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Science (New York, N.Y.)
|
May 24, 1996
Mammalian cytochrome c oxidase, a molecular monster subdued
S Ferguson-Miller
Science (New York, N.Y.)
|
August 25, 1995
Structure of cytochrome c oxidase, energy generator of aerobic life
R Gennis, S Ferguson-Miller
Biochemistry
|
March 21, 1989
Independent control of respiration in cytochrome c oxidase vesicles by pH and electrical gradients
L Gregory, S Ferguson-Miller
Annals of the New York Academy of Sciences
|
January 1, 1988
Control of cytochrome c oxidase activity by pH and the electrical potential gradient occurs at separate electron transfer steps and does not require subunit III
L Gregory, S Ferguson-Miller
Biochemistry
|
August 23, 1988
Effect of subunit III removal on control of cytochrome c oxidase activity by pH
L C Gregory, S Ferguson-Miller
Biochimica Et Biophysica Acta
|
August 7, 1998
Proton uptake and release in cytochrome c oxidase: separate pathways in time and space?
D A Mills, S Ferguson-Miller
Biochemistry
|
June 16, 1987
Yeast and horse liver alcohol dehydrogenases: potential problems in target size analysis and evidence for a monomer active unit
M D Suarez, S Ferguson-Miller
Current Biology : CB
|
January 1, 1996
Protein structure: proton-pumping oxidases
R B Gennis, S Ferguson-Miller
Biochemistry
|
June 21, 1983
Lipid and subunit III depleted cytochrome c oxidase purified by horse cytochrome c affinity chromatography in lauryl maltoside
D A Thompson, S Ferguson-Miller
The Journal of Biological Chemistry
|
July 4, 2001
Detergents as tools in membrane biochemistry
R M Garavito, S Ferguson-Miller
Page
of 7
Search research articles
Search
Showing results (1-10 of 65) with videos related to
Sort By:
Page
of 7
Science (New York, N.Y.)
|
May 24, 1996
Mammalian cytochrome c oxidase, a molecular monster subdued
S Ferguson-Miller
Science (New York, N.Y.)
|
August 25, 1995
Structure of cytochrome c oxidase, energy generator of aerobic life
R Gennis, S Ferguson-Miller
Biochemistry
|
March 21, 1989
Independent control of respiration in cytochrome c oxidase vesicles by pH and electrical gradients
L Gregory, S Ferguson-Miller
Annals of the New York Academy of Sciences
|
January 1, 1988
Control of cytochrome c oxidase activity by pH and the electrical potential gradient occurs at separate electron transfer steps and does not require subunit III
L Gregory, S Ferguson-Miller
Biochemistry
|
August 23, 1988
Effect of subunit III removal on control of cytochrome c oxidase activity by pH
L C Gregory, S Ferguson-Miller
Biochimica Et Biophysica Acta
|
August 7, 1998
Proton uptake and release in cytochrome c oxidase: separate pathways in time and space?
D A Mills, S Ferguson-Miller
Biochemistry
|
June 16, 1987
Yeast and horse liver alcohol dehydrogenases: potential problems in target size analysis and evidence for a monomer active unit
M D Suarez, S Ferguson-Miller
Current Biology : CB
|
January 1, 1996
Protein structure: proton-pumping oxidases
R B Gennis, S Ferguson-Miller
Biochemistry
|
June 21, 1983
Lipid and subunit III depleted cytochrome c oxidase purified by horse cytochrome c affinity chromatography in lauryl maltoside
D A Thompson, S Ferguson-Miller
The Journal of Biological Chemistry
|
July 4, 2001
Detergents as tools in membrane biochemistry
R M Garavito, S Ferguson-Miller
Page
of 7