Despite the widespread adoption of organoids as biomimetic tissue models, methods to comprehensively analyze cell-type-specific post-translational modification (PTM) signaling networks in organoids are absent. Here, we report multivariate single-cell analysis of such networks in organoids and organoid cocultures. Simultaneous analysis by mass cytometry of 28 PTMs in >1 million single cells derived from small intestinal organoids reveals cell-type- and cell-state-specific signaling networks in stem, Paneth, enteroendocrine, tuft and goblet cells, as well as enterocytes. Integrating single-cell PTM analysis with thiol-reactive organoid barcoding in situ (TOBis) enables high-throughput comparison of signaling networks between organoid cultures. Cell-type-specific PTM analysis of colorectal cancer organoid cocultures reveals that shApc, KrasG12D and Trp53R172H cell-autonomously mimic signaling states normally induced by stromal fibroblasts and macrophages. These results demonstrate how standard mass cytometry workflows can be modified to perform high-throughput multivariate cell-type-specific signaling analysis of healthy and cancerous organoids.
Journal article
2020-03-01T00:00:00+00:00
17
335 - 342
7
Animals, Biomimetics, Cell Differentiation, Coculture Techniques, Colorectal Neoplasms, Cytophotometry, Enterocytes, Enteroendocrine Cells, Female, Fibroblasts, Gene Expression Regulation, Goblet Cells, Humans, Intestine, Small, Macrophages, Mice, Mice, Inbred C57BL, Organ Culture Techniques, Organoids, Paneth Cells, Signal Transduction, Single-Cell Analysis, Sulfhydryl Compounds, Tumor Suppressor Protein p53