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Biochimica Et Biophysica Acta|April 27, 2010
Structural and energetic basis for H+ versus Na+ binding selectivity in ATP synthase Fo rotorsAlexander Krah, Denys Pogoryelov, Julian D Langer, et al.Journal of Chemical Theory and Computation|February 15, 2024
Coarse-Grained Model of Glycosaminoglycans for Biomolecular SimulationsAishwary T Shivgan, Jan K Marzinek, Alexander Krah, et al.Current Research in Structural Biology|March 29, 2022
Bridging the N-terminal and middle domains in FliG of the flagellar rotorDagnija Tupiņa, Alexander Krah, Jan K Marzinek, et al.Frontiers in Molecular Biosciences|March 16, 2023
ATP binding by an F<sub>1</sub>F<sub>o</sub> ATP synthase ε subunit is pH dependent, suggesting a diversity of ε subunit functional regulation in bacteriaAlexander Krah, Timothy Vogelaar, Sam I de Jong, et al.Progress in Biophysics and Molecular Biology|July 5, 2015
Linking structural features from mitochondrial and bacterial F-type ATP synthases to their distinct mechanisms of ATPase inhibitionAlexander KrahBiochimica Et Biophysica Acta. General Subjects|October 18, 2020
A second shell residue modulates a conserved ATP-binding site with radically different affinities for ATPAlexander Krah, Bas van der Hoeven, Luuk Mestrom, et al.Biochimica Et Biophysica Acta|January 19, 2016
On the ATP binding site of the ε subunit from bacterial F-type ATP synthasesAlexander Krah, Shoji TakadaBiochimica Et Biophysica Acta|June 2, 2015
On the Mg(2+) binding site of the ε subunit from bacterial F-type ATP synthasesAlexander Krah, Shoji TakadaJournal of Chemical Information and Modeling|July 25, 2020
Extending the Martini Coarse-Grained Force Field to <i>N</i>-GlycansAishwary T Shivgan, Jan K Marzinek, Roland G Huber, et al.Physical Biology|February 8, 2017
Insights into the ion-coupling mechanism in the MATE transporter NorM-VCAlexander Krah, Ulrich ZachariaePageof 20