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2026 conference-abstract

Abstract 7228: A novel digital PCR assay can detect MLH1 variants in patients with hereditary colorectal cancer

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Abstract Background: Lynch syndrome significantly increases the risk of developing colorectal cancer (CRC) due to an inherited defect in mismatch repair (MMR). Early detection relies on identification of pathogenic mutations in patients, but few canonical Lynch mutations exist. We describe two separate colon cancer patients with identical mutations in the MLH1 gene (MLH1 c.2054C>T) and later determined to be cousins as well as a third relative diagnosed with several cancers with the same mutation. Despite a strong family history of cancer, the MLH1 mutation was labeled discordantly on different NGS panels and required several weeks to obtain results delaying patient care. This highlights a need for improved diagnostics with faster turn-around time, increased cost effectiveness, and ability to screen for non-canonical Lynch variants. We designed a novel, customizable digital PCR (dPCR) assay to rapidly detect MLH1 gene variants. We also conducted in-depth molecular modeling, mutational signature analyses, and Saccharomyces cerevisiae based functional assays to demonstrate that the MLH1 mutation likely disrupts the interaction with binding partner PMS2, impairing MMR; defining a novel MLH1 mutation. Methods: NGS: DNA was isolated. The NovaSeq platform was used for sequencing. Data analysis was performed on the RTA software. Digital PCR: TaqMan probes were created for MLH1 using a FAM labeled probe for wild type alleles and a HEX labeled probe for mutants. Quantification of fluorescent signal used Thermo Quantstudio software with total signal converted to a percentage to determine the VAF. Yeast assay: In S. cerevisiae, mlh1 and pms1 knockout (mlh1Δ and pms1Δ) strains were obtained through the fragment insertion technique. Yeast expression plasmids encoding the human versions of mlh1-2054, MLH1, and PMS2 were obtained via the LR clonase technique. Plasmids were transformed into the heterozygous diploid knockout yeast strain to make the genetic construct for the assay CHT8 and CHT9 in which fresh segregants are dissected into haploids for our 5-FOA assays. Results: We designed two fluorescently labelled probes, one that recognizes the wild-type MLH1 allele and one specific for c.2054C>T (mlh1-2054). We can detect MLH1 and mlh1-2054 alleles in equal amounts, consistent with a heterozygous germline mutation in all 3 patients. We observed a significant increase in mutation frequency in yeast transformed with the mlh1-2054 variant compared with wild-type hMLH1, which reflected the difference in mutation frequency we observed in comparing MLH1 PMS1 yeast and mlh1Δ pms1Δ yeast. This suggests the mlh1-2054 variant present in all patients is pathogenic due to the resulting MMR defect we see in our yeast genetic model. Conclusion: This study emphasizes the need for improved diagnostic tools to identify pathogenic mutations in diverse populations and establishes a novel MLH1 hereditary mutation. Citation Format: Matthew Moldenhauer, Aditya Mahadevan, Cameron Hom, Valeria Rangel, Sophie Hasson, Farshid Dayyani, Ning-Hsiang Hsu, Deepika Nathan, Vishal Chandan, Selma Masri, Feng Qiao, Nicholas Pannunzio, Jennifer Brooke Valerin. A novel digital PCR assay can detect MLH1 variants in patients with hereditary colorectal cancer [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2026; Part 1 (Regular Abstracts); 2026 Apr 17-22; San Diego, CA. Philadelphia (PA): AACR; Cancer Res 2026;86(7 Suppl):Abstract nr 7228.

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DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.

Titre Crossref
Abstract 7228: A novel digital PCR assay can detect MLH1 variants in patients with hereditary colorectal cancer
Date Crossref
03/04/2026
Éditeur
American Association for Cancer Research (AACR)
Type
journal-article

Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.

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  • University of California San Diego pays non établi dans la notice
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  • City College of San Francisco pays non établi dans la notice
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  • University of California pays non établi dans la notice
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  • UC Irvine Health pays non établi dans la notice
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  • Ohio University pays non établi dans la notice
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  • La Jolla pays non établi dans la notice
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  • Columbus pays non établi dans la notice
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University of California San Diego, City College of San Francisco et University of California, avec 5 autres affiliations.

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Les sujets associés

Genetic factors in colorectal cancerCancer Genomics and DiagnosticsColorectal Cancer Treatments and Studies

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