AbstractBinding of herbicides to photosystem II inhibits the electron transfer from QA to QB due to competition of herbicides with plastoquinone bound at the QB site. We investigated herbicide binding to monomeric and dimeric photosystem II core complexes (PSIIcc) isolated from Thermosynechococcus elongatus by a combination of different methods (isothermal titration and differential scanning calorimetry, CD spectroscopy and measurements of the oxygen evolution) yielding binding constants, enthalpies and stoichiometries for various herbicides as well as information regarding stabilization/destabilization of the complex. Herbicide binding to detergent-solubilized PSIIcc can be described by a model of single independent binding sites present o...
The mechanism of atrazine binding and its modification by Chelex-100-induced Ca2+ depletion and prot...
AbstractThe binding of herbicides to the phylloquinone-(primary electron acceptor A1)-binding site i...
AbstractThe main cofactors involved in the function of Photosystem II (PSII) are borne by the D1 and...
AbstractBinding of herbicides to photosystem II inhibits the electron transfer from QA to QB due to ...
AbstractThe main cofactors involved in Photosystem II (PSII) oxygen evolution activity are borne by ...
The main cofactors involved in Photosystem II (PSII) oxygen evolution activity are borne by two prot...
In this thesis experiments are described which are directed towards a further characterization of th...
Photosystem II (PSII) is a multi-subunit enzymatic complex embedded in the thylakoid membranes respo...
In this thesis experiments are described which are directed towards a further characterization of th...
AbstractThe binding of herbicides to the phylloquinone-(primary electron acceptor A1)-binding site i...
Many inhibitors prevent the oxidation of the primary electron-accepting quinone (QA) by the secondar...
This Thesis aims to increase the understanding of the way in which herbicides inhibit plant photosyn...
The binding of photosystem I (PS I) from Thermosynechococcus elongatus to the native cytochrome (cyt...
The binding of photosystem I (PS I) from Thermosynechococcus elongatus to the native cytochrome (cyt...
AbstractCertain phenolic compounds represent a distinct class of Photosystem (PS) II QB site inhibit...
The mechanism of atrazine binding and its modification by Chelex-100-induced Ca2+ depletion and prot...
AbstractThe binding of herbicides to the phylloquinone-(primary electron acceptor A1)-binding site i...
AbstractThe main cofactors involved in the function of Photosystem II (PSII) are borne by the D1 and...
AbstractBinding of herbicides to photosystem II inhibits the electron transfer from QA to QB due to ...
AbstractThe main cofactors involved in Photosystem II (PSII) oxygen evolution activity are borne by ...
The main cofactors involved in Photosystem II (PSII) oxygen evolution activity are borne by two prot...
In this thesis experiments are described which are directed towards a further characterization of th...
Photosystem II (PSII) is a multi-subunit enzymatic complex embedded in the thylakoid membranes respo...
In this thesis experiments are described which are directed towards a further characterization of th...
AbstractThe binding of herbicides to the phylloquinone-(primary electron acceptor A1)-binding site i...
Many inhibitors prevent the oxidation of the primary electron-accepting quinone (QA) by the secondar...
This Thesis aims to increase the understanding of the way in which herbicides inhibit plant photosyn...
The binding of photosystem I (PS I) from Thermosynechococcus elongatus to the native cytochrome (cyt...
The binding of photosystem I (PS I) from Thermosynechococcus elongatus to the native cytochrome (cyt...
AbstractCertain phenolic compounds represent a distinct class of Photosystem (PS) II QB site inhibit...
The mechanism of atrazine binding and its modification by Chelex-100-induced Ca2+ depletion and prot...
AbstractThe binding of herbicides to the phylloquinone-(primary electron acceptor A1)-binding site i...
AbstractThe main cofactors involved in the function of Photosystem II (PSII) are borne by the D1 and...