Researcher Portfolio
Haider, Thomas
Department of Language and Literature, Max Planck Institute for Empirical Aesthetics, Max Planck Society
Researcher Profile
Position: Researcher (Department of Language and Literature, Max Planck Institute for Empirical Aesthetics, Max Planck Society)
Researcher ID: https://pure.mpg.de/cone/persons/resource/persons209101
Publications
(1 - 25 of 157)
: Saller, B. S., Wöhrle, S., Fischer, L., Dufossez, C., Ingerl, I. L., Kessler, S., Mateo-Tortola, M., Gorka, O., Lange, F., Cheng, Y., Neuwirt, E., Marada, A., Koentges, C., Urban, C., Aktories, P., Reuther, P., Giese, S., Kirschnek, S., Mayer, C., Pilic, J., Falquez-Medina, H., Oelgeklaus, A., Deepagan, V. G., Shojaee, F., Zimmermann, J. A., Weber, D., Tai, Y.-H., Crois, A., Ciminski, K., Peyronnet, R., Brandenburg, K. S., Wu, G., Baumeister, R., Heimbucher, T., Rizzi, M., Riedel, D., Helmstädter, M., Buescher, J., Neumann, K., Misgeld, T., Kerschensteiner, M., Walentek, P., Kreutz, C., Maurer, U., Rambold, A. S., Vince, J. E., Edlich, F., Malli, R., Häcker, G., Kierdorf, K., Meisinger, C., Köttgen, A., Jakobs, S., Weber, A. N., Schwemmle, M., Groß, C. J., & Groß, O. (2025). Acute suppression of mitochondrial ATP production prevents apoptosis and provides an essential signal for NLRP3 inflammasome activation. Immunity, 58(1), 90-107.e11. doi:10.1016/j.immuni.2024.10.012. [PubMan] : Elancheliyan, P., Maruszczak, K. K., Serwa, R. A., Stephan, T., Gulgec, A. S., Borrero-Landazabal, M. A., Ngati, S., Gosk, A., Jakobs, S., Wasilewski, M., & Chacinska, A. (2024). OCIAD1 and prohibitins regulate the stability of the TIM23 protein translocase. Cell Reports, 43(12): 115038. doi:10.1016/j.celrep.2024.115038. [PubMan] : Scholz, J., Stephan, T., Pérez, A. G., Csiszár, A., Hersch, N., Fischer, L. S., Brühmann, S., Körber, S., Litschko, C., Mijanovic, L., Kaufmann, T., Lange, F., Springer, R., Pich, A., Jakobs, S., Peckham, M., Tarantola, M., Grashoff, C., Merkel, R., & Faix, J. (2024). Decisive role of mDia-family formins in cell cortex function of highly adherent cells. Science Advances, 10(44): eadp5929. doi:10.1126/sciadv.adp5929. [PubMan] : Sahl, S. J., Matthias, J., Inamdar, K., Weber, M., Khan, T. A., Brüser, C., Jakobs, S., Becker, S., Griesinger, C., Broichhagen, J., & Hell, S. W. (2024). Direct optical measurement of intramolecular distances with angstrom precision. Science, 386(6718), 180-187. doi:10.1126/science.adj7368. [PubMan] : Reshetniak, S., Bogaciu, C. A., Bonn, S., Brose, N., Cooper, B. H., D'Este, E., Fauth, M., Fernández‐Busnadiego, R., Fiosins, M., Fischer, A., Georgiev, S. V., Jakobs, S., Klumpp, S., Köster, S., Lange, F., Lipstein, N., Macarrón‐Palacios, V., Milovanovic, D., Moser, T., Müller, M., Opazo, F., Outeiro, T. F., Pape, C., Priesemann, V., Rehling, P., Salditt, T., Schlüter, O., Simeth, N., Steinem, C., Tchumatchenko, T., Tetzlaff, C., Tirard, M., Urlaub, H., Wichmann, C., Wolf, F., & Rizzoli, S. O. (2024). The synaptic vesicle cluster as a controller of pre‐ and postsynaptic structure and function. The Journal of Physiology. doi:10.1113/JP286400. [PubMan] : Naas, J., Nies, G., Li, H., Stoldt, S., Schmitzer, B., Jakobs, S., & Munk, A. (2024). MultiMatch: geometry-informed colocalization in multi-color super-resolution microscopy. Communications Biology, 7: 1139. doi:10.1038/s42003-024-06772-8. [PubMan] : Stephan, T., Ilgen, P., & Jakobs, S. (2024). Visualizing mitochondrial dynamics at the nanoscale. Light: Science & Applications, 13: 244. doi:10.1038/s41377-024-01582-3. [PubMan] : Aich, A., Boshnakovska, A., Witte, S., Gall, T., Unthan-Fechner, K., Yousefi, R., Chowdhury, A., Dahal, D., Methi, A., Kaufmann, S., Silbern, I., Prochazka, J., Nichtova, Z., Palkova, M., Raishbrook, M., Koubkova, G., Sedlacek, R., Tröder, S., Zevnik, B., Riedel, D., Michanski, S., Möbius, W., Ströbel, P., Lüchtenborg, C., Giavalisco, P., Urlaub, H., Fischer, A., Brügger, B., Jakobs, S., & Rehling, P. (2024). Defective mitochondrial COX1 translation due to loss of COX14 function triggers ROS-induced inflammation in mouse liver. Nature Communications, 15: 6914. doi:10.1038/s41467-024-51109-y. [PubMan] : Saleem, H. N., Ignatyeva, N., Stuut, C., Jakobs, S., Habeck, M., & Ebert, A. (2024). 3D Computational Modeling of Defective Early Endosome Distribution in Human iPSC-Based Cardiomyopathy Models. Cells, 13(11), 923. doi:10.3390/cells13110923. [PubMan] : Chen, J., Stephan, T., Gaedke, F., Liu, T., Li, Y., Schauss, A., Chen, P., Wulff, V., Jakobs, S., Jüngst, C., & Chen, Z. (2024). An aldehyde-crosslinking mitochondrial probe for STED imaging in fixed cells. PNAS, 121(19): e2317703121. doi:10.1073/pnas.2317703121. [PubMan] : Schweighofer, S. V., Jans, D. C., Keller-Findeisen, J., Folmeg, A., Ilgen, P., Bates, M., & Jakobs, S. (2024). Endogenous BAX and BAK form mosaic rings of variable size and composition on apoptotic mitochondria. Cell Death & Differentiation, 31, 469-478. doi:10.1038/s41418-024-01273-x. [PubMan] : Hintze, A., Lange, F., Steyer, A. M., Anstatt, J., Möbius, W., Jakobs, S., & Wichmann, C. (2024). Developmental changes of the mitochondria in the murine anteroventral cochlear nucleus. iScience, 27(1): 108700. doi:10.1016/j.isci.2023.108700. [PubMan] : Stephan, T., Stoldt, S., Barbot, M., Carney, T. D., Lange, F., Bates, M., Bou Dib, P., Inamdar, K., Shcherbata, H. R., Meinecke, M., Riedel, D., Dennerlein, S., Rehling, P., & Jakobs, S. (2024). Drosophila MIC10b can polymerize into cristae-shaping filaments. Life science alliance, 7(4): e202302177. doi:10.26508/lsa.202302177. [PubMan] : Schweighofer, S. V., Inamdar, K., Jans, D. C., & Jakobs, S. (2024). STED super-resolution microscopy of mitochondrial translocases. In N. Wiedemann (Ed. ), Mitochondrial Translocases Part B (pp. 299-327). Amsterdam: Elsevier. doi:10.1016/bs.mie.2024.07.052. [PubMan] : Kim, D., Stoldt, S., Weber, M., Jakobs, S., Belov, V. N., & Hell, S. W. (2023). A Bright Surprise: Live-Cell Labeling with Negatively Charged Fluorescent Probes based on Disulfonated Rhodamines and HaloTag. Chemistry Methods, 3(9): e202200076. doi:10.1002/cmtd.202200076. [PubMan] : Michanski, S., Henneck, T., Mukhopadhyay, M., Steyer, A. M., Gonzalez, P., Grewe, K., Ilgen, P., Gültas, M., Fornasiero, E., Jakobs, S., Möbius, W., Vogl, C., Pangršič, T., Rizzoli, S., & Wichmann, C. (2023). Age-dependent structural reorganization of utricular ribbon synapses. Frontiers in Cell and Developmental Biology, 11: 1178992. doi:10.3389/fcell.2023.1178992. [PubMan] : Ebrahimi, V., Stephan, T., Kim, J., Carravilla, P., Eggeling, C., Jakobs, S., & Han, K. Y. (2023). Deep learning enables fast, gentle STED microscopy. Communications Biology, 6(1): 674. doi:10.1038/s42003-023-05054-z. [PubMan] : Liu, T., Stephan, T., Chen, P., Keller-Findeisen, J., Chen, J., Riedel, D., Yang, Z., Jakobs, S., & Chen, Z. (2022). Multi-color live-cell STED nanoscopy of mitochondria with a gentle inner membrane stain. Proceedings of the National Academy of Sciences of the United States of America, 119(52): e2215799119. doi:10.1073/pnas.2215799119. [PubMan] : Stejerean-Todoran, I., Zimmermann, K., Gibhardt, C. S., Vultur, A., Ickes, C., Shannan, B., Rio, Z. B. d., Wölling, A., Cappello, S., Sung, H.-M., Shumanska, M., Zhang, X., Nanadikar, M., Latif, M. U., Wittek, A., Lange, F., Waters, A., Brafford, P., Wilting, J., Urlaub, H., Katschinski, D. M., Rehling, P., Lenz, C., Jakobs, S., Ellenrieder, V., Roesch, A., Schön, M. P., Herlyn, M., Stanisz, H., & Bogeski, I. (2022). MCU controls melanoma progression through a redox-controlled phenotype switch. EMBO Reports, 23: e54746. doi:10.15252/embr.202254746. [PubMan] : Ostersehlt, L.-M., Jans, D. C., Wittek, A., Keller-Findeisen, J., Inamdar, K., Sahl, S., Hell, S. W., & Jakobs, S. (2022). DNA-PAINT MINFLUX nanoscopy. Nature Methods, 19, 1072-1075. doi:10.1038/s41592-022-01577-1. [PubMan] : Bock-Bierbaum, T., Funck, K., Wollweber, F., Lisicki, E., von der Malsburg, K., von der Malsburg, A., Laborenz, J., Noel, J. K., Hessenberger, M., Jungbluth, S., Bernert, C., Kunz, S., Riedel, D., Lilie, H., Jakobs, S., van der Laan, M., & Daumke, O. (2022). Structural insights into crista junction formation by the Mic60-Mic19 complex. Science Advances, 8(35): eabo4946. doi:10.1126/sciadv.abo494. [PubMan] : Bates, M., Keller-Findeisen, J., Przybylski, A., Hüper, A., Stephan, T., Ilgen, P., Cereceda Delgado, A. R., D’Este, E., Egner, A., Jakobs, S., Sahl, S. J., & Hell, S. W. (2022). Optimal precision and accuracy in 4Pi-STORM using dynamic spline PSF models. Nature Methods, 19(5), 603-612. doi:10.1038/s41592-022-01465-8. [PubMan] : Bates, M., Keller-Findeisen, J., Przybylski, A., Hüper, A., Stephan, T., Ilgen, P., Cereceda Delgado, A., D’Este, E., Egner, A., Jakobs, S., Sahl, S. J., & Hell, S. W. (2022). Optimal precision and accuracy in 4Pi-STORM using dynamic spline PSF models. Nature Methods, 19(5), 603-612. doi:10.1038/s41592-022-01465-8. [PubMan] : Dennerlein, S., Poerschke, S., Oeljeklaus, S., Wang, C., Richter-Dennerlein, R., Sattmann, J., Bauermeister, D., Hanitsch, E., Stoldt, S., Langer, T., Jakobs, S., Warscheid, B., & Rehling, P. (2021). Defining the interactome of the human mitochondrial ribosome identifies SMIM4 and TMEM223 as respiratory chain assembly factors. eLife, 10: e68213. doi:10.7554/eLife.68213. [PubMan] : Brüser, C., Keller-Findeisen, J., & Jakobs, S. (2021). The TFAM-to-mtDNA ratio defines inner-cellular nucleoid populations with distinct activity levels. Cell Reports, 37(8): 110000. doi:10.1016/j.celrep.2021.110000. [PubMan]