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Gruppiert nach: Dokumententyp | Veröffentlichungsdatum
Anzahl der Publikationen: 12

Zeitschriftenartikel

Hermann, Christian; Treder, Aaron; Naher, Marius; Geiseler, Roman; Gudermann, Thomas; Mederos Y Schnitzler, Michael und Storch, Ursula (2022): The normalized slope conductance as a tool for quantitative analysis of current-voltage relations. In: Biophysical Journal, Bd. 121, Nr. 8: S. 1435-1448

Friedrich, Lukas; Byrne, Ryan; Treder, Aaron; Singh, Inderjeet; Bauer, Christoph; Gudermann, Thomas; Schnitzler, Michael; Storch, Ursula und Schneider, Gisbert (2020): Shape Similarity by Fractal Dimensionality: An Application in the de novo Design of (-)-Englerin A Mimetics. In: Chemmedchem, Bd. 15, Nr. 7: S. 566-570

Erdogmus, Serap; Storch, Ursula; Danner, Laura; Becker, Jasmin; Winter, Michaela; Ziegler, Nicole; Wirth, Angela; Offermanns, Stefan; Hoffmann, Carsten; Gudermann, Thomas und Mederos y Schnitzler, Michael (2019): Helix 8 is the essential structural motif of mechanosensitive GPCRs. In: Nature Communications, Bd. 10, 5784 [PDF, 1MB]

Fiedler, Susanne; Storch, Ursula; Erdogmus, Serap; Gudermann, Thomas; Mederos y Schnitzler, Michael und Dietrich, Alexander (2019): Small Fluorescein Arsenical Hairpin-Based Forster Resonance Energy Transfer Analysis Reveals Changes in Amino- to Carboxyl-Terminal Interactions upon OAG Activation of Classical Transient Receptor Potential 6. In: Molecular Pharmacology, Bd. 96, Nr. 1: S. 90-98

Mederos y Schnitzler, Michael; Gudermann, Thomas und Storch, Ursula (2018): Emerging Roles of Diacylglycerol-Sensitive TRPC4/5 Channels. In: Cells, Bd. 7, Nr. 11, 218 [PDF, 591kB]

Leinders-Zufall, Trese; Storch, Ursula; Bleymehl, Katherin; Mederos y Schnitzler, Michael; Frank, James A.; Konrad, David B.; Trauner, Dirk; Gudermann, Thomas und Zufall, Frank (2018): PhoDAGs Enable Optical Control of Diacylglycerol-Sensitive Transient Receptor Potential Channels. In: Cell Chemical Biology, Bd. 25, Nr. 2: S. 215-223

Storch, Ursula; Straub, Julie; Erdogmus, Serap; Gudermann, Thomas und Mederos y Schnitzler, Michael (2017): Dynamic monitoring of Gi/o-protein-mediated decreases of intracellular cAMP by FRET-based Epac sensors (vol 469, pg 725, 2017). In: Pflugers Archiv-European Journal of Physiology, Bd. 469, Nr. 9: S. 1231-1232

Storch, Ursula; Straub, Julie; Erdogmus, Serap; Gudermann, Thomas und Mederos y Schnitzler, Michael (2017): Dynamic monitoring of G(i/o)-protein-mediated decreases of intracellular cAMP by FRET-based Epac sensors. In: Pflugers Archiv-European Journal of Physiology, Bd. 469, Nr. 43256: S. 725-737

Hofmann, Katharina; Fiedler, Susanne; Vierkotten, Sarah; Weber, Jonas; Klee, Stephan; Jia, Jie; Zwickenpflug, Wolfgang; Flockerzi, Veit; Storch, Ursula; Yildirim, Ali Önder; Gudermann, Thomas; Königshoff, Melanie und Dietrich, Alexander (2017): Classical transient receptor potential 6 (TRPC6) channels support myofibroblast differentiation and development of experimental pulmonary fibrosis. In: Biochimica et Biophysica Acta-Molecular Basis of Disease, Bd. 1863, Nr. 2: S. 560-568

Storch, Ursula; Forst, Anna-Lena; Pardatscher, Franziska; Erdogmus, Serap; Philipp, Maximilian; Gregoritza, Manuel; Mederos y Schnitzlera, Michael und Gudermann, Thomas (2017): Dynamic NHERF interaction with TRPC4/5 proteins is required for channel gating by diacylglycerol. In: Proceedings of the National Academy of Sciences of the United States of America, Bd. 114, Nr. 1, E37-E46

Forst, Anna-Lena; Olteanu, Vlad Sorin; Mollet, Géraldine; Wlodkowski, Tanja; Schaefer, Franz; Dietrich, Alexander; Reiser, Jochen; Gudermann, Thomas; Mederos y Schnitzler, Michael und Storch, Ursula (2016): Podocyte Purinergic P2X(4) Channels Are Mechanotransducers That Mediate Cytoskeletal Disorganization. In: Journal of the American Society of Nephrology, Bd. 27, Nr. 3: S. 848-862

Mederos y Schnitzler, Michael; Storch, Ursula und Gudermann, Thomas (2016): Mechanosensitive G(q/11) Protein-Coupled Receptors Mediate Myogenic Vasoconstriction. In: Microcirculation, Bd. 23, Nr. 8: S. 621-625

Diese Liste wurde am Sat May 25 22:44:21 2024 CEST erstellt.