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Biochemistry
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December 14, 2016
Can Reduction of NO to N<sub>2</sub>O in Cytochrome c Dependent Nitric Oxide Reductase Proceed through a Trans-Mechanism?
Margareta R A Blomberg
Inorganic Chemistry
|
August 18, 2020
Role of the Two Metals in the Active Sites of Heme Copper Oxidases-A Study of NO Reduction in <i>cbb</i><sub>3</sub> Cytochrome <i>c</i> Oxidase
Margareta R A Blomberg
Biochemistry
|
December 23, 2015
Mechanism of Oxygen Reduction in Cytochrome c Oxidase and the Role of the Active Site Tyrosine
Margareta R A Blomberg
Journal of Inorganic Biochemistry
|
November 10, 2019
The mechanism for oxygen reduction in the C family cbb<sub>3</sub> cytochrome c oxidases - Implications for the proton pumping stoichiometry
Margareta R A Blomberg
The Journal of Chemical Physics
|
February 9, 2021
The importance of exact exchange-A methodological investigation of NO reduction in heme-copper oxidases
Margareta R A Blomberg
Biochemistry
|
March 21, 2019
Active Site Midpoint Potentials in Different Cytochrome c Oxidase Families: A Computational Comparison
Margareta R A Blomberg
Journal of Inorganic Biochemistry
|
February 17, 2020
The structure of the oxidized state of cytochrome c oxidase - experiments and theory compared
Margareta R A Blomberg
Frontiers in Chemistry
|
May 3, 2021
The Redox-Active Tyrosine Is Essential for Proton Pumping in Cytochrome c Oxidase
Margareta R A Blomberg
Chemical Society Reviews
|
October 2, 2020
Activation of O<sub>2</sub> and NO in heme-copper oxidases - mechanistic insights from computational modelling
Margareta R A Blomberg
Biochimica Et Biophysica Acta. Bioenergetics
|
August 13, 2017
The mechanism for oxygen reduction in cytochrome c dependent nitric oxide reductase (cNOR) as obtained from a combination of theoretical and experimental results
Margareta R A Blomberg, Pia Ädelroth
Page
of 8
Search research articles
Search
Showing results (1-10 of 76) with videos related to
Sort By:
Page
of 8
Biochemistry
|
December 14, 2016
Can Reduction of NO to N<sub>2</sub>O in Cytochrome c Dependent Nitric Oxide Reductase Proceed through a Trans-Mechanism?
Margareta R A Blomberg
Inorganic Chemistry
|
August 18, 2020
Role of the Two Metals in the Active Sites of Heme Copper Oxidases-A Study of NO Reduction in <i>cbb</i><sub>3</sub> Cytochrome <i>c</i> Oxidase
Margareta R A Blomberg
Biochemistry
|
December 23, 2015
Mechanism of Oxygen Reduction in Cytochrome c Oxidase and the Role of the Active Site Tyrosine
Margareta R A Blomberg
Journal of Inorganic Biochemistry
|
November 10, 2019
The mechanism for oxygen reduction in the C family cbb<sub>3</sub> cytochrome c oxidases - Implications for the proton pumping stoichiometry
Margareta R A Blomberg
The Journal of Chemical Physics
|
February 9, 2021
The importance of exact exchange-A methodological investigation of NO reduction in heme-copper oxidases
Margareta R A Blomberg
Biochemistry
|
March 21, 2019
Active Site Midpoint Potentials in Different Cytochrome c Oxidase Families: A Computational Comparison
Margareta R A Blomberg
Journal of Inorganic Biochemistry
|
February 17, 2020
The structure of the oxidized state of cytochrome c oxidase - experiments and theory compared
Margareta R A Blomberg
Frontiers in Chemistry
|
May 3, 2021
The Redox-Active Tyrosine Is Essential for Proton Pumping in Cytochrome c Oxidase
Margareta R A Blomberg
Chemical Society Reviews
|
October 2, 2020
Activation of O<sub>2</sub> and NO in heme-copper oxidases - mechanistic insights from computational modelling
Margareta R A Blomberg
Biochimica Et Biophysica Acta. Bioenergetics
|
August 13, 2017
The mechanism for oxygen reduction in cytochrome c dependent nitric oxide reductase (cNOR) as obtained from a combination of theoretical and experimental results
Margareta R A Blomberg, Pia Ädelroth
Page
of 8