The ability of an artificial four-helix bundle Mn-protein, P1, to bind and transfer an electron to photosynthetic reaction centers from the purple bacterium <i>Rhodobacter sphaeroides</i> was characterized using optical spectroscopy. Upon illumination of reaction centers, an electron is transferred from P, the bacteriochlorophyll dimer, to Q<sub>A</sub>, the primary electron acceptor. The P1 Mn-protein can bind to the reaction center and reduce the oxidized bacteriochlorophyll dimer, P<sup>+</sup>, with a dissociation constant of 1.2 μM at pH 9.4, comparable to the binding constant of <i>c</i>-type cytochromes. Amino acid substitutions of surface residues on the Mn-protein resulted in increases in the dissociation constant to 8.3 μM. The ex...
Biological electron transfer is a fundamental process for living systems. Aerobic respiration and ph...
Biological electron transfer is a fundamental process for living systems. Aerobic respiration and ph...
ABSTRACT: It is generally accepted that electron transfer in bacterial photosynthesis is driven by t...
A compelling target for the design of electron transfer proteins with novel cofactors is to create a...
To better understand metalloproteins with Mn-clusters, we have designed artificial four-helix bundle...
The photosynthetic reaction center (RC) of the bacterium Rhodobacter sphaeroides is a pigment-protei...
ABSTRACT: The electron transfer (ET) from bacteriopheophytin (H) to ubiquinone (UQ) in the photosynt...
AbstractAs discussed throughout this special issue, oxidation and reduction reactions play critical ...
The cofactor composition and electron-transfer kinetics of the reaction center (RC) from a magnesium...
To study the specific influence of the protein environment in bacterial photosynthetic reaction cent...
Photosynthesis involves the conversion of light into chemical energy through a series of electron tr...
Bacterium Rhodopseudomonas viridis has four c-type cytochromes integrated to a single protein subuni...
Bacterium Rhodopseudomonas viridis has four c-type cytochromes integrated to a single protein subuni...
ABSTRACT: O,-evolution activity and the Mn complex can be reconstituted in photosystem I1 by a proce...
Photosynthesis is the process by which light energy is converted into chemical products, in photoaut...
Biological electron transfer is a fundamental process for living systems. Aerobic respiration and ph...
Biological electron transfer is a fundamental process for living systems. Aerobic respiration and ph...
ABSTRACT: It is generally accepted that electron transfer in bacterial photosynthesis is driven by t...
A compelling target for the design of electron transfer proteins with novel cofactors is to create a...
To better understand metalloproteins with Mn-clusters, we have designed artificial four-helix bundle...
The photosynthetic reaction center (RC) of the bacterium Rhodobacter sphaeroides is a pigment-protei...
ABSTRACT: The electron transfer (ET) from bacteriopheophytin (H) to ubiquinone (UQ) in the photosynt...
AbstractAs discussed throughout this special issue, oxidation and reduction reactions play critical ...
The cofactor composition and electron-transfer kinetics of the reaction center (RC) from a magnesium...
To study the specific influence of the protein environment in bacterial photosynthetic reaction cent...
Photosynthesis involves the conversion of light into chemical energy through a series of electron tr...
Bacterium Rhodopseudomonas viridis has four c-type cytochromes integrated to a single protein subuni...
Bacterium Rhodopseudomonas viridis has four c-type cytochromes integrated to a single protein subuni...
ABSTRACT: O,-evolution activity and the Mn complex can be reconstituted in photosystem I1 by a proce...
Photosynthesis is the process by which light energy is converted into chemical products, in photoaut...
Biological electron transfer is a fundamental process for living systems. Aerobic respiration and ph...
Biological electron transfer is a fundamental process for living systems. Aerobic respiration and ph...
ABSTRACT: It is generally accepted that electron transfer in bacterial photosynthesis is driven by t...