Fralin Biomedical Research Institute at Virginia Tech, Roanoke, VA) D Dulguun Myagmarsuren (Virginia Tech Carilion School of Medicine, Roanoke, VA) C Clinton Roby (Molecular Diagnostics Laboratory, Fralin Biomedical Research Institute at Virginia Tech, Roanoke, VA) D Douglas J. Grider (Virginia Tech Carilion School of Medicine, Roanoke, VA) M Mark D. Kochenderfer (Blue Ridge Cancer Care, Roanoke, VA) K Katherine Lynn Brown (Molecular Diagnostics Laboratory, Fralin Biomedical Research Institute at Virginia Tech, Roanoke, VA) C Carla V. Finkielstein (Molecular Diagnostics Laboratory, Fralin Biomedical Research Institute at Virginia Tech, Roanoke, VA)

Abstract

226 Background: 5-Fluorouracil (5-FU), a common chemotherapy for solid tumors, is metabolized primarily by dihydropyrimidine dehydrogenase (DPD), encoded by the DPYD gene. With > 200 known variants, individuals with nonfunctional DPYD alleles exhibit impaired 5-FU metabolism and are at risk of severe toxicity. Approximately 35% of the population has partial DPD deficiency, and 0.2% completely lack enzymatic activity. Despite this, DPYD genotyping is not standard practice. This study evaluates the use of non-invasive saliva samples for DPYD genotyping and combines AI-based molecular prediction modeling to search for novel variants within DPYD coding region. Saliva samples were collected from fifty-six healthy individuals and from gastrointestinal (GI) cancer patients including a family cohort of nineteen individuals and three unrelated patients undergoing chemotherapy. Methods: gDNA was sequenced for nine DPYD variants reported to reduced or abrogate DPD activity: c.1905+1G > A, c.1679T > G, c.2846A > T, c.1129-5923C > G, c.1236G > A, c.299_302delTCAT, c.703C > T, c.2983G > T, and c.557A > G. cBioPortal was utilized to search the TCGA database for studies involving colon cancer patients with novel DPYD mutations exhibiting a total FIS score of at least 2 or identified through 3D modeling of DPD using PyMol based on their proximity to or the presence of polar contacts within the active site. Putative pathogenic mutations were analyzed using AlphaMissense and ChimeraX to assign a RSMD score, assessing their potential negative impact on DPD function. Results: Computational studies identified three mutations in DPYD from TCGA colon cancer patients with an unknown impact on DPD and a FIS greater than 4 (c.198G > C/T, c.2161G > A, c.2185G > A), suggesting potential disruption of its function. Four mutations (c.424T > G, c.427T > G, c.2460G > C, c.2909C > A) were identified through protein modeling using PyMol, but only two had a FIS greater than 2. Of these seven identified mutations, four (c.198G > C/T, c.2161G > A, c.2185G > A, c.2909C > A) also scored highly using AlphaMissense and ChimeraX. In silico prediction models from VarSome listed c.2185G > A as Pathogenic Moderate and c.2909C > A as Pathogenic Very Strong. Sequencing of saliva samples indicated mutations c.1129-5923C > G and c.1236G > A were present in four and three volunteers, respectively, and c.1905+1G > A in one case. Mutations identified in GI cancer patients were c.1129-5923C > G and c.1236G > A. Conclusions: By combining computational modeling with the analysis of naturally occurring mutations in colon cancer patients, we have successfully identified potentially pathogenic mutations in the DPYD gene. This information can enhance existing clinical diagnostic tests, providing a more comprehensive assessment of DPYD mutations, including novel variants.

Article Details

Volume / Issue Vol. 43, Issue 4_suppl
Published February 01, 2025
Pages 226-226
ISSN 0732-183X
Publisher Lippincott Williams & Wilkins

Journal Info

Journal of Clinical Oncology

Lippincott Williams & Wilkins

ISSN: 0732-183X Health Sciences

Authors (8)

J

John M Janiga

Molecular Diagnostics Laboratory, Fralin Biomedical Research Institute at Virginia Tech, Roanoke, VA

D

Dzenis Mahmutovic

Molecular Diagnostics Laboratory, Fralin Biomedical Research Institute at Virginia Tech, Roanoke, VA

D

Dulguun Myagmarsuren

Virginia Tech Carilion School of Medicine, Roanoke, VA

C

Clinton Roby

Molecular Diagnostics Laboratory, Fralin Biomedical Research Institute at Virginia Tech, Roanoke, VA

D

Douglas J. Grider

Virginia Tech Carilion School of Medicine, Roanoke, VA

M

Mark D. Kochenderfer

Blue Ridge Cancer Care, Roanoke, VA

K

Katherine Lynn Brown

Molecular Diagnostics Laboratory, Fralin Biomedical Research Institute at Virginia Tech, Roanoke, VA

C

Carla V. Finkielstein

Molecular Diagnostics Laboratory, Fralin Biomedical Research Institute at Virginia Tech, Roanoke, VA