Comparison of Eight Technologies to Determine Genotype at the UGT1A1 (TA)n Repeat Polymorphism: Potential Clinical Consequences of Genotyping Errors?

Author:

Sissung Tristan M.,Barbier Roberto H.,Price Douglas K.,Plona Teri M.,Pike Kristen M.,Mellott Stephanie D.,Baugher Ryan N.,Whiteley Gordon R.ORCID,Soppet Daniel R.,Venzon DavidORCID,Berman Arlene,Rajan Arun,Giaccone Giuseppe,Meltzer Paul,Figg William D.

Abstract

To ensure accuracy of UGT1A1 (TA)n (rs3064744) genotyping for use in pharmacogenomics-based irinotecan dosing, we tested the concordance of several commonly used genotyping technologies. Heuristic genotype groupings and principal component analysis demonstrated concordance for Illumina sequencing, fragment analysis, and fluorescent PCR. However, Illumina sequencing and fragment analysis returned a range of fragment sizes, likely arising due to PCR “slippage”. Direct sequencing was accurate, but this method led to ambiguous electrophoregrams, hampering interpretation of heterozygotes. Gel sizing, pyrosequencing, and array-based technologies were less concordant. Pharmacoscan genotyping was concordant, but it does not ascertain (TA)8 genotypes that are common in African populations. Method-based genotyping differences were also observed in the publication record (p < 0.0046), although fragment analysis and direct sequencing were concordant (p = 0.11). Genotyping errors can have significant consequences in a clinical setting. At the present time, we recommend that all genotyping for this allele be conducted with fluorescent PCR (fPCR).

Funder

National Institutes of Health

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

Reference28 articles.

1. UGT1A1 Polymorphisms and Mutations Affect Anticancer Drug Therapy;Sissung,2018

2. Predictive Value of UGT1A1*28 Polymorphism In Irinotecan-based Chemotherapy

3. Inherited disorders of bilirubin clearance

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