Mapping multicellular programs from single-cell profiles
Jerby, L.; Regev, A.
Show abstract
Tissue homeostasis relies on orchestrated multicellular circuits, where interactions between different cell types dynamically balance tissue function. While single-cell genomics identifies tissues cellular components, deciphering their coordinated action remains a major challenge. Here, we tackle this problem through a new framework of multicellular programs: combinations of distinct cellular programs in different cell types that are coordinated together in the tissue, thus forming a higher order functional unit at the tissue, rather than only cell, level. We develop the open-access DIALOGUE algorithm to systematically uncover such multi-cellular programs not only from spatial data, but even from tissue dissociated and profiled as single cells, e.g., by single-cell RNA-Seq. Tested on spatial transcriptomes from the mouse hypothalamus, DIALOGUE recovered spatial information, predicted the properties of a cells environment only based on its transcriptome, and identified multicellular programs that mark animal behavior. Applied to brain samples and colon biopsies profiled by scRNA-Seq, DIALOGUE identified multicellular configurations that mark Alzheimers disease and ulcerative colitis (UC), including a program spanning five cell types that is predictive of response to anti-TNF therapy in UC patients and enriched for UC risk genes from GWAS, each acting in different cell types, but all cells acting in concert. Taken together, our study provides a novel conceptual and methodological framework to unravel multicellular regulation in health and disease.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Comprehensive transcription factor perturbations recapitulate fibroblast transcriptional states 96%
- Multi-modal pooled Perturb-CITE-Seq screens in patient models define novel mechanisms of cancer immune evasion 95%
- A map of transcriptional heterogeneity and regulatory variation in human microglia 95%
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- Distinct gene programs underpinning 'disease tolerance' and 'resistance' in influenza virus infection 96%
- Integrative, high-resolution analysis of single cell gene expression across experimental conditions with PARAFAC2-RISE 95%
- Widespread transcriptional memory shapes heritable states and functional heterogeneity in cancer and stem cells 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.