Search results for "Photosystem"

showing 10 items of 103 documents

Light-harvesting chlorophyll protein (LHCII) drives electron transfer in semiconductor nanocrystals

2017

Type-II quantum dots (QDs) are capable of light-driven charge separation between their core and the shell structures; however, their light absorption is limited in the longer-wavelength range. Biological light-harvesting complex II (LHCII) efficiently absorbs in the blue and red spectral domains. Therefore, hybrid complexes of these two structures may be promising candidates for photovoltaic applications. Previous measurements had shown that LHCII bound to QD can transfer its excitation energy to the latter, as indicated by the fluorescence emissions of LHCII and QD being quenched and sensitized, respectively. In the presence of methyl viologen (MV), both fluorescence emissions are quenched…

ChlorophyllParaquatPhotosynthetic reaction centreMaterials scienceAbsorption spectroscopyLight-Harvesting Protein ComplexesBiophysics02 engineering and technology010402 general chemistryPhotochemistry01 natural sciencesBiochemistryElectron TransportLight-harvesting complexElectron transferQuantum DotsUltrafast laser spectroscopyFluorescence Resonance Energy TransferAction spectrumPeasPhotosystem II Protein ComplexCell Biology021001 nanoscience & nanotechnologyFluorescence0104 chemical sciencesSemiconductorsQuantum dotNanoparticles0210 nano-technologyBiochimica et Biophysica Acta (BBA) - Bioenergetics
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Assessing and modeling nitrite inhibition in microalgae-bacteria consortia for wastewater treatment by means of photo-respirometric and chlorophyll f…

2022

Abstract Total nitrite (TNO2 = HNO2 + NO−2) accumulation due to the activity of ammonia-oxidizing bacteria (AOB) was monitored in microalgae-bacteria consortia, and the inhibitory effect of nitrite/free nitrous acid (NO2-N/FNA) on microalgae photosynthesis and inhibition mechanism was studied. A culture of Scenedesmus was used to run two sets of batch reactors at different pH and TNO2 concentrations to evaluate the toxic potential of NO2-N and FNA. Photo-respirometric tests showed that NO2-N accumulation has a negative impact on net oxygen production rate (OPRNET). Chlorophyll a fluorescence analysis was used to examine the biochemical effects of NO2-N stress and the mechanism of NO2-N inhi…

ChlorophyllPhotosynthetic reaction centrechemistry.chemical_classificationNitrous acidChlorophyll aEnvironmental EngineeringBacteriabiologyChemistryChlorophyll AElectron acceptorbiology.organism_classificationPollutionFluorescenceWater Purificationchemistry.chemical_compoundMicroalgaeEnvironmental ChemistryNitriteWaste Management and DisposalChlorophyll fluorescenceNitritesScenedesmusPhotosystemNuclear chemistryScience of The Total Environment
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Expression of a higher plant light-harvesting chlorophyll a/b-binding protein in Synechocystis sp. PCC 6803

1999

A chimeric lhcb gene, coding for Lhcb, a higher plant chlorophyll a/b-binding light-harvesting complex of photosystem II (LHCII), was constructed using the Synechocystis sp. PCC 6803 psbA3 promoter and a modified lhcb gene from pea. This construct drives synthesis of full-length, mature Lhcb under the control of the strong psbA3 promoter that usually drives expression of the D1 protein of photosystem II. This chimeric gene was transformed into a photosystem I-less/chlL(-) Synechocystis sp. PCC 6803 strain that is unable to synthesize chlorophyll in darkness. In the resulting strain, a high level of lhcb transcript was detected and transcript accumulation was enhanced by addition of exogenou…

ChlorophyllPhotosystem IIRecombinant Fusion ProteinsPhotosynthetic Reaction Center Complex ProteinsPigment bindingMutantLight-Harvesting Protein ComplexesGene ExpressionChimeric geneBiologyCyanobacteriaBiochemistrychemistry.chemical_compoundTransformation GeneticIntegral membrane proteinChromatography High Pressure LiquidPlant ProteinsPhotosystemModels GeneticPhotosystem I Protein ComplexPhotosystem II Protein ComplexPigments BiologicalSpectrometry FluorescenceBiochemistrychemistryThylakoidChlorophyllRNAEuropean Journal of Biochemistry
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The Folding State of the Lumenal Loop Determines the Thermal Stability of Light-Harvesting Chlorophyll a/b Protein

2004

The major light-harvesting protein of photosystem II (LHCIIb) is the most abundant chlorophyll-binding protein in the thylakoid membrane. It contains three membrane-spanning alpha helices; the first and third one closely interact with each other to form a super helix, and all three helices bind most of the pigment cofactors. The protein loop domains connecting the alpha helices also play an important role in stabilizing the LHCIIb structure. Single amino acid exchanges in either loop were found to be sufficient to significantly destabilize the complex assembled in vitro [Heinemann, B., and Paulsen, H. (1999) Biochemistry 38, 14088-14093. Mick, V., Eggert, K., Heinemann, B., Geister, S., and…

ChlorophyllProtein DenaturationProtein FoldingPhotosystem IILight-Harvesting Protein ComplexesBiochemistryProtein structureTrypsinPlant Proteinschemistry.chemical_classificationChemistryChlorophyll AHydrolysisPeasTemperaturePhotosystem II Protein ComplexSodium Dodecyl SulfateProtein Structure TertiaryAmino acidKineticsCrystallographyAmino Acid SubstitutionMembrane proteinThylakoidHelixBiophysicsElectrophoresis Polyacrylamide GelProtein foldingAlpha helixBiochemistry
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Studies of Components of the Thylakoid Membrane of Undamaged and Damaged Spruce Trees at Different Mountain Sites

1993

During a five-year period, components of the thylakoid membrane in needles of the second generation of undamaged and damaged trees of Norway spruce were studied at three different mountain sites in West Germany. Visible signs of damage at these sites are a yellowing of the light-exposed sides of the needles as well as the loss of needles. The goal of this study was to determine damage-induced alterations in composition and physiological reactions of the thylakoid membranes in spruce needles. In order to meet this purpose, contents of chlorophyll a and b, electron transport rate of photosystem II, contents of the D 1 protein, cytochrome f, as well as P-700 were measured. The chlorophyll cont…

ChloroplastPhotosystem IIThylakoidBaden wurttembergBotanyPicea abiesBiologyPhotosynthesisbiology.organism_classificationGeneral Biochemistry Genetics and Molecular BiologyWest germanyZeitschrift für Naturforschung C
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TIP family aquaporins play role in chloroplast osmoregulation and photosynthesis

2020

SUMMARYPhotosynthetic oxygen evolution by photosystem II requires water supply into the chloroplast to reach the thylakoid lumen. A rapid water flow is also required into the chloroplast for optimal oxygen evolution and to overcome osmotic stress. The mechanisms governing water transport in chloroplasts are largely unexplored. Previous proteomics indicated the presence of three aquaporins from the tonoplast intrinsic protein (TIP) family, TIP1;1, TIP1;2 and TIP2;1, in chloroplast membranes of Arabidopsis thaliana. Here we revisited their location and studied their role in chloroplasts. Localization experiments indicated that TIP2;1 resides in the thylakoid, whereas TIP1;2 is present in both…

ChloroplastWater transportPhotosystem IIChemistryWater flowThylakoidBiophysicsfood and beveragesChloroplast ProteinsPhotosynthesisChloroplast membrane
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Silica Entrapment for Significantly Stabilized, Energy-Conducting Light-Harvesting Complex (LHCII)

2014

The major light-harvesting chlorophyll a/b complex (LHCII) of the photosynthetic apparatus in green plants consists of a membrane protein and numerous noncovalently bound pigments that make up about one-third of the molecular mass of the pigment-protein complex. Due to this high pigment density, LHCII is potentially interesting as a light-harvesting component in synthetic constructs. However, for such applications its stability needs to be significantly improved. In this work, LHCII was dramatically stabilized by enclosing it within polymerizing colloidal silica. The entrapped LHCII stayed functional at 50 °C for up to 24 h instead of a few minutes in detergent solution and clearly showed e…

ChromatographyMolecular massChemistryColloidal silicaLight-Harvesting Protein ComplexesPhotosystem II Protein ComplexSurfaces and InterfacesSilicon DioxideCondensed Matter PhysicsPhotosynthesisLight-harvesting complexB vitaminsPigmentPolymerizationYield (chemistry)visual_artElectrochemistryBiophysicsvisual_art.visual_art_mediumGeneral Materials ScienceSpectroscopyLangmuir
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Thermal stability of trimeric light-harvesting chlorophyll a/b complex (LHCIIb) in liposomes of thylakoid lipids.

2006

The major light-harvesting chlorophyll a/b complex (LHCIIb) of photosystem (PS) II functions by harvesting light energy and by limiting and balancing the energy flow directed towards the PSI and PSII reaction centers. The complex is predominantly trimeric; however, the monomeric form may play a role in one or several of the regulatory functions of LHCIIb. In this work the dissociation temperature was measured of trimeric LHCIIb isolated from Pisum thylakoids and inserted into liposomes made of various combinations of thylakoid lipids at various protein densities. Dissociation was measured by monitoring a trimer-specific circular dichroism signal in the visible range. The LHCIIb density in t…

Circular dichroismBiophysicsLight-Harvesting Protein ComplexesTrimerPhotochemistryBiochemistryThylakoidsDissociation (chemistry)Membrane LipidsProtein Structure QuaternaryTrimerDiacylglycerol kinasePhotosystemPlant ProteinsLiposomeChemistryCircular DichroismLight harvesting complexes of photosystem II (LHCIIb)Peasfood and beveragesThermal stabilityCell BiologyLiposomeThylakoid lipidsB vitaminsThylakoidMultiprotein ComplexesLiposomesThermodynamicslipids (amino acids peptides and proteins)Biochimica et biophysica acta
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Novel atrazine-binding biomimetics inspired to the D1 protein from the photosystem II of Chlamydomonas reinhardtii.

2020

Biomimetic design represents an emerging field for improving knowledge of natural molecules, as well as to project novel artificial tools with specific functions for biosensing. Effective strategies have been exploited to design artificial bioreceptors, taking inspiration from complex supramolecular assemblies. Among them, size-minimization strategy sounds promising to provide bioreceptors with tuned sensitivity, stability, and selectivity, through the ad hoc manipulation of chemical species at the molecular scale. Herein, a novel biomimetic peptide enabling herbicide binding was designed bioinspired to the D1 protein of the Photosystem II of the green alga Chlamydomonas reinhardtii. The D1…

Circular dichroismPhotosystem IIProtein ConformationSupramolecular chemistryPlastoquinoneChlamydomonas reinhardtiiPeptide02 engineering and technologyMolecular Dynamics SimulationBiochemistryFluorescence spectroscopy03 medical and health scienceschemistry.chemical_compoundStructural BiologyBiomimeticsAmino Acid SequencePhotosynthesisMolecular Biology030304 developmental biologychemistry.chemical_classification0303 health sciencesbiologyRational designphotosystem IIPhotosystem II Protein ComplexGeneral Medicine021001 nanoscience & nanotechnologybiology.organism_classificationSpectrometry FluorescencechemistryArtificial peptides Atrazine sensing Rational designBiophysicsThermodynamicsAtrazine0210 nano-technologyPeptidesChlamydomonas reinhardtiiInternational journal of biological macromolecules
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The Supramolecular Structure of Photosystem II — Phycobilisome‐Complexes of Porphyridium cruentum

1990

The structure and arrangement of phycobilisomes of the unicellular red alga Porphyridium cruentum is compared with the organization of the thylakoid freeze-fracture particles in order to determine the relationship between phycobilisomes and photosystem II. The hemi-ellipsoidal phycobilisomes, 20 nm thick, are predominantly organized into rows; their centre to centre periodicity is 30–40 nm, so that they are well separated by a gap of 10–20 nm. The phycobilisomes are cleaved by a central faint furrow, parallel to the long axis from top to base. The organization of the exoplasmic particles in rows is similar to the arrangement of the phycobilisomes so that a structural relationship between bo…

CyanobacteriabiologyPhotosystem IIPorphyridium cruentumThylakoidBotanyPorphyridiumBiophysicsPhycobilisomePlant Sciencebiology.organism_classificationPhotosynthesisPhotosystemBotanica Acta
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