Multiomics in primary and metastatic breast tumors from the AURORA US network finds microenvironment and epigenetic drivers of metastasis
Garcia-Recio S, Hinoue T, Wheeler G, Kelly B, Garrido-Castro A, Pascual T, De Cubas A, Xia Y, Felsheim B, McClure M, Rajkovic A, Karaesmen E, Smith M, Fan C, Ericsson P, Sanders M, Creighton C, Bowen J, Leraas K, Burns R, Coppens S, Wheless A, Rezk S, Garrett A, Parker J, Foy K, Shen H, Park B, Krop I, Anders C, Gastier-Foster J, Rimawi M, Nanda R, Lin N, Isaacs C, Marcom P, Storniolo A, Couch F, Chandran U, Davis M, Silverstein J, Ropelewski A, Liu M, Hilsenbeck S, Norton L, Richardson A, Symmans W, Wolff A, Davidson N, Carey L, Lee A, Balko J, Hoadley K, Laird P, Mardis E, King T, Perou C. Multiomics in primary and metastatic breast tumors from the AURORA US network finds microenvironment and epigenetic drivers of metastasis. Nature Cancer 2022, 4: 128-147. PMID: 36585450, PMCID: PMC9886551, DOI: 10.1038/s43018-022-00491-x.Peer-Reviewed Original ResearchConceptsMetastatic breast cancerBreast cancerHER2-targeted therapiesImmune cell infiltratesMetastatic breast tumorsLiver metastasesCell infiltrateLow-pass whole-genome sequencingSubtype changesT cellsEstrogen receptorTumor subtypesEndothelial contentBreast tumorsMetastasisCell-cell adhesion genesReduced expressionGlobal DNA methylationDNA methylation mechanismsFocal deletionsMolecular featuresWhole-genome sequencingCancerSubtypesRNA sequencing
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