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Methods in Molecular Biology (Clifton, N.J.)|March 1, 2020
Production and Application of Nanobodies for Membrane Protein Structural BiologyJanine Denise Brunner, Stephan Schenck
Methods in Molecular Biology (Clifton, N.J.)|February 22, 2019
Preparation of Proteoliposomes with Purified TMEM16 Protein for Accurate Measures of Lipid Scramblase ActivityJanine Denise Brunner, Stephan Schenck
Current Opinion in Structural Biology|June 14, 2016
Structural basis for phospholipid scrambling in the TMEM16 familyJanine D Brunner, Stephan Schenck, Raimund Dutzler
Nature Communications|May 5, 2025
Structures of native SV2A reveal the binding mode for tetanus neurotoxin and anti-epileptic racetamsStephan Schenck, Toon Laeremans, Jan Steyaert, et al.
Nature Neuroscience|January 27, 2009
A chloride conductance in VGLUT1 underlies maximal glutamate loading into synaptic vesiclesStephan Schenck, Sonja M Wojcik, Nils Brose, et al.
Nature|November 11, 2014
X-ray structure of a calcium-activated TMEM16 lipid scramblaseJanine D Brunner, Novandy K Lim, Stephan Schenck, et al.
Elife|June 1, 2017
Structural basis for anion conduction in the calcium-activated chloride channel TMEM16ACristina Paulino, Yvonne Neldner, Andy Km Lam, et al.
Biosensors & Bioelectronics|December 4, 2024
A biosensor-based phage display selection method for automated, high-throughput Nanobody discoveryPhebe De Keyser, Valentina Kalichuk, Thomas Zögg, et al.
Cell Reports|April 12, 2018
Dual and Direction-Selective Mechanisms of Phosphate Transport by the Vesicular Glutamate TransporterJulia Preobraschenski, Cyril Cheret, Marcelo Ganzella, et al.
Elife|April 9, 2020
Structural basis for ion selectivity in TMEM175 K+ channelsJanine D Brunner, Roman P Jakob, Tobias Schulze, et al.
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