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Molecules (Basel, Switzerland)|December 16, 2020
An Alternative HIV-1 Non-Nucleoside Reverse Transcriptase Inhibition Mechanism: Targeting the p51 SubunitKwok-Fong Chan, Chinh Tran-To Su, Alexander Krah, et al.Proteomics|September 21, 2004
Assessment of protein spot components applying correspondence analysis for peptide mass fingerprint dataAlexander Krah, Ralf Wessel, Klaus-Peter PleissnerPlos One|May 26, 2017
The structural basis of a high affinity ATP binding ε subunit from a bacterial ATP synthaseAlexander Krah, Yasuyuki Kato-Yamada, Shoji TakadaBiophysical Journal|October 7, 2010
On the question of hydronium binding to ATP-synthase membrane rotorsVanessa Leone, Alexander Krah, José D Faraldo-GómezProtein and Peptide Letters|August 3, 2010
Antimicrobial and cell-penetrating peptides: structure, assembly and mechanisms of membrane lysis via atomistic and coarse-grained molecular dynamics simulationsPeter J Bond, Syma KhalidMethods in Molecular Biology (Clifton, N.J.)|October 5, 2012
Multiscale molecular dynamics simulations of membrane proteinsSyma Khalid, Peter J BondOpen Biology|May 18, 2018
Insights into the regulatory function of the ɛ subunit from bacterial F-type ATP synthases: a comparison of structural, biochemical and biophysical dataAlexander Krah, Mariel Zarco-Zavala, Duncan G G McMillanThe Journal of Physical Chemistry. B|October 8, 2016
Predicted Structures of the Proton-Bound Membrane-Embedded Rotor Rings of the Saccharomyces cerevisiae and Escherichia coli ATP SynthasesWenchang Zhou, Vanessa Leone, Alexander Krah, et al.Journal of Molecular Biology|November 4, 2009
On the structure of the proton-binding site in the F(o) rotor of chloroplast ATP synthasesAlexander Krah, Denys Pogoryelov, Thomas Meier, et al.Pageof 20