Search results
Results: 46
Number of items: 46
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Vanoni, M., Palumbo, P., Papa, F., Busti, S., Gotti, L., Wortel, M., Teusink, B., Orlandi, I., Pessina, A., Airoldi, C., Brambilla, L., Vai, M., & Alberghina, L. (2025). A modular model integrating metabolism, growth, and cell cycle predicts that fermentation is required to modulate cell size in yeast populations. PLoS Computational Biology, 21(7), Article e1013296. https://doi.org/10.1371/journal.pcbi.1013296 -
Bruggeman, F. J., Remeijer, M., Droste, M., Salinas, L., Wortel, M., Planqué, R., Sauro, H. M., Teusink, B., & Westerhoff, H. V. (2023). Whole-cell metabolic control analysis. Biosystems, 234, Article 105067. https://doi.org/10.1016/j.biosystems.2023.105067 -
Botman, D., O'Toole, T. G., Goedhart, J., Bruggeman, F. J., van Heerden, J. H., & Teusink, B. (2021). A yeast FRET biosensor enlightens cAMP signaling. Molecular Biology of the Cell, 32(13), 1229-1240. https://doi.org/10.1091/mbc.E20-05-0319
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Price, C. E., Branco dos Santos, F., Hesseling, A., Uusitalo, J. J., Bachmann, H., Benavente, V., Goel, A., Berkhout, J., Bruggeman, F. J., Marrink, S.-J., Montalban-Lopez, M., De Jong, A., Kok, J., Molenaar, D., Poolman, B., Teusink, B., & Kuipers, O. P. (2019). Additional file 1: of Adaption to glucose limitation is modulated by the pleotropic regulator CcpA, independent of selection pressure strength [Data set]. Figshare. https://doi.org/10.6084/m9.figshare.7576595.v1
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Price, C. E., Branco dos Santos, F., Hesseling, A., Uusitalo, J. J., Bachmann, H., Benavente, V., Goel, A., Berkhout, J., Bruggeman, F. J., Marrink, S.-J., Montalban-Lopez, M., de Jong, A., Kok, J., Molenaar, D., Poolman, B., Teusink, B., & Kuipers, O. P. (2019). Adaption to glucose limitation is modulated by the pleotropic regulator CcpA, independent of selection pressure strength. BMC Evolutionary Biology, 19, Article 15. https://doi.org/10.1186/s12862-018-1331-x -
Botman, D., de Groot, D. H., Schmidt, P., Goedhart, J., & Teusink, B. (2019). In vivo characterisation of fluorescent proteins in budding yeast. Scientific Reports, 9, Article 2234. https://doi.org/10.1038/s41598-019-38913-z -
Botman, D., Groot, D. H. d., Schmidt, P., Goedhart, J., & Teusink, B. (2018, October 22). In vivo characterisation of fluorescent proteins in budding yeast. [Data set]. Zenodo. https://doi.org/10.5281/zenodo.1468183
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Folch-Fortuny, A., Teusink, B., Hoefsloot, H. C. J., Smilde, A. K., & Ferrer, A. (2018). Dynamic elementary mode modelling of non-steady state flux data. BMC Systems Biology, 12, Article 71. https://doi.org/10.1186/s12918-018-0589-3 -
Feenstra, K. A., Abeln, S., Westerhuis, J. A., Brancos dos Santos, F., Molenaar, D., Teusink, B., Hoefsloot, H. C. J., & Heringa, J. (2018). Training for translation between disciplines: a philosophy for life and data sciences curricula. Bioinformatics, 34(13), i4–i12. https://doi.org/10.1093/bioinformatics/bty233 -
Bachmann, H., Molenaar, D., Branco dos Santos, F., & Teusink, B. (2017). Experimental evolution and the adjustment of metabolic strategies in lactic acid bacteria. FEMS Microbiology Reviews, 41(Supplement 1), S201-S219. https://doi.org/10.1093/femsre/fux024
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