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International Journal of Molecular Sciences|May 19, 2018
Why Two? On the Role of (A-)Symmetry in Negative Supercoiling of DNA by GyraseDagmar KlostermeierMethods in Enzymology|August 14, 2022
Analysis of the conformational space and dynamics of RNA helicases by single-molecule FRET in solution and on surfacesDagmar KlostermeierBiochemical Society Transactions|March 25, 2011
Single-molecule FRET reveals nucleotide-driven conformational changes in molecular machines and their link to RNA unwinding and DNA supercoilingDagmar KlostermeierMolecules (Basel, Switzerland)|March 6, 2021
Towards Conformation-Sensitive Inhibition of Gyrase: Implications of Mechanistic Insight for the Identification and Improvement of InhibitorsDagmar KlostermeierRNA Biology|January 29, 2013
Lifelong companions: RNA helicases and their roles in RNA metabolismDagmar KlostermeierBiopolymers|June 15, 2013
Rearranging RNA structures at 75°C? Toward the molecular mechanism and physiological function of the Thermus thermophilus DEAD-box helicase HeraDagmar KlostermeierNucleic Acids Research|August 16, 2014
DEAD-box RNA helicase domains exhibit a continuum between complete functional independence and high thermodynamic coupling in nucleotide and RNA duplex recognitionBrighton Samatanga, Dagmar KlostermeierJournal of Molecular Biology|February 27, 2007
Dissection of the nucleotide cycle of B. subtilis DNA gyrase and its modulation by DNAThomas Göttler, Dagmar KlostermeierProceedings of the National Academy of Sciences of the United States of America|August 6, 2011
DNA-induced narrowing of the gyrase N-gate coordinates T-segment capture and strand passageAirat Gubaev, Dagmar KlostermeierNucleic Acids Research|July 12, 2014
Reverse gyrase--recent advances and current mechanistic understanding of positive DNA supercoilingPavel Lulchev, Dagmar KlostermeierPageof 8