CytoSignal Detects Locations and Dynamics of Ligand-Receptor Signaling at Cellular Resolution from Spatial Transcriptomic Data (Part 1)
Description
Nearby cells within tissues communicate through ligand-receptor signaling interactions. Emerging spatial transcriptomic technologies provide a tremendous opportunity to systematically detect ligand-receptor signaling, but no method operates at cellular resolution in the spatial context. We developed CytoSignal to infer the locations and dynamics of cell-cell communication at cellular resolution from spatial transcriptomic data. CytoSignal is based on the simple insight that signaling is a protein-protein interaction that occurs at a specific tissue location when ligand and receptor are expressed in close spatial proximity. Our cellular-resolution, spatially-resolved signaling scores allow several novel types of analyses: we identify spatial gradients in signaling strength; separately quantify the locations of contact-dependent and diffusible interactions; and detect signaling-associated differentially expressed genes. Additionally, we can predict the temporal dynamics of a signaling interaction at each spatial location. CytoSignal is compatible with nearly every kind of spatial transcriptomic technology including FISH-based protocols and spot-based protocols without deconvolution. We experimentally validate our results in situ by proximity ligation assay, confirming that CytoSignal scores closely match the tissue locations of ligand-receptor protein-protein interactions. Our work addresses the field's current need for a robust and scalable tool to detect cell-cell signaling interactions and their dynamics at cellular resolution from spatial transcriptomic data.
Files
Files
(45.6 GB)
| Name | Size | |
|---|---|---|
|
md5:7571fa60b64a4e417114671c5fb7744e
|
3.7 GB | Download |
|
md5:ed08bf8d21b8adbbc269e5202cd96b38
|
3.8 GB | Download |
|
md5:28dca00ff532465d0b224804ff2257da
|
4.2 GB | Download |
|
md5:509b5a5ad9b1c3f88dcb53d2e33031fe
|
4.0 GB | Download |
|
md5:660e6c250a8fdbf56ae34b29f2f520c7
|
4.5 GB | Download |
|
md5:0fd718a9a13feb5cc55949ffaab44a86
|
5.0 GB | Download |
|
md5:ee6fb7e46852f98f1b3d3a5610194b73
|
5.7 GB | Download |
|
md5:78e6a83f2967ea4d1a43b12d48f41f4c
|
5.2 GB | Download |
|
md5:0cd7b8fd00281f5fb5df9f947257477d
|
5.7 GB | Download |
|
md5:a5a9bd7b555204b1d6a5da0efb45f4e7
|
3.7 GB | Download |
|
md5:78979cbdccfc139a15c5225a4a32e479
|
9.3 kB | Download |
Additional details
Related works
- Is supplement to
- Dataset: 10.1101/2024.03.08.584153 (DOI)