Showing results (71-80 of 117) with videos related to
Sort By:
Pageof 12
Proceedings of the National Academy of Sciences of the United States of America|August 16, 2000
Directed evolution of a (beta alpha)8-barrel enzyme to catalyze related reactions in two different metabolic pathwaysC Jürgens, A Strom, D Wegener, et al.Nature|June 23, 1994
Structure of the pleckstrin homology domain from beta-spectrinM J Macias, A Musacchio, H Ponstingl, et al.Journal of Molecular Biology|January 22, 2002
Structural and functional studies of titin's fn3 modules reveal conserved surface patterns and binding to myosin S1--a possible role in the Frank-Starling mechanism of the heartC Muhle-Goll, M Habeck, O Cazorla, et al.The EMBO Journal|February 1, 1987
The conformations of hirudin in solution: a study using nuclear magnetic resonance, distance geometry and restrained molecular dynamicsG M Clore, D K Sukumaran, M Nilges, et al.The EMBO Journal|June 1, 1987
The polypeptide fold of the globular domain of histone H5 in solution. A study using nuclear magnetic resonance, distance geometry and restrained molecular dynamicsG M Clore, A M Gronenborn, M Nilges, et al.Science (New York, N.Y.)|July 16, 1993
Assessing the quality of solution nuclear magnetic resonance structures by complete cross-validationA T Brünger, G M Clore, A M Gronenborn, et al.FEBS Letters|March 23, 1987
A comparison of the restrained molecular dynamics and distance geometry methods for determining three-dimensional structures of proteins on the basis of interproton distancesG M Clore, M Nilges, A T Brünger, et al.Journal of Biomolecular NMR|May 24, 2001
NMR studies of the sporulation protein SpoIIAA: implications for the regulation of the transcription factor sigmaF in Bacillus subtilisH Kovacs, D Comfort, M Lord, et al.Biochemistry|March 8, 1988
Refinement of the solution structure of the ribonucleotide 5'r(GCAUGC)2: combined use of nuclear magnetic resonance and restrained molecular dynamicsC S Happ, E Happ, M Nilges, et al.Biochemistry|June 16, 1987
Refinement of the solution structure of the DNA decamer 5'd(CTGGATCCAG)2: combined use of nuclear magnetic resonance and restrained molecular dynamicsM Nilges, G M Clore, A M Gronenborn, et al.Pageof 12