AbstractThe chloroplast H+-ATP synthase is a key component for the energy supply of higher plants and green algae. An oligomer of identical protein subunits III is responsible for the conversion of an electrochemical proton gradient into rotational motion. It is highly controversial if the oligomer III stoichiometry is affected by the metabolic state of any organism. Here, the intact oligomer III of the ATP synthase from Chlamydomonas reinhardtii has been isolated for the first time. Due to the importance of the subunit III stoichiometry for energy conversion, a gradient gel system was established to distinguish oligomers with different stoichiometries. With this methodology, a possible alterability of the stoichiometry in respect to the me...
International audienceWe have carried out an analysis of the synthesis, cellular accumulation, and m...
ATP synthases convert an electrochemical proton gradient into rotational movement to produce the ubi...
International audienceWe have characterized the subunit composition of the chloroplast ATP synthase ...
AbstractThe chloroplast H+-ATP synthase is a key component for the energy supply of higher plants an...
AbstractDimers and oligomers of F-type ATP synthases have been observed previously in mitochondria o...
The H+/ATP ratio is an important parameter for the energy balance in cells as it defines the gearing...
AbstractProton ATP synthases carry out energy conversion in mitochondria, chloroplasts, and bacteria...
Proton ATP synthases carry out energy conversion in mitochondria, chloroplasts, and bacteria. A key ...
The H+/ATP ratio is an important parameter for energy balance in cells and for the mechanism of coup...
F0F1-ATP synthases use the free energy derived from a transmembrane proton transport to synthesize A...
AbstractH+-ATP synthase is the dominant ATP production site in mitochondria and chloroplasts. So far...
AbstractIn this paper the authors emphasise that the proton translocating ATP synthase from thiol-mo...
AbstractThe green alga Chlamydomonas reinhardtii is a model organism for the study of photosynthesis...
The H+-translocating ATPase (“ATP-synthase”) from chloroplasts is a membrane-bound enzyme which can ...
Background. In yeast, mammals, and land plants, mitochondrial F(1)F(O) ATP synthase (complex V) is a...
International audienceWe have carried out an analysis of the synthesis, cellular accumulation, and m...
ATP synthases convert an electrochemical proton gradient into rotational movement to produce the ubi...
International audienceWe have characterized the subunit composition of the chloroplast ATP synthase ...
AbstractThe chloroplast H+-ATP synthase is a key component for the energy supply of higher plants an...
AbstractDimers and oligomers of F-type ATP synthases have been observed previously in mitochondria o...
The H+/ATP ratio is an important parameter for the energy balance in cells as it defines the gearing...
AbstractProton ATP synthases carry out energy conversion in mitochondria, chloroplasts, and bacteria...
Proton ATP synthases carry out energy conversion in mitochondria, chloroplasts, and bacteria. A key ...
The H+/ATP ratio is an important parameter for energy balance in cells and for the mechanism of coup...
F0F1-ATP synthases use the free energy derived from a transmembrane proton transport to synthesize A...
AbstractH+-ATP synthase is the dominant ATP production site in mitochondria and chloroplasts. So far...
AbstractIn this paper the authors emphasise that the proton translocating ATP synthase from thiol-mo...
AbstractThe green alga Chlamydomonas reinhardtii is a model organism for the study of photosynthesis...
The H+-translocating ATPase (“ATP-synthase”) from chloroplasts is a membrane-bound enzyme which can ...
Background. In yeast, mammals, and land plants, mitochondrial F(1)F(O) ATP synthase (complex V) is a...
International audienceWe have carried out an analysis of the synthesis, cellular accumulation, and m...
ATP synthases convert an electrochemical proton gradient into rotational movement to produce the ubi...
International audienceWe have characterized the subunit composition of the chloroplast ATP synthase ...