AbstractThe cytochrome aa3-type quinol oxidase from the archaeon Acidianus ambivalens and the ba3-type cytochrome c oxidase from Thermus thermophilus are divergent members of the heme-copper oxidase superfamily of enzymes. In particular they lack most of the key residues involved in the proposed proton transfer pathways. The pumping capability of the A. ambivalens enzyme was investigated and found to occur with the same efficiency as the canonical enzymes. This is the first demonstration of pumping of 1 H+/electron in a heme-copper oxidase that lacks most residues of the K- and D-channels. Also, the structure of the ba3 oxidase from T. thermophilus was simulated by mutating Phe274 to threonine and Glu278 to isoleucine in the D-pathway of th...
163 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2009.Aerobic organisms derive ener...
AbstractOxido-reductions of metal centers in cytochrome c oxidase are linked to pK shifts of acidic ...
AbstractHeme-copper oxidases (HCOs) are terminal electron acceptors in aerobic respiration. They cat...
AbstractThe respiratory heme-copper oxidases catalyze reduction of O2 to H2O, linking this process t...
AbstractThe heme-copper oxidases may be divided into three categories, A, B, and C, which include cy...
Heme-copper oxidases are transmembrane proteins that are found in aerobic and anaerobic respiratory ...
Proton pumping heme-copper oxidases represent the terminal, energy-transfer enzymes of respiratory c...
Heme-copper oxidases (HCOs) couple the free energy of oxygen reduction and translocate protons acros...
AbstractOne of the key problems of molecular bioenergetics is the understanding of the function of r...
In the last few years, evidence has accumulated supporting the applicability of the cooperative mode...
A glutamic acid residue in subunit I of the heme-copper oxidases is highly conserved and has been di...
Aerobic organisms derive energy needed to sustain life from foodstuffs through the process of cellul...
Cytochrome c oxidase is the final electron acceptor in the respiratory chain and catalyzes the highl...
AbstractCytochrome c oxidase is a molecular machine that transduces respiratory energy into an elect...
Oxido-reductions of metal centers in cytochrome c oxidase are linked to pK shifts of acidic groups i...
163 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2009.Aerobic organisms derive ener...
AbstractOxido-reductions of metal centers in cytochrome c oxidase are linked to pK shifts of acidic ...
AbstractHeme-copper oxidases (HCOs) are terminal electron acceptors in aerobic respiration. They cat...
AbstractThe respiratory heme-copper oxidases catalyze reduction of O2 to H2O, linking this process t...
AbstractThe heme-copper oxidases may be divided into three categories, A, B, and C, which include cy...
Heme-copper oxidases are transmembrane proteins that are found in aerobic and anaerobic respiratory ...
Proton pumping heme-copper oxidases represent the terminal, energy-transfer enzymes of respiratory c...
Heme-copper oxidases (HCOs) couple the free energy of oxygen reduction and translocate protons acros...
AbstractOne of the key problems of molecular bioenergetics is the understanding of the function of r...
In the last few years, evidence has accumulated supporting the applicability of the cooperative mode...
A glutamic acid residue in subunit I of the heme-copper oxidases is highly conserved and has been di...
Aerobic organisms derive energy needed to sustain life from foodstuffs through the process of cellul...
Cytochrome c oxidase is the final electron acceptor in the respiratory chain and catalyzes the highl...
AbstractCytochrome c oxidase is a molecular machine that transduces respiratory energy into an elect...
Oxido-reductions of metal centers in cytochrome c oxidase are linked to pK shifts of acidic groups i...
163 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2009.Aerobic organisms derive ener...
AbstractOxido-reductions of metal centers in cytochrome c oxidase are linked to pK shifts of acidic ...
AbstractHeme-copper oxidases (HCOs) are terminal electron acceptors in aerobic respiration. They cat...