bioRxiv · 10.1101/2021.07.29.454377
Discovery of small molecule pathway regulators by image profile matching
Abstract
Identifying chemical regulators of biological pathways is a time-consuming bottleneck in developing therapeutics and research compounds. Typically, thousands to millions of candidate small molecules are tested in target-based biochemical screens or phenotypic cell-based screens, both expensive experiments customized to each disease. Here, our uncustomized, virtual profile-based screening approach instead identifies compounds that match to pathways based on phenotypic information in public cell image data, created using the Cell Painting assay. Our straightforward correlation-based computational strategy retrospectively uncovered the expected, known small molecule regulators for 32% of positive-control gene queries. In prospective, discovery mode, we efficiently identified new compounds related to three query genes, and validated them in subsequent gene-relevant assays, including compounds that phenocopy or pheno-oppose YAP1 overexpression and kill a Yap1-dependent sarcoma cell line. This image profile-based approach could replace many customized labor- and resource-intensive screens and accelerate the discovery of biologically and therapeutically useful compounds. One sentence summaryIf a genetic perturbation impacts cell morphology, a computational query can reveal compounds whose morphology "matches".
Source connections
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Rohban, M. H., Fuller, A. M., Tan, C., Goldstein, J. T., Syangtan, D., Gutnick, A., Nijsure, M. P., Rigby, M., Sacher, J. R., Corsello, S. M., Peppler, G. B., Bogaczynska, M., Ciotti, G. E., DeVine, A., Doan, M., Gale, J. P., Derynck, R., Turbyville, T., Boerckel, J. D., Singh, S., Kiessling, L. L., Schwarz, T. L., Varelas, X., Wagner, F. F., Kafri, R., Eisinger-Mathason, T. S. K., Carpenter, A. E.. 2021-07-30. Discovery of small molecule pathway regulators by image profile matching. https://doi.org/10.1101/2021.07.29.454377
Cite the original work for its findings. Save a collection to share your selection of sources.