Search results for "PHOTOSYNTHETIC REACTION CENTER"

showing 10 items of 30 documents

The coupling between electron transfer and protein dynamics in the bacterial photosynthetic reaction center: trapping of conformational substates in …

2004

The photosynthetic reaction center (RC) from purple bacteria is becoming a prototype in exploring the coupling between internal protein motions and long-range electron transfer (ET). This interplay has been extensively investigated by hampering RC substate interconversion and relaxations at low temperatures (McMahon et al., 1998, Biophys. J. 74, 2567). As a complementary approach for limiting RC dynamics at room temperature we embedded the protein within a dehydrated trehalose matrix. Spectroscopic studies and molecular dynamics simulations performed on myoglobin/trehalose/water systems have shown that the nonharmonic contributions to the protein motions (attributed to thermal fluctuations …

PHOTOSYNTHETIC REACTION CENTERELECTRON TRANSFERtrehalose
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Recombinant water-soluble chlorophyll protein from Brassica oleracea var. Botrys binds various chlorophyll derivatives.

2003

A gene coding for water-soluble chlorophyll-binding protein (WSCP) from Brassica oleracea var. Botrys has been used to express the protein, extended by a hexahistidyl tag, in Escherichia coli. The protein has been refolded in vitro to study its pigment binding behavior. Recombinant WSCP was found to bind two chlorophylls (Chls) per tetrameric protein complex but no carotenoids in accordance with previous observations with the native protein [Satoh, H., Nakayama, K., Okada, M. (1998) J. Biol. Chem. 273, 30568-30575]. WSCP binds Chl a, Chl b, bacteriochlorophyll a, and the Zn derivative of Chl a but not pheophytin a, indicating that the central metal ion in Chl is essential for binding. WSCP …

PheophytinChlorophyllProtein FoldingDNA PlantLightTetrameric proteinPhotochemistryPigment bindingPhotosynthetic Reaction Center Complex ProteinsLight-Harvesting Protein ComplexesProtoporphyrinsmacromolecular substancesBrassicaBiologyBiochemistrychemistry.chemical_compoundPigmentPhytolpolycyclic compoundsChlorophyll bindingChlorophyllidesSinglet OxygenCircular DichroismElectron Spin Resonance Spectroscopyfood and beveragesWaterCarotenoidsRecombinant ProteinsBiochemistrychemistrySolubilitySpectrophotometryChlorophyllvisual_artvisual_art.visual_art_mediumProtein foldingSpin LabelsOxidation-ReductionBiochemistry
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Biomimetic model of a plant photosystem consisting of a recombinant light-harvesting complex and a terrylene dye.

2002

Photosynthetic Reaction Center Complex ProteinsGeneral ChemistryPhotosynthesisPhotochemistryModels BiologicalCatalysisFluorescence spectroscopyRecombinant Proteinslaw.inventionLight-harvesting complexchemistry.chemical_compoundMembrane proteinchemistrylawChlorophyllRecombinant DNAPhotosynthesisPhotosystemFluorescent DyesAngewandte Chemie (International ed. in English)
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Probing light-induced conformational transitions in bacterial photosynthetic reaction centers embedded in trehalose-water amorphous matrices.

2004

Abstract The coupling between electron transfer and protein dynamics has been studied in photosynthetic reaction centers (RC) from Rhodobacter sphaeroides by embedding the protein into room temperature solid trehalose–water matrices. Electron transfer kinetics from the primary quinone acceptor (Q A − ) to the photoxidized donor (P + ) were measured as a function of the duration of photoexcitation from 20 ns (laser flash) to more than 1 min. Decreasing the water content of the matrix down to ≈5×10 3 water molecules per RC causes a reversible four-times acceleration of P + Q A − recombination after the laser pulse. By comparing the broadly distributed kinetics observed under these conditions …

Photosynthetic reaction centreLightPhotochemistryProtein ConformationKineticsPhotosynthetic Reaction Center Complex ProteinsBiophysicsAnalytical chemistryThermal fluctuationsPhotosynthetic reaction center; Trehalose; Electron transfer; Protein dynamics; Conformational relaxationProtein dynamicsRhodobacter sphaeroidesBiochemistryElectron transferElectron TransportRhodobacter sphaeroidesElectron transferSoft matterbiologyChemistryTrehaloseWaterCell Biologybiology.organism_classificationPhotosynthetic reaction centerConformational relaxationPhotoexcitationRelaxation (physics)Biochimica et biophysica acta
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Enhanced electron-transfer properties of cofacial porphyrin dimers through pi-pi interactions

2009

pi-pi assisted: Photoinduced electron transfer from cofacial porphyrin dimers to electron acceptors is prominently accelerated, whereas the back electron transfer is decelerated, relative to the corresponding porphyrin monomer (see figure).The radical cation of zinc tetrapentylporphyrin is dimerized with an excess of the neutral counterpart to form the dimer radical cation in which the unpaired electron is delocalized over both porphyrin rings. The dimeric radical cation exhibits an NIR absorption spectrum characteristic of weak pi-bond formation between the porphyrin rings. When cofacial porphyrin dimers, linked by different spacers, are oxidized such pi-bond formation between the porphyri…

Photosynthetic reaction centrePorphyrinsPhotosynthetic Reaction Center Complex ProteinsElectron donorpi interactionsPhotochemistry010402 general chemistry01 natural sciencesPhotoinduced electron transferCatalysisElectron Transportchemistry.chemical_compoundElectron transferredox chemistrypolycyclic compoundsComputingMilieux_MISCELLANEOUSchemistry.chemical_classificationphotosynthesisphotochemistryMolecular StructureChemistry010405 organic chemistryOrganic ChemistryGeneral ChemistryElectron acceptorelectron transferPorphyrinMarcus theory0104 chemical sciences[CHIM.THEO]Chemical Sciences/Theoretical and/or physical chemistryZincUnpaired electronModels Chemical[ CHIM.THEO ] Chemical Sciences/Theoretical and/or physical chemistryThermodynamicsOxidation-ReductionAlgorithms
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Identification of N- and C-terminal Amino Acids of Lhca1 and Lhca4 Required for Formation of the Heterodimeric Peripheral Photosystem I Antenna LHCI-…

2002

Apoproteins of higher plant light-harvesting complexes (LHC) share considerable amino acid sequence identity/similarity. Despite this fact, they occur in different oligomeric states (i.e., monomeric, dimeric, and trimeric). As a step toward understanding the underlying structure requirements for different oligomerization behavior, we analyzed whether amino acids at the N- and C-termini of Lhca1 and Lhca4 are involved in the formation of the heterodimeric LHCI-730. Using altered proteins produced by deletion or site-directed mutagenesis for reconstitution, we were able to identify amino acids required for the assembly of LHCI-730. At the N-terminus of Lhca1, W4 is involved in heterodimerizat…

StereochemistryDimerPhotosynthetic Reaction Center Complex ProteinsMutantLight-Harvesting Protein ComplexesBiologyPhotosystem IBiochemistrychemistry.chemical_compoundResidue (chemistry)Point MutationAmino AcidsPeptide sequencePlant ProteinsSequence Deletionchemistry.chemical_classificationPhotosystem I Protein ComplexArabidopsis ProteinsMutagenesisRecombinant ProteinsAmino acidMonomerBiochemistrychemistryChlorophyll Binding ProteinsDimerizationBiochemistry
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Pigment organization and energy transfer dynamics in isolated photosystem I (PSI) complexes from Arabidopsis thaliana depleted of the PSI-G, PSI-K, P…

2002

Abstract Green plant photosystem I (PSI) consists of at least 18 different protein subunits. The roles of some of these protein subunits are not well known, in particular those that do not occur in the well characterized PSI complexes from cyanobacteria. We investigated the spectroscopic properties and excited-state dynamics of isolated PSI-200 particles from wild-type and mutant Arabidopsis thaliana plants devoid of the PSI-G, PSI-K, PSI-L, or PSI-N subunit. Pigment analysis and a comparison of the 5K absorption spectra of the various particles suggests that the PSI-L and PSI-H subunits together bind approximately five chlorophyll a molecules with absorption maxima near 688 and 667nm, that…

Time FactorsAbsorption spectroscopyProtein subunitPhotosynthetic Reaction Center Complex ProteinsArabidopsisLight-Harvesting Protein ComplexesBiophysicsBiologyPhotosystem Ichemistry.chemical_compoundPhase (matter)MoleculePlant ProteinsQuantitative Biology::BiomoleculesPhotosystem I Protein ComplexTemperaturePigments Biologicalbeta CaroteneFluorescenceKineticsCrystallographySpectrometry FluorescenceEnergy TransferchemistryChlorophyllThermodynamicsHigh Energy Physics::ExperimentAbsorption (chemistry)Research Article
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Ultrafast excitation dynamics of low energy pigments in reconstituted peripheral light-harvesting complexes of photosystem I

2000

AbstractUltrafast dynamics of a reconstituted Lhca4 subunit from the peripheral LHCI-730 antenna of photosystem I of higher plants were probed by femtosecond absorption spectroscopy at 77 K. Intramonomeric energy transfer from chlorophyll (Chl) b to Chl a and energy equilibration between Chl a molecules observed on the subpicosecond time scale are largely similar to subpicosecond energy equilibration processes within LHCII monomers. However, a 5 ps equilibration process in Lhca4 involves unique low energy Chls in LHCI absorbing at 705 nm. These pigments localize the excitation both in the Lhca4 subunit and in LHCI-730 heterodimers. An additional 30–50 ps equilibration process involving red …

Time-resolved spectroscopyPhotosystem I0106 biological sciencesAbsorption spectroscopyPhotosynthetic Reaction Center Complex ProteinsLight-Harvesting Protein ComplexesBiophysicsPhotochemistryPhotosystem I01 natural sciences7. Clean energyBiochemistryFluorescence spectroscopyLight-harvesting complexExcitation energy transfer03 medical and health scienceschemistry.chemical_compoundStructural BiologyUltrafast laser spectroscopyGeneticsMolecular BiologyPlant Proteins030304 developmental biology0303 health sciencesPhotosystem I Protein ComplexSpectrophotometry AtomicPigments BiologicalCell BiologyPlantsLHCI-730 heterodimerEnergy TransferchemistryAntennaChlorophyllPicosecondChlorophyll Binding ProteinsLight-harvesting complexTime-resolved spectroscopyDimerization010606 plant biology & botanyFEBS Letters
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De-epoxidation of Violaxanthin after Reconstitution into Different Carotenoid Binding Sites of Light-harvesting Complex II

2001

In higher plants, the de-epoxidation of violaxanthin (Vx) to antheraxanthin and zeaxanthin is required for the pH-dependent dissipation of excess light energy as heat and by that process plays an important role in the protection against photo-oxidative damage. The de-epoxidation reaction was investigated in an in vitro system using reconstituted light-harvesting complex II (LHCII) and a thylakoid raw extract enriched in the enzyme Vx de-epoxidase. Reconstitution of LHCII with varying carotenoids was performed to replace lutein and/or neoxanthin, which are bound to the native complex, by Vx. Recombinant LHCII containing either 2 lutein and 1 Vx or 1.6 Vx and 1.1 neoxanthin or 2.8 Vx per mono…

chemistry.chemical_classificationLuteinBinding SitesAntheraxanthinPhotosynthetic Reaction Center Complex Proteinsfood and beveragesCell BiologyXanthophyllsbeta CaroteneBiochemistryZeaxanthinKineticschemistry.chemical_compoundchemistryNeoxanthinBiochemistryThylakoidXanthophyllBiophysicsEpoxy CompoundsMolecular BiologyCarotenoidViolaxanthinJournal of Biological Chemistry
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Truncated recombinant light harvesting complex II proteins are substrates for a protein kinase associated with photosystem II core complexes

1998

AbstractPrevious studies directed towards understanding phosphorylation of the chlorophyll a/b binding proteins comprising light harvesting complex II (LHC II) have concentrated on a single phosphorylation site located close to the N-terminus of the mature proteins. Here we show that a series of recombinant pea Lhcb1 proteins, each missing an N-terminal segment including this site, are nevertheless phosphorylated by a protein kinase associated with a photosystem II core complex preparation. An Lhcb1 protein missing the first 58 amino acid residues is not, however, phosphorylated. The results demonstrate that the LHC II proteins are phosphorylated at one or more sites, the implications of wh…

inorganic chemicalsPhotosystem IIMacromolecular SubstancesMolecular Sequence DataPhotosynthetic Reaction Center Complex ProteinsLight-Harvesting Protein ComplexesBiophysicsmacromolecular substancesBiologyBiochemistryDNA-binding proteinProtein kinaseThylakoid membraneSubstrate Specificitylaw.inventionStructural BiologylawGeneticsProtein phosphorylationAmino Acid SequencePhosphorylationProtein kinase AMolecular BiologyPlant ProteinsKinasePeasPeaPhotosystem II Protein Complexfood and beveragesCell BiologySpinachPeptide FragmentsRecombinant Proteinsenzymes and coenzymes (carbohydrates)BiochemistryThylakoidRecombinant DNALight harvesting proteinPhosphorylationbacteriaCarrier ProteinsProtein KinasesFEBS Letters
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