Researcher Portfolio

 
   

Prof. Dr. Palkovits, Regina

Research Department Schlögl, Max Planck Institute for Chemical Energy Conversion, Max Planck Society, Research Department Schüth, Max-Planck-Institut für Kohlenforschung, Max Planck Society, Research Group Palkovits, Max-Planck-Institut für Kohlenforschung, Max Planck Society  

 

Researcher Profile

 
Position: Research Department Schlögl, Max Planck Institute for Chemical Energy Conversion, Max Planck Society
Position: Research Department Schüth, Max-Planck-Institut für Kohlenforschung, Max Planck Society
Position: Research Group Palkovits, Max-Planck-Institut für Kohlenforschung, Max Planck Society
Researcher ID: https://pure.mpg.de/cone/persons/resource/persons58862

External references

 

Publications

 
  (1 - 25 of 106)
 : Krass, M., Kolster, M., Valenzuela, J. I., Moldenhauer, L., Kagelmacher, M., Niesler, N., Weng, A., Zerial, M., Nagel, G., & Fuchs, H. (2025). Recombinant Expression of a Ready-to-Use EGF Variant Equipped With a Single Conjugation Site for Click-Chemistry. Engineering in life sciences, 25(3): e70015. doi:10.1002/elsc.70015. [PubMan] : Soler, J. A., Singh, A., Zerial, M., & Thutupalli, S. (2025). Motor Function of the Two-Component EEA1-Rab5 Revealed by dcFCCS. Methods in molecular biology (Clifton, N.J.), 2881, 87-115. doi:10.1007/978-1-0716-4280-1_4. [PubMan] : Bebelman, M. P., Belicova, L., & Zerial, M. (2024). The people behind the papers - Maarten Bebelman, Lenka Belicova and Marino Zerial. Development genes and evolution, 151(22): dev204486. doi:10.1242/dev.204486. [PubMan] : Bebelman, M. P., Belicova, L., Gralinska, E., Jumel, T., Lahree, A., Sommer, S., Shevchenko, A., Zatsepin, T., Kalaidzidis, Y., Vingron, M., & Zerial, M. (2024). Hepatocyte differentiation requires anisotropic expansion of bile canaliculi. Development (Cambridge, England), 151(22): dev202777. doi:10.1242/dev.202777. [PubMan] : Bettancourt, N., Pérez-Gallardo, C., Candia, V., Guevara, P., Kalaidzidis, Y., Zerial, M., Segovia-Miranda, F., & Morales-Navarrete, H. (2024). Virtual tissue microstructure reconstruction across species using generative deep learning. PloS one, 19(7): e0306073. doi:10.1371/journal.pone.0306073. [PubMan] : Martínez-Torres, D., Maldonado, V., Pérez-Gallardo, C., Yañez, R., Candia, V., Kalaidzidis, Y., Zerial, M., Morales-Navarrete, H., & Segovia-Miranda, F. (2024). Phenotypic characterization of liver tissue heterogeneity through a next-generation 3D single-cell atlas. Scientific reports, 14(1): 2823. doi:10.1038/s41598-024-53309-4. [PubMan] : Martins, N. P., Kalaidzidis, Y., Zerial, M., & Jug, F. (2023). DeepContrast: Deep Tissue Contrast Enhancement using Synthetic Data Degradations and OOD Model Predictions. In 2023 IEEE/CVF INTERNATIONAL CONFERENCE ON COMPUTER VISION WORKSHOPS, ICCVW (pp. 3830-3839). Piscataway, N.J.: IEEE. [PubMan] : Mayer, C., Nehring, S., Kücken, M., Repnik, U., Seifert, S., Sljukic, A., Delpierre, J., Morales-Navarrete, H., Hinz, S., Brosch, M., Chung, B., Karlsen, T., Huch, M., Kalaidzidis, Y., Brusch, L., Hampe, J., Schafmayer, C., & Zerial, M. (2023). Apical bulkheads accumulate as adaptive response to impaired bile flow in liver disease. EMBO reports, 24(9): e57181. doi:10.15252/embr.202357181. [PubMan] : Schuhmacher, J. S., Dieck, S. T., Christoforidis, S., Landerer, C., Gallesio, J. D., Hersemann, L., Seifert, S., Schäfer, R., Giner, A., Toth-Petroczy, A., Kalaidzidis, Y., Bohnsack, K. E., Bohnsack, M. T., Schuman, E. M., & Zerial, M. (2023). The Rab5 effector FERRY links early endosomes with mRNA localization. Molecular cell, 83(11), 1839-1855. doi:10.1016/j.molcel.2023.05.012. [PubMan] : Quentin, D., Schuhmacher, J. S., Klink, B. U., Lauer, J., Shaikh, T. R., Huis in´t Veld, P. J., Welp, L. M., Urlaub, H., Zerial, M., & Raunser, S. (2023). Structural basis of mRNA binding by the human FERRY Rab5 effector complex. Molecular Cell, 83(11), 1856-1871. doi:10.1016/j.molcel.2023.05.009. [PubMan] : Quentin, D., Schuhmacher, J. S., Klink, B., Lauer, J., Shaikh, T. R., Veld, P. J. H. I. '., Welp, L. M., Urlaub, H., Zerial, M., & Raunser, S. (2023). Structural basis of mRNA binding by the human FERRY Rab5 effector complex. Molecular cell, 83(11), 1856-1871. doi:10.1016/j.molcel.2023.05.009. [PubMan] : Singh, A., Soler Blasco, J. A., Lauer, J., Grill, S. W., Jahnel, M., Zerial, M., & Thutupalli, S. (2023). Two-component molecular motor driven by a GTPase cycle. Nature physics, 19(8), 1185-1192. doi:10.1038/s41567-023-02009-3. [PubMan] : Bebelman, M. P., Bovyn, M. J., Mayer, C., Delpierre, J., Naumann, R., Martins, N. P., Honigmann, A., Kalaidzidis, Y., Haas, P. A., & Zerial, M. (2023). Hepatocyte apical bulkheads provide a mechanical means to oppose bile pressure. The Journal of cell biology, 222(4): e202208002. doi:10.1083/jcb.202208002. [PubMan] : Solomatina, A., Cezanne, A., Kalaidzidis, Y., Zerial, M., & Sbalzarini, I. F. (2022). Design centering enables robustness screening of pattern formation models. Bioinformatics (Oxford, England), 38(Suppl 2): ii134-ii140. doi:10.1093/bioinformatics/btac480. [PubMan] : Lahree, A., Baptista, S. d. J. S., Marques, S., Perschin, V., Zuzarte-Luís, V., Goel, M., Choudhary, H. H., Mishra, S., Stigloher, C., Zerial, M., Sundaramurthy, V., & Mota, M. M. (2022). Active APPL1 sequestration by Plasmodium favors liver-stage development. Cell reports, 39(9): 110886. doi:10.1016/j.celrep.2022.110886. [PubMan] : Paramasivam, P., Stöter, M., Corradi, E., Costa, I. D., Höijer, A., Bartesaghi, S., Sabirsh, A., Lindfors, L., Arteta, M. Y., Nordberg, P., Andersson, S., Baudet, M.-L., Bickle, M., & Zerial, M. (2022). Quantitative intracellular retention of delivered RNAs through optimized cell fixation and immunostaining. RNA (New York, N.Y.), 28(3), 433-446. doi:10.1261/rna.078895.121. [PubMan] : Paramasivam, P., Franke, C., Stöter, M., Höijer, A., Bartesaghi, S., Sabirsh, A., Lindfors, L., Arteta, M. Y., Dahlén, A., Bak, A., Andersson, S., Kalaidzidis, Y., Bickle, M., & Zerial, M. (2022). Endosomal escape of delivered mRNA from endosomal recycling tubules visualized at the nanoscale. Journal of cell biology, The, 221(2): e202110137, pp. 1-19. doi:10.1083/jcb.202110137. [PubMan] : Belicova, L., Repnik, U., Delpierre, J., Gralinska, E., Seifert, S., Valenzuela, J. I., Morales-Navarrete, H., Franke, C., Räägel, H., Shcherbinina, E., Prikazchikova, T., Koteliansky, V., Vingron, M., Kalaidzidis, Y., Zatsepin, T., & Zerial, M. (2021). Anisotropic expansion of hepatocyte lumina enforced by apical bulkheads. Journal of cell biology, The, 220(10): e202103003. doi:10.1083/jcb.202103003. [PubMan] : Solomatina, A., Kalaidzidis, Y., Cezanne, A., Soans, K., Norden, C., Zerial, M., & Sbalzarini, I. F. (2021). Particle-based Segmentation of Extended Objects on Curved Biological Membranes. In ISBI 2021, IEEE International Symposium on Biomedical Imaging (ISBI) (pp. 1150-1154). Piscataway, N.J.: IEEE. [PubMan] : Lauer, J., & Zerial, M. (2021). Profiling Structural Alterations During Rab5 Nucleotide Exchange by HDX-MS. Methods in molecular biology (Clifton, N.J.), 2293, 69-89. doi:10.1007/978-1-0716-1346-7_6. [PubMan] : Scholich, A., Syga, S., Morales-Navarrete, H., Segovia-Miranda, F., Nonaka, H., Meyer, K., Back, W. d., Brusch, L., Kalaidzidis, Y., Zerial, M., Jülicher, F., & Friedrich, B. (2020). Quantification of nematic cell polarity in three-dimensional tissues. PLoS computational biology, 16(12): 1008412. doi:10.1371/journal.pcbi.1008412. [PubMan] : Cezanne, A., Lauer, J., Solomatina, A., Sbalzarini, I. F., & Zerial, M. (2020). A non-linear system patterns Rab5 GTPase on the membrane. eLife, 9: e54434. doi:10.7554/eLife.54434. [PubMan] : Karschau, J., Scholich, A., Wise, J., Morales-Navarrete, H., Kalaidzidis, Y., Zerial, M., & Friedrich, B. (2020). Resilience of three-dimensional sinusoidal networks in liver tissue. PLoS computational biology, 16(6): e1007965. doi:10.1371/journal.pcbi.1007965. [PubMan] : Saraon, P., Snider, J., Kalaidzidis, Y., Wybenga-Groot, L. E., Weiss, K., Rai, A., Radulovich, N., Drecun, L., Vučković, N., Vučetić, A., Wong, V., Thériault, B., Pham, N.-A., Park, J. H., Datti, A., Wang, J., Pathmanathan, S., Aboualizadeh, F., Lyakisheva, A., Yao, Z., Wang, Y., Joseph, B., Aman, A., Moran, M. F., Prakesch, M., Poda, G., Marcellus, R., Uehling, D., Samaržija, M., Jakopović, M., Tsao, M.-S., Shepherd, F. A., Sacher, A., Leighl, N., Akhmanova, A., Al-Awar, R., Zerial, M., & Stagljar, I. (2020). A drug discovery platform to identify compounds that inhibit EGFR triple mutants. Nature chemical biology, 16(5), 577-586. doi:10.1038/s41589-020-0484-2. [PubMan] : Meyer, K., Morales-Navarrete, H., Seifert, S., Wilsch-Braeuninger, M., Dahmen, U., Tanaka, E. M., Brusch, L., Kalaidzidis, Y., & Zerial, M. (2020). Bile canaliculi remodeling activates YAP via the actin cytoskeleton during liver regeneration. Molecular systems biology, 16(2): e8985. doi:10.15252/msb.20198985. [PubMan]