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B M Hoffman

Showing results (71-80 of 119) with videos related to

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Biochemistry|August 28, 1984
Kinetics and energetics of intramolecular electron transfer in yeast cytochrome c peroxidaseP S Ho, B M Hoffman, N Solomon, et al.
Biochemistry|November 9, 1993
EPR and ENDOR detection of compound I from Micrococcus lysodeikticus catalaseM J Benecky, J E Frew, N Scowen, et al.
Proceedings of the National Academy of Sciences of the United States of America|March 1, 1987
Yeast cytochrome c with phenylalanine or tyrosine at position 87 transfers electrons to (zinc cytochrome c peroxidase)+ at a rate ten thousand times that of the serine-87 or glycine-87 variantsN Liang, G J Pielak, A G Mauk, et al.
Biochemistry|December 15, 1987
Characterization of long-range electron transfer in mixed-metal [zinc,iron] hybrid hemoglobinsJ L McGourty, S E Peterson-Kennedy, W Y Ruo, et al.
The Journal of Organic Chemistry|June 30, 2001
Synthesis of near-IR absorbing/emitting porphyrazine derivatives with tunable solubilityS Lee, A J White, D J Williams, et al.
Proceedings of the National Academy of Sciences of the United States of America|December 1, 1979
Electron-nuclear double resonance of the hydrogen peroxide compound of cytochrome c peroxidase: identification of the free radical site with a methionyl clusterB M Hoffman, J E Roberts, T G Brown, et al.
The Journal of Biological Chemistry|May 15, 1987
EPR and electron nuclear double resonance investigation of oxidized hydrogenase II (uptake) from Clostridium pasteurianum W5. Effects of carbon monoxide bindingJ Telser, M J Benecky, M W Adams, et al.
Journal of the American Chemical Society|July 18, 2001
Solitaire and gemini metallocene porphyrazinesS L Michel, D P Goldberg, C Stern, et al.
Biochemical and Biophysical Research Communications|May 16, 1983
Oxidation state of binuclear iron site in azidosemimethemerythrinJ Martinsen, M J Irwin, P S Ho, et al.
Biochemistry|November 20, 1990
Characterization of the [4Fe-4S]+ cluster at the active site of aconitase by 57Fe, 33S, and 14N electron nuclear double resonance spectroscopyM M Werst, M C Kennedy, A L Houseman, et al.
Pageof 12

Showing results (71-80 of 119) with videos related to

Sort By:
Pageof 12
Biochemistry|August 28, 1984
Kinetics and energetics of intramolecular electron transfer in yeast cytochrome c peroxidaseP S Ho, B M Hoffman, N Solomon, et al.
Biochemistry|November 9, 1993
EPR and ENDOR detection of compound I from Micrococcus lysodeikticus catalaseM J Benecky, J E Frew, N Scowen, et al.
Proceedings of the National Academy of Sciences of the United States of America|March 1, 1987
Yeast cytochrome c with phenylalanine or tyrosine at position 87 transfers electrons to (zinc cytochrome c peroxidase)+ at a rate ten thousand times that of the serine-87 or glycine-87 variantsN Liang, G J Pielak, A G Mauk, et al.
Biochemistry|December 15, 1987
Characterization of long-range electron transfer in mixed-metal [zinc,iron] hybrid hemoglobinsJ L McGourty, S E Peterson-Kennedy, W Y Ruo, et al.
The Journal of Organic Chemistry|June 30, 2001
Synthesis of near-IR absorbing/emitting porphyrazine derivatives with tunable solubilityS Lee, A J White, D J Williams, et al.
Proceedings of the National Academy of Sciences of the United States of America|December 1, 1979
Electron-nuclear double resonance of the hydrogen peroxide compound of cytochrome c peroxidase: identification of the free radical site with a methionyl clusterB M Hoffman, J E Roberts, T G Brown, et al.
The Journal of Biological Chemistry|May 15, 1987
EPR and electron nuclear double resonance investigation of oxidized hydrogenase II (uptake) from Clostridium pasteurianum W5. Effects of carbon monoxide bindingJ Telser, M J Benecky, M W Adams, et al.
Journal of the American Chemical Society|July 18, 2001
Solitaire and gemini metallocene porphyrazinesS L Michel, D P Goldberg, C Stern, et al.
Biochemical and Biophysical Research Communications|May 16, 1983
Oxidation state of binuclear iron site in azidosemimethemerythrinJ Martinsen, M J Irwin, P S Ho, et al.
Biochemistry|November 20, 1990
Characterization of the [4Fe-4S]+ cluster at the active site of aconitase by 57Fe, 33S, and 14N electron nuclear double resonance spectroscopyM M Werst, M C Kennedy, A L Houseman, et al.
Pageof 12