AbstractWhen cyanobacteria are grown under iron-limited or other oxidative stress conditions the iron stress inducible pigment–protein IsiA is synthesized in variable amounts. IsiA accumulates in aggregates inside the photosynthetic membrane that strongly dissipate chlorophyll excited state energy. In this paper we applied Stark fluorescence (SF) spectroscopy at 77K to IsiA aggregates to gain insight into the nature of the emitting and energy dissipating state(s). Our study shows that two emitting states are present in the system, one emitting at 684nm and the other emitting at about 730nm. The new 730nm state exhibits strongly reduced fluorescence (F) together with a large charge transfer character. We discuss these findings in the light o...
Iron-stress induced protein A (IsiA) is a chlorophyll-binding membrane-spanning protein in photosynt...
In many natural habitats, growth of cyanobacteria may be limited by a low concentration of iron. Cya...
AbstractCyanobacteria respond to iron deficiency during growth by expressing the isiA gene, which pr...
AbstractWhen cyanobacteria are grown under iron-limited or other oxidative stress conditions the iro...
When cyanobacteria are grown under iron-limited or other oxidative stress conditions the iron stress...
AbstractWhen grown under a variety of stress conditions, cyanobacteria express the isiA gene, which ...
AbstractCyanobacteria express large quantities of the iron stress-inducible protein IsiA under iron ...
Cyanobacteria are abundant throughout most of the world's water bodies and contribute significantly ...
AbstractThe products of the isiAB operon are a chlorophyll antenna protein (IsiA) and flavodoxin (Is...
Functional flexibility of light harvesting in cyanobacteria Nataliya Yeremenko 1, Roman Kouril 2, Ja...
In response to iron deficiency, cyanobacteria synthesize the iron stress–induced chlorophyll binding...
Functional flexibility of light harvesting in cyanobacteria Nataliya Yeremenko 1, Roman Kouril 2, Ja...
Cyanobacteria are aquatic photoautotrophs and important primary producers in many areas of the ocean...
A significant part of global primary productivity is provided by cyanobacteria, which are abundant i...
In many natural habitats, growth of cyanobacteria may be limited by a low concentration of iron. Cya...
Iron-stress induced protein A (IsiA) is a chlorophyll-binding membrane-spanning protein in photosynt...
In many natural habitats, growth of cyanobacteria may be limited by a low concentration of iron. Cya...
AbstractCyanobacteria respond to iron deficiency during growth by expressing the isiA gene, which pr...
AbstractWhen cyanobacteria are grown under iron-limited or other oxidative stress conditions the iro...
When cyanobacteria are grown under iron-limited or other oxidative stress conditions the iron stress...
AbstractWhen grown under a variety of stress conditions, cyanobacteria express the isiA gene, which ...
AbstractCyanobacteria express large quantities of the iron stress-inducible protein IsiA under iron ...
Cyanobacteria are abundant throughout most of the world's water bodies and contribute significantly ...
AbstractThe products of the isiAB operon are a chlorophyll antenna protein (IsiA) and flavodoxin (Is...
Functional flexibility of light harvesting in cyanobacteria Nataliya Yeremenko 1, Roman Kouril 2, Ja...
In response to iron deficiency, cyanobacteria synthesize the iron stress–induced chlorophyll binding...
Functional flexibility of light harvesting in cyanobacteria Nataliya Yeremenko 1, Roman Kouril 2, Ja...
Cyanobacteria are aquatic photoautotrophs and important primary producers in many areas of the ocean...
A significant part of global primary productivity is provided by cyanobacteria, which are abundant i...
In many natural habitats, growth of cyanobacteria may be limited by a low concentration of iron. Cya...
Iron-stress induced protein A (IsiA) is a chlorophyll-binding membrane-spanning protein in photosynt...
In many natural habitats, growth of cyanobacteria may be limited by a low concentration of iron. Cya...
AbstractCyanobacteria respond to iron deficiency during growth by expressing the isiA gene, which pr...