TY - JOUR
T1 - An accurate cellular assay to determine pathogenicity of coding and noncoding variants in Lynch syndrome genes
AU - Glykofridis, Iris E.
AU - Dekker, Marleen
AU - Stoepker, Chantal
AU - van Ravesteyn, Thomas W.
AU - Tiersma, Yvonne
AU - van der Ham, Cédric G.
AU - de Bruijn, Beaunelle
AU - Ebrahim, Salma
AU - de Menezes, Renée X.
AU - Kasteleijn, Esmee
AU - Verheijen, Frans
AU - van Ham, Tjakko J.
AU - te Riele, Hein
N1 - Publisher Copyright:
Copyright © 2026 the Author(s).
PY - 2026/1/20
Y1 - 2026/1/20
N2 - Lynch syndrome (LS) is a genetic predisposition to mainly colorectal and endometrial cancer due to heterozygous disruptive germline mutations in the DNA mismatch-repair (MMR) genes MSH2, MSH6, MLH1, or PMS2. Beyond clearly pathogenic mutations, germline sequencing often reveals variants of uncertain significance (VUS), predominantly single base-pair alterations in coding or noncoding regions. These uncertain variants obstruct LS diagnosis, hampering personalized surveillance. To address this challenge, we developed a highly accurate functional assay that interrogates VUS pathogenicity in human cells. Building on a mouse-based cellular assay, we adapted oligonucleotide-directed mutation screening (ODMS) for human cells and introduced a refined approach named “coselection ODMS.” To ensure physiological expression, the variant is introduced into the endogenous MMR gene by replication-coupled gene editing. Coselection ODMS demonstrated 100% accuracy in classifying 50 benign and 86 pathogenic variants spanning coding and noncoding regions in all four MMR genes. Among 109 patient-derived VUS, 51 were identified as deleterious for MMR function. Importantly, coselection ODMS delivered 100% concordant results in a clinical diagnostic laboratory. With >93% sensitivity and >92% specificity, coselection ODMS provides a highly reliable functional assay in the diagnosis of enigmatic LS variants, enabling risk assessment and personalized surveillance or treatment for affected families.
AB - Lynch syndrome (LS) is a genetic predisposition to mainly colorectal and endometrial cancer due to heterozygous disruptive germline mutations in the DNA mismatch-repair (MMR) genes MSH2, MSH6, MLH1, or PMS2. Beyond clearly pathogenic mutations, germline sequencing often reveals variants of uncertain significance (VUS), predominantly single base-pair alterations in coding or noncoding regions. These uncertain variants obstruct LS diagnosis, hampering personalized surveillance. To address this challenge, we developed a highly accurate functional assay that interrogates VUS pathogenicity in human cells. Building on a mouse-based cellular assay, we adapted oligonucleotide-directed mutation screening (ODMS) for human cells and introduced a refined approach named “coselection ODMS.” To ensure physiological expression, the variant is introduced into the endogenous MMR gene by replication-coupled gene editing. Coselection ODMS demonstrated 100% accuracy in classifying 50 benign and 86 pathogenic variants spanning coding and noncoding regions in all four MMR genes. Among 109 patient-derived VUS, 51 were identified as deleterious for MMR function. Importantly, coselection ODMS delivered 100% concordant results in a clinical diagnostic laboratory. With >93% sensitivity and >92% specificity, coselection ODMS provides a highly reliable functional assay in the diagnosis of enigmatic LS variants, enabling risk assessment and personalized surveillance or treatment for affected families.
KW - DNA mismatch repair
KW - Lynch syndrome
KW - VUS
KW - functional assay
KW - Genetic Predisposition to Disease
KW - Humans
KW - Colorectal Neoplasms, Hereditary Nonpolyposis/genetics
KW - Mismatch Repair Endonuclease PMS2/genetics
KW - Animals
KW - DNA-Binding Proteins/genetics
KW - MutS Homolog 2 Protein/genetics
KW - Germ-Line Mutation
KW - Female
KW - DNA Mismatch Repair/genetics
KW - Mice
KW - MutL Protein Homolog 1/genetics
UR - https://www.scopus.com/pages/publications/105027705619
UR - https://www.mendeley.com/catalogue/8ac1d364-4360-3507-a9c7-63e5f060a468/
U2 - 10.1073/pnas.2517801123
DO - 10.1073/pnas.2517801123
M3 - Article
C2 - 41543911
AN - SCOPUS:105027705619
SN - 0027-8424
VL - 123
JO - Proceedings of the National Academy of Sciences of the United States of America
JF - Proceedings of the National Academy of Sciences of the United States of America
IS - 3
M1 - e2517801123
ER -