Iron deficiency and other stress conditions strongly impact photosynthetic apparatus in photosynthetic organisms. Two novel chlorophyll (Chl)-containing supercomplexes (F4 and F5) in addition to the photosystem (PS) I trimers (F3) were observed by sucrose gradient ultracentrifugation in Synechocystis PCC 6803 under extensive iron starvation. 77K fluorescence and Western blot analyses of these supercomplexes revealed that they all contained IsiA. The F4 was identified as an IsiA-PSI-PSII supercomplex, while the F5 was assigned as an IsiA-PSI supercomplex. Deletion of isiA resulted in diminishing the PSI trimers (including the PSI trimers in iron-replete cells) and the two novel PSI supercomplexes (F4 and F5), and a significant reduction in t...
Cyanobacterial photosystem I supercomplexes bind to iron-stress-induced proteins IsiA and flavodoxin...
The cyanobacterium Synechocystis PCC 6803 has been subjected to growth under iron-deficient conditio...
Photosystem I (PSI) and Photosystem II (PSII) can form supercomplexes with various types of antenna ...
Iron stress-induced protein A (IsiA), a major chlorophyll-binding protein in the thylakoid membrane,...
Functional flexibility of light harvesting in cyanobacteria Nataliya Yeremenko 1, Roman Kouril 2, Ja...
AbstractCyanobacteria express large quantities of the iron stress-inducible protein IsiA under iron ...
Cyanobacteria express large quantities of the iron stress-inducible protein IsiA under iron deficien...
Due to the low solubility of iron, cyanobacteria need to have adaptation mechanisms of their photosy...
A significant part of global primary productivity is provided by cyanobacteria, which are abundant i...
The cyanobacterium Synechocystis PCC 6803 grown under short-term iron-deficient conditions assembles...
Cyanobacteria are aquatic photoautotrophs and important primary producers in many areas of the ocean...
In many natural habitats, growth of cyanobacteria may be limited by a low concentration of iron. Cya...
AbstractWe present the molecular structure of the IsiA–Photosystem I (PSI) supercomplex, inferred fr...
In many natural habitats, growth of cyanobacteria may be limited by a low concentration of iron. Cya...
Cyanobacteria are abundant throughout most of the world's water bodies and contribute significantly ...
Cyanobacterial photosystem I supercomplexes bind to iron-stress-induced proteins IsiA and flavodoxin...
The cyanobacterium Synechocystis PCC 6803 has been subjected to growth under iron-deficient conditio...
Photosystem I (PSI) and Photosystem II (PSII) can form supercomplexes with various types of antenna ...
Iron stress-induced protein A (IsiA), a major chlorophyll-binding protein in the thylakoid membrane,...
Functional flexibility of light harvesting in cyanobacteria Nataliya Yeremenko 1, Roman Kouril 2, Ja...
AbstractCyanobacteria express large quantities of the iron stress-inducible protein IsiA under iron ...
Cyanobacteria express large quantities of the iron stress-inducible protein IsiA under iron deficien...
Due to the low solubility of iron, cyanobacteria need to have adaptation mechanisms of their photosy...
A significant part of global primary productivity is provided by cyanobacteria, which are abundant i...
The cyanobacterium Synechocystis PCC 6803 grown under short-term iron-deficient conditions assembles...
Cyanobacteria are aquatic photoautotrophs and important primary producers in many areas of the ocean...
In many natural habitats, growth of cyanobacteria may be limited by a low concentration of iron. Cya...
AbstractWe present the molecular structure of the IsiA–Photosystem I (PSI) supercomplex, inferred fr...
In many natural habitats, growth of cyanobacteria may be limited by a low concentration of iron. Cya...
Cyanobacteria are abundant throughout most of the world's water bodies and contribute significantly ...
Cyanobacterial photosystem I supercomplexes bind to iron-stress-induced proteins IsiA and flavodoxin...
The cyanobacterium Synechocystis PCC 6803 has been subjected to growth under iron-deficient conditio...
Photosystem I (PSI) and Photosystem II (PSII) can form supercomplexes with various types of antenna ...