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Results: 12
Number of items: 12
  • Kramer, G., de Winde, J. H., Ongenae, V. M., Arentshorst, M., Zwerus, J., Meuken, G., Ijadpanahsaravi, M., Roseboom, W., Ram, A. F. J., Seekles, S. J., van den Brule, T., Punt, M., Dijksterhuis, J., Ohm, R. A., & Wösten, H. A. (2024). Additional file 11 of Compatible solutes determine the heat resistance of conidia [Data set]. Figshare. https://doi.org/10.6084/m9.figshare.26639391.v1
  • Kramer, G., de Winde, J. H., Roseboom, W., Arentshorst, M., Ongenae, V. M., Meuken, G., Ijadpanahsaravi, M., Zwerus, J., Ram, A. F. J., Seekles, S. J., van den Brule, T., Punt, M., Dijksterhuis, J., Ohm, R. A., & Wösten, H. A. (2024). Additional file 9 of Compatible solutes determine the heat resistance of conidia [Data set]. Figshare. https://doi.org/10.6084/m9.figshare.26639385.v1
  • Open Access
    Seekles, S. J., van den Brule, T., Punt, M., Dijksterhuis, J., Arentshorst, M., Ijadpanahsaravi, M., Roseboom, W., Meuken, G., Ongenae, V., Zwerus, J., Ohm, R. A., Kramer, G., Wösten, H. A. B., de Winde, J. H., & Ram, A. F. J. (2023). Compatible solutes determine the heat resistance of conidia. Fungal biology and biotechnology, 10, Article 21. https://doi.org/10.1186/s40694-023-00168-9
  • van Eunen, K., Bouwman, J., Daran-Lapujade, P., Postmus, J., Canelas, A. B., Mensonides, F. I. C., Orij, R., Tuzun, I., van den Brink, J., Smits, G. J., van Gulik, W. M., Brul, S., Heijnen, J. J., de Winde, J. H., Teixeira De Mattos, M. J., Kettner, C., Nielsen, J., Westerhoff, H. V., & Bakker, B. M. (2010). Measuring enzyme activities under standardized in vivo-like conditions for systems biology. The FEBS Journal, 277(3), 749-760. https://doi.org/10.1111/j.1742-4658.2009.07524.x
  • Bouwman, J., van Eunen, K., Tuzun, I., Postmus, J., Canelas, A., van der Brink, J., Lindenbergh, P. A., Teixeira De Mattos, M. J., Smits, G. J., Daran-Lapujade, P. A. L., van Gulik, W. M., van Spanning, R. J., Heijnen, J. J., de Winde, J. H., Brul, S., Hellingwerf, K. J., Westerhoff, H. V., & Bakker, B. M. (2007). Standardization and 'in vivo'-like enzyme activity measurements in yeast. In M. G. Hicks, & C. Kettner (Eds.), Proceedings of the 2nd International Beilstein Workshop on Experimental Standard Conditions of Enzyme Characterizations: March 19th -23rd, 2006, Rüdesheim/Rhein, Germany (pp. 11-20). Logos-Verlag. http://www.beilstein-institut.de/download/676/06_escec_06_druck_071122.pdf
  • Open Access
    Pel, H. J., de Winde, J. H., de Groot, P. W. J., Klis, F. M., & DSM sequencing project (2007). Genome sequencing and analysis of the versatile cell factory Aspergillus niger CBS 513.88. Nature Biotechnology, 25(2), 221-231. https://doi.org/10.1038/nbt1282
  • Blom, J., de Winde, J. H., Mulder, W., & Grivell, L. A. (1995). Carbon catabolite control of respiratory function in yeast. In Proc. Int. Conf. on Transport, Signalling and its Metabolic Consequences in Micro-organisms (pp. 9).
  • Open Access
    de Winde, J. H., & Grivell, L. A. (1995). Regulation of mitochondrial biogenesis in Saccharomyces cerevisiae. Intricate interplay between general and specific transcription factors in the promoter of the QCR8 gene. European Journal of Biochemistry, 233, 200-208.
  • Mulder, W. (1994). A comparative study of Transcriptional regulation of genes encoding mitochondrial components in the yeasts Saccharomyces cerevisiae and Kluyveromyces lactis. [Thesis, fully internal, Universiteit van Amsterdam].
  • de Winde, J. H., & Grivell, L. A. (1994). Regulation of mitochondrial biogenesis in yeast: intricate interplay between general and specific transcriptional regulators. In Int. Meeting on Yeast Genetics and Molecular Biology. (pp. 297).
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