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Towards complete cofactor arrangement in the 3.0 Å resolution structure of photosystem II
- Source :
- Nature
- Publication Year :
- 2005
- Publisher :
- Springer Science and Business Media LLC, 2005.
-
Abstract
- Oxygenic photosynthesis in plants, algae and cyanobacteria is initiated at photosystem II, a homodimeric multisubunit protein-cofactor complex embedded in the thylakoid membrane. Photosystem II captures sunlight and powers the unique photo-induced oxidation of water to atmospheric oxygen. Crystallographic investigations of cyanobacterial photosystem II have provided several medium-resolution structures (3.8 to 3.2 A) that explain the general arrangement of the protein matrix and cofactors, but do not give a full picture of the complex. Here we describe the most complete cyanobacterial photosystem II structure obtained so far, showing locations of and interactions between 20 protein subunits and 77 cofactors per monomer. Assignment of 11 beta-carotenes yields insights into electron and energy transfer and photo-protection mechanisms in the reaction centre and antenna subunits. The high number of 14 integrally bound lipids reflects the structural and functional importance of these molecules for flexibility within and assembly of photosystem II. A lipophilic pathway is proposed for the diffusion of secondary plastoquinone that transfers redox equivalents from photosystem II to the photosynthetic chain. The structure provides information about the Mn4Ca cluster, where oxidation of water takes place. Our study uncovers near-atomic details necessary to understand the processes that convert light to chemical energy.
- Subjects :
- Models, Molecular
Photosynthetic reaction centre
Cytoplasm
Multidisciplinary
P700
Photosystem II
Plastoquinone
Cytochrome b6f complex
Chemistry
Photosystem II Protein Complex
Light-harvesting complexes of green plants
macromolecular substances
Oxygen-evolving complex
Crystallography, X-Ray
Cyanobacteria
Photosystem I
Photochemistry
Diffusion
Electron Transport
Oxygen
Protein Subunits
chemistry.chemical_compound
Biochemistry
Metals
Subjects
Details
- ISSN :
- 14764687 and 00280836
- Volume :
- 438
- Database :
- OpenAIRE
- Journal :
- Nature
- Accession number :
- edsair.doi.dedup.....ca5588f12a67ed6163903df54cf24976
- Full Text :
- https://doi.org/10.1038/nature04224