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D A Agard

Showing results (21-30 of 110) with videos related to

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Journal of Molecular Biology|December 8, 1995
Kinetic and structural characterization of mutations of glycine 216 in alpha-lytic protease: a new target for engineering substrate specificityJ E Mace, D A Agard
The Journal of Cell Biology|December 1, 1990
Temporal and spatial coordination of chromosome movement, spindle formation, and nuclear envelope breakdown during prometaphase in Drosophila melanogaster embryosY Hiraoka, D A Agard, J W Sedat
Nature|March 19, 1992
A protein-folding reaction under kinetic controlD Baker, J L Sohl, D A Agard
Current Opinion in Cell Biology|December 1, 1993
The role of pro regions in protein foldingD Baker, A K Shiau, D A Agard
Journal of Molecular Biology|July 20, 1991
Computational method for the design of enzymes with altered substrate specificityC Wilson, J E Mace, D A Agard
Nature|May 18, 1989
Structural plasticity broadens the specificity of an engineered proteaseR Bone, J L Silen, D A Agard
Cell Motility and the Cytoskeleton|January 1, 1988
Three-dimensional light microscopy of diploid Drosophila chromosomesD A Agard, Y Hiraoka, J W Sedat
Acta Crystallographica. Section D, Biological Crystallography|January 1, 1993
Uniqueness and the ab initio phase problem in macromolecular crystallographyD Baker, A E Krukowski, D A Agard
Proteins|April 1, 1992
Protease pro region required for folding is a potent inhibitor of the mature enzymeD Baker, J L Silen, D A Agard
Journal of Molecular Biology|February 20, 1993
Modeling side-chain conformation for homologous proteins using an energy-based rotamer searchC Wilson, L M Gregoret, D A Agard
Pageof 11

Showing results (21-30 of 110) with videos related to

Sort By:
Pageof 11
Journal of Molecular Biology|December 8, 1995
Kinetic and structural characterization of mutations of glycine 216 in alpha-lytic protease: a new target for engineering substrate specificityJ E Mace, D A Agard
The Journal of Cell Biology|December 1, 1990
Temporal and spatial coordination of chromosome movement, spindle formation, and nuclear envelope breakdown during prometaphase in Drosophila melanogaster embryosY Hiraoka, D A Agard, J W Sedat
Nature|March 19, 1992
A protein-folding reaction under kinetic controlD Baker, J L Sohl, D A Agard
Current Opinion in Cell Biology|December 1, 1993
The role of pro regions in protein foldingD Baker, A K Shiau, D A Agard
Journal of Molecular Biology|July 20, 1991
Computational method for the design of enzymes with altered substrate specificityC Wilson, J E Mace, D A Agard
Nature|May 18, 1989
Structural plasticity broadens the specificity of an engineered proteaseR Bone, J L Silen, D A Agard
Cell Motility and the Cytoskeleton|January 1, 1988
Three-dimensional light microscopy of diploid Drosophila chromosomesD A Agard, Y Hiraoka, J W Sedat
Acta Crystallographica. Section D, Biological Crystallography|January 1, 1993
Uniqueness and the ab initio phase problem in macromolecular crystallographyD Baker, A E Krukowski, D A Agard
Proteins|April 1, 1992
Protease pro region required for folding is a potent inhibitor of the mature enzymeD Baker, J L Silen, D A Agard
Journal of Molecular Biology|February 20, 1993
Modeling side-chain conformation for homologous proteins using an energy-based rotamer searchC Wilson, L M Gregoret, D A Agard
Pageof 11