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Proceedings of the National Academy of Sciences of the United States of America|May 16, 2002
CLOUDS, a protocol for deriving a molecular proton density via NMRAlexander Grishaev, Miguel LlinásRNA (New York, N.Y.)|September 12, 2020
Chemical shifts-based similarity restraints improve accuracy of RNA structures determined via NMRChad Lawrence, Alexander GrishaevJournal of the American Chemical Society|August 3, 2006
Pseudo-CSA restraints for NMR refinement of nucleic acid structureAlexander Grishaev, Jinfa Ying, Ad BaxMagnetic Resonance in Chemistry : MRC|February 16, 2006
Carbon-13 chemical shift anisotropy in DNA bases from field dependence of solution NMR relaxation ratesJinfa Ying, Alexander Grishaev, Ad BaxRNA (New York, N.Y.)|April 28, 2022
Conformational heterogeneity of UCAAUC RNA oligonucleotide from molecular dynamics simulations, SAXS, and NMR experimentsChristina Bergonzo, Alexander Grishaev, Sandro BottaroJournal of the American Chemical Society|April 12, 2012
Imino hydrogen positions in nucleic acids from density functional theory validated by NMR residual dipolar couplingsAlexander Grishaev, Jinfa Ying, Ad BaxJournal of the American Chemical Society|May 19, 2005
Measurement of ribose carbon chemical shift tensors for A-form RNA by liquid crystal NMR spectroscopyDavid L Bryce, Alexander Grishaev, Ad BaxBiochemistry|January 17, 2012
Monomeric α-synuclein binds Congo Red micelles in a disordered mannerAlexander S Maltsev, Alexander Grishaev, Ad BaxBiochemistry|February 14, 2008
The periplasmic domain of TolR from Haemophilus influenzae forms a dimer with a large hydrophobic groove: NMR solution structure and comparison to SAXS dataLisa M Parsons, Alexander Grishaev, Ad BaxJournal of the American Chemical Society|October 21, 2010
Improved fitting of solution X-ray scattering data to macromolecular structures and structural ensembles by explicit water modelingAlexander Grishaev, Liang Guo, Thomas Irving, et al.Pageof 7