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◇ medRxiv2026-08-22· genetic and genomic medicine

Prioritizing Genes and Rare Protein-Coding Variants in Acute Myeloid Leukemia via Whole Genome Sequencing Data

S. Vieno, M. Singh, S. Kramer, C. Chatzinakos, R. Peterson, B. Riley, S.-A. Bacanu, T. Dinh, B. Q. Trinh, T.-H. Nguyen

原始摘要(英文原文)· Original abstract
The extent to which rare and common genetic variants jointly contribute to the risk of acute myeloid leukemia (AML) still remains relatively unexplored in large-scale biobank whole-genome sequencing cohorts. Here, we leverage the latest sequencing and phenotypic data from the All of Us Research Program to identify variants, genes, and gene-sets associated with AML. We performed set-based association tests for rare protein-coding variants (Ncases=265 and Ncontrols=169,706) and single-variant association tests for common variants (Ncases=265 and Ncontrols=169,705) utilizing the large European-like ancestry sample. For the rare-variant set-based tests conducted using SAIGE-GENE+, four genes were statistically significant: DNMT3A, TET2, SRSF2, and IDH2 (Bonferroni-corrected Cauchy p-value < 0.05). We also constructed multiple rare-variant burden risk scores using different gene-sets to identify those with a substantial rare-variant burden for AML. Gene-sets derived from Genomic Data Commons whole-genome sequencing data, comprising two distinct groups-genes observed to harbor somatic mutations in AML and genes observed to harbor somatic mutations across all cancer types-showed a statistically significant rare-variant burden (Bonferroni-corrected p-value < 0.05). Ultimately, these findings demonstrate that leveraging whole-genome sequencing in large-scale biobanks enables the identification of rare protein-coding variants, genes, and gene sets associated with AML.
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Prioritizing Genes and Rare Protein-Coding Variants in Acute Myeloid Leukemia via Whole Genome Sequencing Data — 科研速览 Science Skim