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D E KOSHLAND

Showing results (121-130 of 191) with videos related to

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Biochemistry|November 26, 1996
Producing positive, negative, and no cooperativity by mutations at a single residue located at the subunit interface in the aspartate receptor of Salmonella typhimuriumA F Kolodziej, T Tan, D E Koshland
Biochemistry|October 21, 1998
Conformational changes in the cytoplasmic domain of the Escherichia coli aspartate receptor upon adaptive methylationH Le Moual, T Quang, D E Koshland
Analytical Biochemistry|August 15, 1984
A diffusion assay for detection and quantitation of methyl-esterified proteins on polyacrylamide gelsD Chelsky, N I Gutterson, D E Koshland
The Journal of Biological Chemistry|April 25, 1990
The role of methylation in chemotaxis. An explanation of outstanding anomaliesR M Weis, S Chasalow, D E Koshland
The Journal of Biological Chemistry|November 25, 1984
The branch point effect. Ultrasensitivity and subsensitivity to metabolic controlD C LaPorte, K Walsh, D E Koshland
Biochemistry|November 23, 2000
Redesigning the substrate specificity of an enzyme: isocitrate dehydrogenaseS A Doyle, S Y Fung, D E Koshland
The Journal of Biological Chemistry|September 5, 1985
Compensatory phosphorylation of isocitrate dehydrogenase. A mechanism for adaptation to the intracellular environmentD C LaPorte, P E Thorsness, D E Koshland
Cold Spring Harbor Symposia on Quantitative Biology|January 1, 1988
Roles of methylation and phosphorylation in the bacterial sensing systemD E Koshland, D A Sanders, R M Weis
The Journal of Biological Chemistry|August 15, 1986
Kinetics of receptor modification. The multiply methylated aspartate receptors involved in bacterial chemotaxisT C Terwilliger, J Y Wang, D E Koshland
Genes & Development|December 11, 1991
Molecular cloning of a member of a new class of low-molecular-weight GTP-binding proteinsB H Morimoto, C C Chuang, D E Koshland
Pageof 20

Showing results (121-130 of 191) with videos related to

Sort By:
Pageof 20
Biochemistry|November 26, 1996
Producing positive, negative, and no cooperativity by mutations at a single residue located at the subunit interface in the aspartate receptor of Salmonella typhimuriumA F Kolodziej, T Tan, D E Koshland
Biochemistry|October 21, 1998
Conformational changes in the cytoplasmic domain of the Escherichia coli aspartate receptor upon adaptive methylationH Le Moual, T Quang, D E Koshland
Analytical Biochemistry|August 15, 1984
A diffusion assay for detection and quantitation of methyl-esterified proteins on polyacrylamide gelsD Chelsky, N I Gutterson, D E Koshland
The Journal of Biological Chemistry|April 25, 1990
The role of methylation in chemotaxis. An explanation of outstanding anomaliesR M Weis, S Chasalow, D E Koshland
The Journal of Biological Chemistry|November 25, 1984
The branch point effect. Ultrasensitivity and subsensitivity to metabolic controlD C LaPorte, K Walsh, D E Koshland
Biochemistry|November 23, 2000
Redesigning the substrate specificity of an enzyme: isocitrate dehydrogenaseS A Doyle, S Y Fung, D E Koshland
The Journal of Biological Chemistry|September 5, 1985
Compensatory phosphorylation of isocitrate dehydrogenase. A mechanism for adaptation to the intracellular environmentD C LaPorte, P E Thorsness, D E Koshland
Cold Spring Harbor Symposia on Quantitative Biology|January 1, 1988
Roles of methylation and phosphorylation in the bacterial sensing systemD E Koshland, D A Sanders, R M Weis
The Journal of Biological Chemistry|August 15, 1986
Kinetics of receptor modification. The multiply methylated aspartate receptors involved in bacterial chemotaxisT C Terwilliger, J Y Wang, D E Koshland
Genes & Development|December 11, 1991
Molecular cloning of a member of a new class of low-molecular-weight GTP-binding proteinsB H Morimoto, C C Chuang, D E Koshland
Pageof 20