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    The tumor multi-omic landscape of endometrial cancers developed on a germline genetic background of adiposity

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    Authors
    Richenberg, G
    Francis, A
    Owen, CN
    Gray, V
    Robinson, T
    Gabriel, AA
    Lawrenson, K
    Crosbie, Emma J
    Schildkraut, JM
    McKay, JD
    Gaunt, TR
    Relton, CL
    Vincent, EE
    Kar, SP
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    Affiliation
    Division of Cancer Sciences, Faculty of Biology, Medicine and Health, University of Manchester, Manchester, UK.
    Issue Date
    2023
    
    Metadata
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    Abstract
    High body mass index (BMI) is a causal risk factor for endometrial cancer but the tumor molecular mechanisms affected by adiposity and their therapeutic relevance remain poorly understood. Here we characterize the tumor multi-omic landscape of endometrial cancers that have developed on a background of lifelong germline genetic exposure to elevated BMI. We built a polygenic score (PGS) for BMI in women using data on independent, genome-wide significant variants associated with adult BMI in 434,794 women. We performed germline (blood) genotype quality control and imputation on data from 354 endometrial cancer cases from The Cancer Genome Atlas (TCGA). We assigned each case in this TCGA cohort their genetically predicted life-course BMI based on the BMI PGS. Multivariable generalized linear models adjusted for age, stage, microsatellite status and genetic principal components were used to test for associations between the BMI germline PGS and endometrial cancer tumor genome-wide genomic, transcriptomic, proteomic, epigenomic and immune traits in TCGA. High BMI germline PGS was associated with (i) upregulated tumor gene expression in the IL6-JAK-STAT3 pathway (FDR=4.2×10-7); (ii) increased estimated intra-tumor activated mast cell infiltration (FDR=0.008); (iii) increased single base substitution (SBS) mutational signatures 1 (FDR=0.03) and 5 (FDR=0.09) and decreased SBS13 (FDR=0.09), implicating age-related and APOBEC mutagenesis, respectively; and (iv) decreased tumor EGFR protein expression (FDR=0.07). Alterations in IL6-JAK-STAT3 signaling gene and EGFR protein expression were, in turn, significantly associated with both overall survival and progression-free interval. Thus, we integrated germline and somatic data using a novel study design to identify associations between genetically predicted lifelong exposure to higher BMI and potentially actionable endometrial cancer tumor molecular features. These associations inform our understanding of how high BMI may influence the development and progression of this cancer, impacting endometrial tumor biology and clinical outcomes.
    Citation
    Richenberg G, Francis A, Owen CN, Gray V, Robinson T, Gabriel AA, et al. The tumor multi-omic landscape of endometrial cancers developed on a germline genetic background of adiposity. medRxiv : the preprint server for health sciences. 2023 Oct 10. PubMed PMID: 37873386. Pubmed Central PMCID: PMC10592984. Epub 2023/10/24. eng.
    Journal
    Medrxiv
    URI
    http://hdl.handle.net/10541/626784
    DOI
    10.1101/2023.10.09.23296765
    PubMed ID
    37873386
    Type
    Preprint
    ae974a485f413a2113503eed53cd6c53
    10.1101/2023.10.09.23296765
    Scopus Count
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    All Paterson Institute for Cancer Research

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