Spatial deconvolution of HER2-positive breast cancer delineates tumor-associated cell type interactions
Publication date
2021-10-14
Authors
Andersson, Alma
Larsson, Ludvig
Stenbeck, Linnea
Salmén, Fredrik
Ehinger, Anna
Wu, Sunny Z.
Al-Eryani, Ghamdan
Roden, Daniel
Swarbrick, Alex
Borg, Åke
Editors
Advisors
Supervisors
Document Type
Article
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License
cc_by
Abstract
In the past decades, transcriptomic studies have revolutionized cancer treatment and diagnosis. However, tumor sequencing strategies typically result in loss of spatial information, critical to understand cell interactions and their functional relevance. To address this, we investigate spatial gene expression in HER2-positive breast tumors using Spatial Transcriptomics technology. We show that expression-based clustering enables data-driven tumor annotation and assessment of intra- and interpatient heterogeneity; from which we discover shared gene signatures for immune and tumor processes. By integration with single cell data, we spatially map tumor-associated cell types to find tertiary lymphoid-like structures, and a type I interferon response overlapping with regions of T-cell and macrophage subset colocalization. We construct a predictive model to infer presence of tertiary lymphoid-like structures, applicable across tissue types and technical platforms. Taken together, we combine different data modalities to define a high resolution map of cellular interactions in tumors and provide tools generalizing across tissues and diseases.
Keywords
Breast Neoplasms/genetics, Cluster Analysis, Female, Gene Expression Profiling, Gene Expression Regulation, Neoplastic, Genetic Heterogeneity, Humans, Receptor, ErbB-2/genetics, Transcriptome, General Physics and Astronomy, General Chemistry, General Biochemistry,Genetics and Molecular Biology, Research Support, Non-U.S. Gov't, Journal Article
Citation
Andersson, A, Larsson, L, Stenbeck, L, Salmén, F, Ehinger, A, Wu, S Z, Al-Eryani, G, Roden, D, Swarbrick, A, Borg, Å, Frisén, J, Engblom, C & Lundeberg, J 2021, 'Spatial deconvolution of HER2-positive breast cancer delineates tumor-associated cell type interactions', Nature Communications, vol. 12, no. 1, 6012, pp. 1-14. https://doi.org/10.1038/s41467-021-26271-2