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G T Robillard

Showing results (51-60 of 103) with videos related to

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Biochemistry|July 26, 1988
Bacterial phosphoenolpyruvate-dependent phosphotransferase system: mannitol-specific EII contains two phosphoryl binding sites per monomer and one high-affinity mannitol binding site per dimerH H Pas, R H ten Hoeve-Duurkens, G T Robillard
European Journal of Biochemistry|June 18, 1985
The phosphoenolpyruvate-dependent fructose-specific phosphotransferase system in Rhodopseudomonas sphaeroides. Mechanism for transfer of the phosphoryl group from phosphoenolpyruvate to fructoseJ S Lolkema, R H ten Hoeve-Duurkens, G T Robillard
European Journal of Biochemistry|February 3, 1986
The phosphoenolpyruvate-dependent fructose-specific phosphotransferase system in Rhodopseudomonas sphaeroides. EIIFru possesses a Zn2+-binding site and a dithiol/disulfide redox centreJ S Lolkema, R H ten Hoeve-Duurkens, G T Robillard
Molecular and Cellular Biochemistry|July 1, 1988
The redox state and the phosphorylation state of the mannitol-specific carrier of the E. coli phosphoenolpyruvate-dependent phosphotransferase systemG T Robillard, H H Pas, D Gage, et al.
European Journal of Biochemistry|November 17, 1986
The phosphoenolpyruvate-dependent fructose-specific phosphotransferase system in Rhodopseudomonas sphaeroides. Distribution of EIIFru over the membranes of phototrophically grown Rps. sphaeroidesJ S Lolkema, R H ten Hoeve-Duurkens, G T Robillard
Biochemistry|November 29, 1977
A nuclear magnetic resonance study of secondary and tertiary structure in yeast tRNAPheG T Robillard, C E Tarr, F Vosman, et al.
Journal of Molecular Biology|February 10, 1995
High-resolution structure of the phosphorylated form of the histidine-containing phosphocarrier protein HPr from Escherichia coli determined by restrained molecular dynamics from NMR-NOE dataN A van Nuland, R Boelens, R M Scheek, et al.
Biochemistry|July 14, 1992
Potential of 13C and 15N labeling for studying protein-protein interactions using Fourier transform infrared spectroscopyP I Haris, G T Robillard, A A van Dijk, et al.
Biochemical Pharmacology|October 15, 1988
Evidence for the existence of at least two different binding sites for 5HT-reuptake inhibitors within the 5HT-reuptake system from human plateletsE A Biessen, J A Norder, A S Horn, et al.
Biochemistry|February 19, 1991
Phosphoenolpyruvate-dependent mannitol phosphotransferase system of Escherichia coli: overexpression, purification, and characterization of the enzymatically active C-terminal domain of enzyme IImtl equivalent to enzyme IIImtlR P van Weeghel, G H Meyer, W Keck, et al.
Pageof 11

Showing results (51-60 of 103) with videos related to

Sort By:
Pageof 11
Biochemistry|July 26, 1988
Bacterial phosphoenolpyruvate-dependent phosphotransferase system: mannitol-specific EII contains two phosphoryl binding sites per monomer and one high-affinity mannitol binding site per dimerH H Pas, R H ten Hoeve-Duurkens, G T Robillard
European Journal of Biochemistry|June 18, 1985
The phosphoenolpyruvate-dependent fructose-specific phosphotransferase system in Rhodopseudomonas sphaeroides. Mechanism for transfer of the phosphoryl group from phosphoenolpyruvate to fructoseJ S Lolkema, R H ten Hoeve-Duurkens, G T Robillard
European Journal of Biochemistry|February 3, 1986
The phosphoenolpyruvate-dependent fructose-specific phosphotransferase system in Rhodopseudomonas sphaeroides. EIIFru possesses a Zn2+-binding site and a dithiol/disulfide redox centreJ S Lolkema, R H ten Hoeve-Duurkens, G T Robillard
Molecular and Cellular Biochemistry|July 1, 1988
The redox state and the phosphorylation state of the mannitol-specific carrier of the E. coli phosphoenolpyruvate-dependent phosphotransferase systemG T Robillard, H H Pas, D Gage, et al.
European Journal of Biochemistry|November 17, 1986
The phosphoenolpyruvate-dependent fructose-specific phosphotransferase system in Rhodopseudomonas sphaeroides. Distribution of EIIFru over the membranes of phototrophically grown Rps. sphaeroidesJ S Lolkema, R H ten Hoeve-Duurkens, G T Robillard
Biochemistry|November 29, 1977
A nuclear magnetic resonance study of secondary and tertiary structure in yeast tRNAPheG T Robillard, C E Tarr, F Vosman, et al.
Journal of Molecular Biology|February 10, 1995
High-resolution structure of the phosphorylated form of the histidine-containing phosphocarrier protein HPr from Escherichia coli determined by restrained molecular dynamics from NMR-NOE dataN A van Nuland, R Boelens, R M Scheek, et al.
Biochemistry|July 14, 1992
Potential of 13C and 15N labeling for studying protein-protein interactions using Fourier transform infrared spectroscopyP I Haris, G T Robillard, A A van Dijk, et al.
Biochemical Pharmacology|October 15, 1988
Evidence for the existence of at least two different binding sites for 5HT-reuptake inhibitors within the 5HT-reuptake system from human plateletsE A Biessen, J A Norder, A S Horn, et al.
Biochemistry|February 19, 1991
Phosphoenolpyruvate-dependent mannitol phosphotransferase system of Escherichia coli: overexpression, purification, and characterization of the enzymatically active C-terminal domain of enzyme IImtl equivalent to enzyme IIImtlR P van Weeghel, G H Meyer, W Keck, et al.
Pageof 11