bioRxiv · 10.1101/2024.01.23.576957
Dynamic minimization of proteome reallocation explains metabolic transition in hierarchical utilization of mixed carbon sources
Abstract
Cells choose between alternative pathways in metabolic networks under diverse environmental conditions, but the principles governing the choice are insufficiently understood, especially in response to dynamically changing conditions. Here we observed that a lactic acid bacterium Bacillus coagulans displayed homolactic fermentation on glucose or trehalose as the sole carbon source, but transitioned from homolactic to heterolactic fermentation during the hierarchical utilization of glucose and trehalose when growing on the mixture. We simulated the observation by dynamic minimization of reallocation of proteome (dMORP) using an enzyme-constrained genome-scale metabolic model of B. coagulans, which coincided with our omics data. Moreover, we evolved strains to co-utilize mixed carbon sources and repress the choice of heterolactic fermentation, and the dynamics after co-utilization of carbon sources could also be captured by dMORP. Altogether, the findings suggest that upon rapid environmental changes bacteria tend to minimize proteome reallocation and accordingly adjust metabolism, and dMORP would be useful in simulating and understanding cellular dynamics.
Source connections
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Liu, Z., Chen, M., Hu, J., Wang, Y., Chen, Y.. 2024-01-25. Dynamic minimization of proteome reallocation explains metabolic transition in hierarchical utilization of mixed carbon sources. https://doi.org/10.1101/2024.01.23.576957
Cite the original work for its findings. Save a collection to share your selection of sources.