AbstractIn Synechocystis PCC 6803 as in other cyanobacteria, involvement of protein PII in the co-regulation of inorganic carbon and nitrogen metabolism was established based on post-translational modifications of the protein resulting from changes in the carbon/nitrogen regimes. Uptake of bicarbonate and nitrate in response to changes of the carbon and/or nitrogen regimes is altered in a PII-null mutant, indicating that both processes are under control of PII. Modulation of electron flow by addition of methyl viologen with or without duroquinol, or in a NAD(P)H dehydrogenase-deficient mutant, affects the phosphorylation level of PII. The redox state of the cells would thus act as a trigger for PII phosphorylation
both transport and reduction of nitrate when ammonium is present in the medium. Using a transporter ...
Cyanobacteria, phototrophic organisms performing oxygenic photosynthesis, must adapt their metabolic...
Cyanobacteria, phototrophic organisms performing oxygenic photosynthesis, must adapt their metabolic...
AbstractIn Synechocystis PCC 6803 as in other cyanobacteria, involvement of protein PII in the co-re...
AbstractIn the heterocystous cyanobacterium Anabaena PCC 7120, the modification state of the signall...
AbstractIn the cyanobacterium Synechococcus sp. strain PCC 7942, ammonium exerts a rapid and reversi...
AbstractPII proteins signal the cellular nitrogen status in numerous bacteria, and in cyanobacteria ...
The PII proteins are found in all three domains of life as key integrators of signals reflecting the...
Cyanobacteria are the only prokaryotes performing oxygenic photosynthesis. Non-diazotrophic strains ...
Cyanobacteria are the only prokaryotes performing oxygenic photosynthesis. Non-diazotrophic strains ...
PII is an important signal protein for regulation of nitrogen metabolism in bacteria and plants. We ...
The P(II) protein is encoded by a unique glnB gene in Synechococcus sp. strain PCC 7942. Its express...
18 páginas, 8 figuras, 1 tablaPII, a homotrimeric very ancient and highly widespread (bacteria, arch...
The Synechococcus sp. PCC 7942 nitrogen regulator PipX interacts in a 2-oxoglutarate-dependent manne...
AbstractIn higher plants, the PII protein is a nuclear-encoded plastid protein that regulates the ac...
both transport and reduction of nitrate when ammonium is present in the medium. Using a transporter ...
Cyanobacteria, phototrophic organisms performing oxygenic photosynthesis, must adapt their metabolic...
Cyanobacteria, phototrophic organisms performing oxygenic photosynthesis, must adapt their metabolic...
AbstractIn Synechocystis PCC 6803 as in other cyanobacteria, involvement of protein PII in the co-re...
AbstractIn the heterocystous cyanobacterium Anabaena PCC 7120, the modification state of the signall...
AbstractIn the cyanobacterium Synechococcus sp. strain PCC 7942, ammonium exerts a rapid and reversi...
AbstractPII proteins signal the cellular nitrogen status in numerous bacteria, and in cyanobacteria ...
The PII proteins are found in all three domains of life as key integrators of signals reflecting the...
Cyanobacteria are the only prokaryotes performing oxygenic photosynthesis. Non-diazotrophic strains ...
Cyanobacteria are the only prokaryotes performing oxygenic photosynthesis. Non-diazotrophic strains ...
PII is an important signal protein for regulation of nitrogen metabolism in bacteria and plants. We ...
The P(II) protein is encoded by a unique glnB gene in Synechococcus sp. strain PCC 7942. Its express...
18 páginas, 8 figuras, 1 tablaPII, a homotrimeric very ancient and highly widespread (bacteria, arch...
The Synechococcus sp. PCC 7942 nitrogen regulator PipX interacts in a 2-oxoglutarate-dependent manne...
AbstractIn higher plants, the PII protein is a nuclear-encoded plastid protein that regulates the ac...
both transport and reduction of nitrate when ammonium is present in the medium. Using a transporter ...
Cyanobacteria, phototrophic organisms performing oxygenic photosynthesis, must adapt their metabolic...
Cyanobacteria, phototrophic organisms performing oxygenic photosynthesis, must adapt their metabolic...