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Communications Chemistry|February 21, 2025
Catalytic dwell oscillations complete the F1-ATPase mechanismZain A Bukhari, Wayne D FraschFrontiers in Microbiology|September 9, 2022
F1FO ATP synthase molecular motor mechanismsWayne D Frasch, Zain A Bukhari, Seiga YanagisawaFrontiers in Molecular Biosciences|April 3, 2024
Eukaryotic yeast V1-ATPase rotary mechanism insights revealed by high-resolution single-molecule studiesSeiga Yanagisawa, Zain A Bukhari, Karlett J Parra, et al.The Journal of Biological Chemistry|August 27, 2017
Protonation-dependent stepped rotation of the F-type ATP synthase c-ring observed by single-molecule measurementsSeiga Yanagisawa, Wayne D FraschElife|December 31, 2021
pH-dependent 11° F1FO ATP synthase sub-steps reveal insight into the FO torque generating mechanismSeiga Yanagisawa, Wayne D FraschNatural Computing|June 22, 2011
Padlock probe-mediated qRT-PCR for DNA computing answer determinationFusheng Xiong, Wayne D FraschNucleic Acids Research|September 17, 2021
ΩqPCR measures telomere length from single-cells in base pair unitsFusheng Xiong, Wayne D FraschBiochemistry|July 6, 2005
Interactions of gamma T273 and gamma E275 with the beta subunit PSAV segment that links the gamma subunit to the catalytic site Walker homology B aspartate are important to the function of Escherichia coli F1F0 ATP synthaseKathryn W Boltz, Wayne D FraschBiochemistry|September 13, 2006
Hydrogen bonds between the alpha and beta subunits of the F1-ATPase allow communication between the catalytic site and the interface of the beta catch loop and the gamma subunitKathryn W Boltz, Wayne D FraschThe Journal of Biological Chemistry|October 9, 2003
Interactions among gamma R268, gamma Q269, and the beta subunit catch loop of Escherichia coli F1-ATPase are important for catalytic activityMatthew D Greene, Wayne D FraschPageof 3