bioRxiv · 10.1101/2022.11.04.515171
Logical design of synthetic cis-regulatory DNA for genetic tracing of cell identities and state changes
Abstract
Descriptive data are rapidly expanding in biomedical research. Instead, functional validation methods with sufficient complexity remain underdeveloped. Transcriptional reporters allow experimental characterization and manipulation of developmental and disease cell states, but their design lacks flexibility. Here, we report logical design of synthetic cis-regulatory DNA(LSD), a computational framework leveraging phenotypic biomarkers and trans-regulatory networks as input to design reporters marking the activity of selected cellular states and pathways. LSD uses bulk or single-cell biomarkers and a reference genome or custom cis-regulatory DNA datasets with user-defined boundary regions. By benchmarking validated reporters, we integrated LSD with a computational classifier to rank phenotypic specificity of putative cis-regulatory DNA. Experimentally, LSD-designed reporters targeting a wide range of cell states are functional without minimal promoters. In silico, an LSD-unsupervised mesenchymal glioblastoma reporter outperformed previously validated ones. In genome-scale CRISPRa screens, it discovered known and novel bona fide cell-state-drivers. Thus, LSD captures core principles of cis-regulation and is broadly applicable to studying complex cell states and mechanisms of transcriptional regulation.
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Gargiulo, G., Company, C., Schmitt, M. J., Dramaretska, Y., Kertalli, S., Jiang, B., Serresi, M., Barozzi, I.. 2022-11-04. Logical design of synthetic cis-regulatory DNA for genetic tracing of cell identities and state changes. https://doi.org/10.1101/2022.11.04.515171
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