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M R Mauk

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Biochemistry|November 4, 1986
Electrostatic analysis of the interaction of cytochrome c with native and dimethyl ester heme substituted cytochrome b5M R Mauk, A G Mauk, P C Weber, et al.
Journal of Bioenergetics and Biomembranes|June 1, 1995
Experimental and theoretical analysis of the interaction between cytochrome c and cytochrome b5A G Mauk, M R Mauk, G R Moore, et al.
FEBS Letters|March 23, 1987
NMR study of the interaction between cytochrome b5 and cytochrome c. Observation of a ternary complex formed by the two proteins and [Cr(en)3]3+R T Hartshorn, A G Mauk, M R Mauk, et al.
Biochemistry|September 27, 1994
Recombinant human erythrocyte cytochrome b5E Lloyd, J C Ferrer, W D Funk, et al.
Biochemistry|June 12, 1990
Mutagenic, electrochemical, and crystallographic investigation of the cytochrome b5 oxidation-reduction equilibrium: involvement of asparagine-57, serine-64, and heme propionate-7W D Funk, T P Lo, M R Mauk, et al.
Biochemistry|January 19, 1993
Laser flash photolysis studies of electron transfer to the cytochrome b5-cytochrome c complexT E Meyer, M Rivera, F A Walker, et al.
Science (New York, N.Y.)|February 16, 1990
NMR characterization of surface interactions in the cytochrome b5-cytochrome c complexA M Burch, S E Rigby, W D Funk, et al.
FEBS Letters|November 18, 1996
Charge compensated binding of divalent metals to bacterioferritin: H+ release associated with cobalt(II) and zinc(II) binding at dinuclear metal sitesN E Le Brun, A M Keech, M R Mauk, et al.
The Biochemical Journal|June 26, 1998
N epsilon,N epsilon-dimethyl-lysine cytochrome c as an NMR probe for lysine involvement in protein-protein complex formationG R Moore, M C Cox, D Crowe, et al.
Applied Biochemistry and Biotechnology|November 16, 2013
Patents and literatureJ A Smith, S J Luenser, N F Olson, et al.
Pageof 3

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

Sort By:
Pageof 3
You have reached the last page of results.This site can display upto 30 results.
Biochemistry|November 4, 1986
Electrostatic analysis of the interaction of cytochrome c with native and dimethyl ester heme substituted cytochrome b5M R Mauk, A G Mauk, P C Weber, et al.
Journal of Bioenergetics and Biomembranes|June 1, 1995
Experimental and theoretical analysis of the interaction between cytochrome c and cytochrome b5A G Mauk, M R Mauk, G R Moore, et al.
FEBS Letters|March 23, 1987
NMR study of the interaction between cytochrome b5 and cytochrome c. Observation of a ternary complex formed by the two proteins and [Cr(en)3]3+R T Hartshorn, A G Mauk, M R Mauk, et al.
Biochemistry|September 27, 1994
Recombinant human erythrocyte cytochrome b5E Lloyd, J C Ferrer, W D Funk, et al.
Biochemistry|June 12, 1990
Mutagenic, electrochemical, and crystallographic investigation of the cytochrome b5 oxidation-reduction equilibrium: involvement of asparagine-57, serine-64, and heme propionate-7W D Funk, T P Lo, M R Mauk, et al.
Biochemistry|January 19, 1993
Laser flash photolysis studies of electron transfer to the cytochrome b5-cytochrome c complexT E Meyer, M Rivera, F A Walker, et al.
Science (New York, N.Y.)|February 16, 1990
NMR characterization of surface interactions in the cytochrome b5-cytochrome c complexA M Burch, S E Rigby, W D Funk, et al.
FEBS Letters|November 18, 1996
Charge compensated binding of divalent metals to bacterioferritin: H+ release associated with cobalt(II) and zinc(II) binding at dinuclear metal sitesN E Le Brun, A M Keech, M R Mauk, et al.
The Biochemical Journal|June 26, 1998
N epsilon,N epsilon-dimethyl-lysine cytochrome c as an NMR probe for lysine involvement in protein-protein complex formationG R Moore, M C Cox, D Crowe, et al.
Applied Biochemistry and Biotechnology|November 16, 2013
Patents and literatureJ A Smith, S J Luenser, N F Olson, et al.
Pageof 3