Nature Communications · 2018 · 485 citations · 46 references
EngineeringGeneticsImmunologySingle SubpopulationFunctional HeterogeneityGene Expression ProfilingTrajectory AnalysisTumor BiologySubclonal HeterogeneityTumor HeterogeneitySingle Cell SequencingMolecular DiagnosticsSingle-cell GenomicsGene ExpressionSingle-cell AnalysisFunctional GenomicsCell BiologyTumor MicroenvironmentAggressive Disease StatesCancer GenomicsTriple-negative Breast CancerSystems BiologyMedicineNon-coding Rna
Triple-negative breast cancer (TNBC) is an aggressive subtype characterized by extensive intratumoral heterogeneity. To investigate the underlying biology, we conducted single-cell RNA-sequencing (scRNA-seq) of >1500 cells from six primary TNBC. Here, we show that intercellular heterogeneity of gene expression programs within each tumor is variable and largely correlates with clonality of inferred genomic copy number changes, suggesting that genotype drives the gene expression phenotype of individual subpopulations. Clustering of gene expression profiles identified distinct subgroups of malignant cells shared by multiple tumors, including a single subpopulation associated with multiple signatures of treatment resistance and metastasis, and characterized functionally by activation of glycosphingolipid metabolism and associated innate immunity pathways. A novel signature defining this subpopulation predicts long-term outcomes for TNBC patients in a large cohort. Collectively, this analysis reveals the functional heterogeneity and its association with genomic evolution in TNBC, and uncovers unanticipated biological principles dictating poor outcomes in this disease.
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Laurens van der Maaten, Geoffrey E. Hinton · Journal of Machine Learning Research · 2008 · 35.7K citations
Gene expression profiling predicts clinical outcome of breast cancer
Laura van ‘t Veer, Hongyue Dai, Marc J. van de Vijver et al. · Nature · 2002 · 9.5K citations · Full text