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Results: 71
Number of items: 71
  • Open Access
    Guillaume, M. C. (2026). Exploring growth-coupled production designs in Synechocystis sp. PCC 6803 to combat phenotypic instability. [Thesis, fully internal, Universiteit van Amsterdam].
  • Open Access
    Abbondanzieri, E. A., Badrinarayanan, A. B., Barillà, D., Bell, S. D., Blombach, F., Bouet, J. Y., Bulgheresi, S., Cao, Q. A. D., Dame, R. T., Dekker, C., Demuysere, M., Espéli, O., Fogg, P. C. M., Freddolino, P. L., Ganji, M., Gerson, T. M., Grainger, D. C., Hamoen, L. W., Harju, J., ... Zhang, Z. (2025). Future Directions of the Prokaryotic Chromosome Field. Molecular Microbiology, 123(2), 89-100. https://doi.org/10.1111/mmi.15347
  • Open Access
    Gulsoy, I. C., Saaki, T. N. V., Wenzel, M., Syvertsson, S., Morimoto, T., Siersma, T. K., & Hamoen, L. W. (2025). Minimization of the Bacillus subtilis divisome suggests FtsZ and SepF can form an active Z-ring, and reveals the amino acid transporter BraB as a new cell division influencing factor. PLOS Genetics, 21(1), Article e1011567. https://doi.org/10.1371/journal.pgen.1011567
  • Open Access
    Han, Y., Agnolin, A., van der Kloet, F., Sauer, C., Costea, P. I., Felle, M. F., Appelbaum, M., & Hamoen, L. W. (2025). The stringent response does not influence ribosome pausing in Bacillus subtilis. Nucleic Acids Research, 53(20), Article gkaf1088. https://doi.org/10.1093/nar/gkaf1088
  • Open Access
    Han, Y., Wang, B., Agnolin, A., Dugar, G., van der Kloet, F., Sauer, C., Costea, P. I., Felle, M. F., Appelbaum, M., & Hamoen, L. W. (2025). Ribosome pausing in amylase producing Bacillus subtilis during long fermentation. Microbial Cell Factories, 24, Article 31. https://doi.org/10.1186/s12934-025-02659-3
  • Open Access
    Pandeva, T. P. (2025). Machine learning for multi-source data integration. [Thesis, fully internal, Universiteit van Amsterdam].
  • Open Access
    Pandeva, T., Jonker, M. J., Hamoen, L., Mooij, J. M., & Forré, P. (2025). Robust Multi-view Co-expression Network Inference. Proceedings of Machine Learning Research, 275, 490-513. https://proceedings.mlr.press/v275/pandeva25a.html
  • Wang, B., Hamoen, L. W., & van der Kloet, F. M. (2024). Additional file 2 of Induction of the CtsR regulon improves Xylanase production in Bacillus subtilis [Data set]. Figshare. https://doi.org/10.6084/m9.figshare.24540866.v1
  • Open Access
    Gray, D. A., Wang, B., Sidarta, M., Cornejo, F. A., Wijnheijmer, J., Rani, R., Gamba, P., Turgay, K., Wenzel, M., Strahl, H., & Hamoen, L. W. (2024). Membrane depolarization kills dormant Bacillus subtilis cells by generating a lethal dose of ROS. Nature Communications, 15, Article 6877. https://doi.org/10.1038/s41467-024-51347-0
  • Open Access
    Wang, B., Kes, M. B. M. J., van den Berg van Saparoea, A. C. H., Dugar, G., Luirink, J., & Hamoen, L. W. (2024). Inactivation of the conserved protease LonA increases production of xylanase and amylase in Bacillus subtilis. Microbial Cell Factories, 23, Article 335. https://doi.org/10.1186/s12934-024-02616-6
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