Researcher Portfolio
Kalebic, Nereo
Max Planck Institute of Molecular Cell Biology and Genetics, Max Planck Society
Researcher Profile
Position: Max Planck Institute of Molecular Cell Biology and Genetics, Max Planck Society
Researcher ID: https://pure.mpg.de/cone/persons/resource/persons221457
Publications
: Appiah, B., Fullio, C. L., Ossola, C., Bertani, I., Restelli, E., Cheffer, A., Polenghi, M., Haffner, C., Garcia-Miralles, M., Zeis, P., Treppner, M., Bovio, P., Schlichtholz, L., Mas-Sanchez, A., Zografidou, L., Winter, J., Binder, H., Grün, D., Kalebic, N., Taverna, E., & Vogel, T. (2023). DOT1L activity affects neural stem cell division mode and reduces differentiation and ASNS expression. EMBO reports, 24(8): e56233. doi:10.15252/embr.202256233. [PubMan] : Pinson, A., Xing, L., Namba, T., Kalebic, N., Peters, J., Oegema, C. E., Traikov, S., Reppe, K., Riesenberg, S., Maricic, T., Derihaci, R., Wimberger, P., Pääbo, S., & Huttner, W. (2022). Human TKTL1 implies greater neurogenesis in frontal neocortex of modern humans than Neanderthals. Science (New York, N.Y.), 377(6611): eabl6422. 6422. doi:10.1126/science.abl6422. [PubMan] : Xing, L., Kalebic, N., Namba, T., Vaid, S., Wimberger, P., & Huttner, W. (2020). Serotonin Receptor 2A Activation Promotes Evolutionarily Relevant Basal Progenitor Proliferation in the Developing Neocortex. Neuron, 108(6), 1113-1129. doi:10.1016/j.neuron.2020.09.034. [PubMan] : Kalebic, N., & Huttner, W. (2020). Basal Progenitor Morphology and Neocortex Evolution. Trends in neurosciences, 43(11), 843-853. doi:10.1016/j.tins.2020.07.009. [PubMan] : Kalebic, N., Langen, B., Helppi, J., Kawasaki, H., & Huttner, W. (2020). In Vivo Targeting of Neural Progenitor Cells in Ferret Neocortex by In Utero Electroporation. Journal of visualized experiments: JoVE, (159): e61171. doi:10.3791/61171. [PubMan] : Güven, A., Kalebic, N., Long, K. S., Florio, M., Vaid, S., Brandl, H., Stenzel, D., & Huttner, W. (2020). Extracellular matrix-inducing Sox9 promotes both basal progenitor proliferation and gliogenesis in developing neocortex. eLife, 9: e49808. doi:10.7554/eLife.49808. [PubMan] : Namba, T., Dóczi, J., Pinson, A., Xing, L., Kalebic, N., Wilsch-Bräuninger, M., Long, K. S., Vaid, S., Lauer, J., Bogdanova, A., Borgonovo, B., Shevchenko, A., Keller, P., Drechsel, D. N., Kurzchalia, T. V., Wimberger, P., Chinopoulos, C., & Huttner, W. (2020). Human-Specific ARHGAP11B Acts in Mitochondria to Expand Neocortical Progenitors by Glutaminolysis. Neuron, 105(5), 867-881. doi:10.1016/j.neuron.2019.11.027. [PubMan] : Kostic, M., Paridaen, J., Long, K. S., Kalebic, N., Langen, B., Grübling, N., Wimberger, P., Kawasaki, H., Namba, T., & Huttner, W. (2019). YAP Activity Is Necessary and Sufficient for Basal Progenitor Abundance and Proliferation in the Developing Neocortex. Cell reports, 27(4), 1103-1118. doi:10.1016/j.celrep.2019.03.091. [PubMan] : Kalebic, N., Gilardi, C., Stepien, B., Wilsch-Bräuninger, M., Long, K. S., Namba, T., Florio, M., Langen, B., Lombardot, B., Shevchenko, A., Kilimann, M. W., Kawasaki, H., Wimberger, P., & Huttner, W. (2019). Neocortical Expansion Due to Increased Proliferation of Basal Progenitors Is Linked to Changes in Their Morphology. Cell stem cell, 24(4), 535-550. doi:10.1016/j.stem.2019.02.017. [PubMan] : Kalebic, N., Gilardi, C., Albert, M., Namba, T., Long, K. S., Kostic, M., Langen, B., & Huttner, W. (2018). Human-specific ARHGAP11B induces hallmarks of neocortical expansion in developing ferret neocortex. eLife, 7: e41241. doi:10.7554/eLife.41241. [PubMan] : Long, K. S., Newland, B., Florio, M., Kalebic, N., Langen, B., Kolterer, A., Wimberger, P., & Huttner, W. (2018). Extracellular Matrix Components HAPLN1, Lumican, and Collagen I Cause Hyaluronic Acid-Dependent Folding of the Developing Human Neocortex. Neuron, 99(4), 702-719. doi:10.1016/j.neuron.2018.07.013. [PubMan] : Tavano, S., Taverna, E., Kalebic, N., Haffner, C., Namba, T., Dahl, A., Wilsch-Bräuninger, M., Paridaen, J., & Huttner, W. B. (2018). Insm1 Induces Neural Progenitor Delamination in Developing Neocortex via Downregulation of the Adherens Junction Belt-Specific Protein Plekha7. Neuron, 97(6), 1299-1314. doi:10.1016/j.neuron.2018.01.052. [PubMan] : Albert, M., Kalebic, N., Florio, M., Lakshmanaperumal, N., Haffner, C., Brandl, H., Henry, I., & Huttner, W. B. (2017). Epigenome profiling and editing of neocortical progenitor cells during development. The EMBO journal, 36(17), 2642-2658. doi:10.15252/embj.201796764. [PubMan]