bioRxiv · 10.1101/2024.11.20.623860
Integration of multi-modal measurements identifies critical mechanisms of tuberculosis drug action
Abstract
Treatments for tuberculosis remain lengthy, motivating a search for new drugs with novel mechanisms of action. However, it remains challenging to elucidate the direct targets of a drug, and even more so, to determine which disrupted cellular processes lead to bacterial killing. We developed a computational tool, DECIPHAER (DEcoding Cross-modal Information of PHarmacologies via AutoEncodeRs), to select the important correlated transcriptional and morphological responses of Mycobacterium tuberculosis to drug treatments. By finding a reduced feature space from these measurements, DECIPHAER highlighted essential features of Mtb cellular damage such as phosphosugar stress and inhibition of translation and DNA replication. After training, DECIPHAER provides cell-death-relevant insight into single-modal datasets, enabling interrogation of drug treatment responses for which transcriptional data are unavailable. Using morphological data alone with DECIPHAER, we discovered that respiration inhibition by the poly-pharmacological drugs, SQ109 and BM212, can influence cell death more than their effects on the cell wall. This study demonstrates that DECIPHAER can extract the critical shared information from multi-modal measurements to identify cell death-relevant mechanisms of TB drugs.
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Johnson, W. C., Alivisatos, A., Smith, T. C., Van, N., Soni, V., Wallach, J. B., Clark, N. A., Fitzgerald, T. A., Whiteley, J. J., Sokolov, A., Ando, D. M., Schnappinger, D., Rhee, K. Y., Aldridge, B. B.. 2024-11-20. Integration of multi-modal measurements identifies critical mechanisms of tuberculosis drug action. https://doi.org/10.1101/2024.11.20.623860
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