Hepatocellular carcinoma (HCC) is the third leading cause of cancer death globally, often arising on a background of cirrhosis. Here, we aimed to establish genetic drivers of all-cause HCC across ancestries in a large meta-analysis. We included 15 cohorts comprising 17,697 HCC affected individuals and 2,715,683 control subjects in this meta-analysis. We found 15 genome-wide significant (p < 5 × 10-8) germline loci, including in/near GCKR, MTTP, ADH5, 8q24.21 (nearest gene MYC), MAP3K9, and GABPB2, and a further two loci found on transcriptome- and regulome-wide association analyses. MAP3K9, TERT, and GABPB2 variants act independently of cirrhosis on both colocalization analysis and sensitivity analyses. There was significant ancestral heterogeneity in six loci including variants in the HLA locus that had divergent effects on HCC risk between East Asian and European ancestries. Fine mapping identified 11 potentially causal coding variants, including p.Leu446Pro (c.1337T>C) in GCKR and p.Asp423Glu (c.1269C>T) in MEN1. MEN1, 8q24.21 (nearest gene MYC), and TERT are all involved in the β-catenin pathway transactivation complex. Transcriptome-wide analysis identified enrichment of germline-encoded DHRS1 in HCC. Regulome-wide analysis replicated the germline signal for EPHA2 and found a chromatin-accessible region containing genes ZNF367 and HABP4. Finally, we demonstrated that population-level genetic architecture for HCC overlaps with steatotic and viral liver disease, and individuals with genetic risk for lower body mass index have higher risk of HCC. Genetic risk for HCC is determined by germline susceptibility to β-catenin pathway activation and cirrhosis. HCC is driven by both heterogeneous and homogeneous genetic factors across ancestries.
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