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Biochemistry|April 22, 1986
19F nuclear magnetic resonance studies of selectively fluorinated derivatives of G- and F-actinM Brauer, B D SykesBiophysical Journal|October 1, 1980
Strategies for the uses of lanthanide NMR shift probes in the determination of protein structure in solutio. Application to the EF calcium binding site of carp parvalbuminL Lee, B D SykesBiopolymers|January 1, 1997
Growth factor receptors: structure, mechanism, and drug discoveryC McInnes, B D SykesCurrent Opinion in Structural Biology|January 12, 2002
Thermodynamic insights into proteins from NMR spin relaxation studiesL Spyracopoulos, B D SykesBiochemistry|March 31, 1981
Phosphorus-31 nuclear magnetic resonance studies of the adenosine 5'-triphosphate-calcium-G-actin complexM Brauer, B D SykesBiochemistry|July 7, 1981
Analysis of cooperativity observed in pH titrations of proton nuclear magnetic resonances of histidine residues of rabbit cardiac tropomyosinB F Edwards, B D SykesBiochemistry|October 27, 1981
Energetics and kinetics of interconversion of two myosin subfragment-1.adenosine 5'-diphosphate complexes as viewed by phosphorus-31 nuclear magnetic resonanceJ W Shriver, B D SykesJournal of Molecular Biology|November 20, 1991
Interaction of troponin I and troponin C. Use of the two-dimensional nuclear magnetic resonance transferred nuclear Overhauser effect to determine the structure of the inhibitory troponin I peptide when bound to skeletal troponin CA P Campbell, B D SykesCanadian Journal of Biochemistry|June 1, 1977
Rapid anisotropic motion of the Ca2+-transport ATPase of the rabbit skeletal muscle sarcoplasmic reticulumB A Manuck, B D SykesPageof 95