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Annual Review of Biophysics|February 12, 2024
NMR and Single-Molecule FRET Insights into Fast Protein Motions and Their Relation to FunctionPaul Schanda, Gilad HaranJournal of Biomolecular NMR|October 10, 2013
Amplitudes and time scales of picosecond-to-microsecond motion in proteins studied by solid-state NMR: a critical evaluation of experimental approaches and application to crystalline ubiquitinJens D Haller, Paul SchandaMagnetic Resonance in Chemistry : MRC|July 11, 2006
HET-SOFAST NMR for fast detection of structural compactness and heterogeneity along polypeptide chainsPaul Schanda, Vincent Forge, Bernhard BrutscherMethods in Molecular Biology (Clifton, N.J.)|July 30, 2017
Methyl-Specific Isotope Labeling Strategies for NMR Studies of Membrane ProteinsVilius Kurauskas, Paul Schanda, Remy SounierProceedings of the National Academy of Sciences of the United States of America|June 27, 2007
Protein folding and unfolding studied at atomic resolution by fast two-dimensional NMR spectroscopyPaul Schanda, Vincent Forge, Bernhard BrutscherMethods in Enzymology|November 2, 2024
Generation of TIM chaperone substrate complexesUndina Guillerm, Iva Sučec, Paul SchandaFrontiers in Molecular Biosciences|November 11, 2021
How do Chaperones Bind (Partly) Unfolded Client Proteins?Iva Sučec, Beate Bersch, Paul SchandaJournal of Biomolecular NMR|December 13, 2005
SOFAST-HMQC experiments for recording two-dimensional heteronuclear correlation spectra of proteins within a few secondsPaul Schanda, Eriks Kupce, Bernhard BrutscherJournal of Magnetic Resonance (San Diego, Calif. : 1997)|December 15, 2007
Sensitivity-enhanced IPAP-SOFAST-HMQC for fast-pulsing 2D NMR with reduced radiofrequency loadThomas Kern, Paul Schanda, Bernhard BrutscherJournal of Magnetic Resonance (San Diego, Calif. : 1997)|May 1, 2007
A set of BEST triple-resonance experiments for time-optimized protein resonance assignmentEwen Lescop, Paul Schanda, Bernhard BrutscherPageof 39