Search results
Results: 45
Number of items: 45
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Koncz, M., Lermo Jimenez, M. A., Piebes, D. G. E., Postma, M., & Verschure, P. J. (2024). Single-Molecule Analysis of Transcription Dynamics to Understand the Relationship Between Epigenetic Alterations and Transcriptional Variability. In A. Jeltsch, & M. G. Rots (Eds.), Epigenome Editing: Methods and Protocols (2nd ed., pp. 449-460). (Methods in molecular biology; Vol. 2842). Humana Press. https://doi.org/10.1007/978-1-0716-4051-7_23 -
van der Linden, F. H., Mahlandt, E. K., Arts, J. J. G., Beumer, J., Puschhof, J., de Man, S. M. A., Chertkova, A. O., Ponsioen, B., Clevers, H., van Buul, J. D., Postma, M., Gadella Jr., T. W. J., & Goedhart, J. (2021). A turquoise fluorescence lifetime-based biosensor for quantitative imaging of intracellular calcium. Nature Communications, 12, Article 7159. https://doi.org/10.1038/s41467-021-27249-w -
van't Padje, A., Oyarte Galvez, L., Klein, M., Hink, M. A., Postma, M., Shimizu, T., & Kiers, E. T. (2021). Temporal tracking of quantum-dot apatite across in vitro mycorrhizal networks shows how host demand can influence fungal nutrient transfer strategies. The ISME Journal, 15(2), 435–449. https://doi.org/10.1038/s41396-020-00786-w -
Reinhard, N. R., Van Der Niet, S., Chertkova, A., Postma, M., Hordijk, P. L., Gadella, T. W. J., & Goedhart, J. (2021). Identification of guanine nucleotide exchange factors that increase Cdc42 activity in primary human endothelial cells. Small GTPases, 12(3), 226-240. https://doi.org/10.1080/21541248.2019.1658509 -
Arts, J. J. G., Mahlandt, E. K., Grönloh, M. L. B., Schimmel, L., Noordstra, I., Gordon, E., van Steen, A. C. I., Tol, S., Walzog, B., van Rijssel, J., Nolte, M. A., Postma, M., Khuon, S., Heddleston, J. M., Wait, E., Chew, T. L., Winter, M., Montanez, E., Goedhart, J., & van Buul, J. D. (2021). Endothelial junctional membrane protrusions serve as hotspots for neutrophil transmigration. eLife, 10, Article e66074. https://doi.org/10.7554/eLife.66074 -
Bindels, D. S., Postma, M., Haarbosch, L., van Weeren, L., & Gadella, T. W. J. (2020). Multiparameter screening method for developing optimized red-fluorescent proteins. Nature Protocols, 15(2), 450-478. https://doi.org/10.1038/s41596-019-0250-7
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Caldas, V. E., Vaitla, B., Whiteside, M. D., Noë, R., Kiers, E. T., Dupin, S. E., Klein, M., Postma, M., Shimizu, T. S., Werner, G. D., Elbers, B., Bakker, M., Hink, M. A., West, S. A., van't Padje, A., & Wyatt, G. A. (2019). Data from: Mycorrhizal fungi respond to resource inequality by moving phosphorus from rich to poor patches across networks [Data set]. DRYAD. https://doi.org/10.5061/dryad.n343sh3
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Bindels, D., Postma, M., Haarbosch, L., van Weeren, L., & Jr, T. W. J. G. (2019). Test data set for macros accompanying the publication Multi-parameter screening method for developing optimized red fluorescent proteins [Data set]. Zenodo. https://doi.org/10.5281/zenodo.3347150
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Whiteside, M. D., Werner, G. D. A., Caldas, V. E. A., van't Padje, A., Dupin, S. E., Elbers, B., Bakker, M., Wyatt, G. A. K., Klein, M., Hink, M. A., Postma, M., Vaitla, B., Noë, R., Shimizu, T. S., West, S. A., & Kiers, E. T. (2019). Mycorrhizal Fungi Respond to Resource Inequality by Moving Phosphorus from Rich to Poor Patches across Networks. Current Biology, 29(12), 2043-2050, e1-e8. https://doi.org/10.1016/j.cub.2019.04.061
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