Search results for "STING"

showing 10 items of 3756 documents

Refined carotenoid analysis of the major light-harvesting complex of Mantoniella squamata

1997

The major light-harvesting complex (LHC) of the prasinophycean alga Mantoniella squamata is unique compared to other chlorophyll (Chl) a/b-binding LHC with respect to the primary protein structure and the pigmentation. Although the presence of Chl a, Chl b, a Chl c-type pigment and the xanthophylls neoxanthin, violaxanthin and prasinoxanthin was clearly determined, several carotenoids remained unidentified or were described controversially. We re-analysed the carotenoid composition and identified a new set of xanthophylls present in the LHC: uriolide, micromonol, micromonal and dihydrolutein. Additionally, one hydrophobic component was detected, presumably a xanthophyll. The pigment analysi…

chemistry.chemical_classificationChlorophyll aChromatographyPhysiologyfood and beveragesmacromolecular substancesPlant ScienceBiologyLight-harvesting complexchemistry.chemical_compoundPigmentchemistryBiochemistryNeoxanthinXanthophyllChlorophyllvisual_artpolycyclic compoundsvisual_art.visual_art_mediumCarotenoidViolaxanthinPhotosynthetica
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Polypeptide sequence of the chlorophyll a/b/c-binding protein of the prasinophycean alga Mantoniella squamata.

1994

The primary structure of the Chla/b/c-binding protein from Mantoniella squamata is determined. This is the first report that protein sequencing reveals one modified amino acid resulting in a LHCP-specific TFA-cleavage site. The comparison of the sequence of Mantoniella with other Chla/b-and Chla/c-binding proteins shows that the modified amino acid is located in a region which is highly conserved in all these proteins. The alignment also reveals that the LHCP of Mantoniella is related to the Chla/b-binding proteins. Finally, possible Chl-binding regions are discussed.

chemistry.chemical_classificationChlorophyll abiologyBinding proteinProtein primary structureCell BiologyPlant ScienceGeneral Medicinebiology.organism_classificationBiochemistryMolecular biologyAmino acidLight-harvesting complexchemistry.chemical_compoundProtein sequencingBiochemistrychemistryMantoniellaPeptide sequencePhotosynthesis research
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Pigment-pigment interactions and secondary structure of reconstituted algal chlorophyll a/b-binding light-harvesting complexes of Chlorella fusca wit…

1995

Earlier we have shown by in vitro reconstitution experiments that the pigment composition of the chlorophyll alb-binding light-harvesting complex of the green alga Chlorella fusca could be altered in a relatively broad range (Meyer and Wilhelm 1993). In this study we used these reconstituted complexes of different pigment loading to analyze the excitonic interactions between the pigment molecules and the secondary structure by means of circular dichroism spectra in the visible and the far UV spectral regions, respectively. We found that, in contrast to the expectations, the pigment composition and pigment content hardly affected the circular dichroism spectra in the visible spectral region.…

chemistry.chemical_classificationChlorophyll bChlorophyll aCircular dichroismCell BiologyPlant ScienceGeneral MedicineBiologyPhotochemistryBiochemistryLight-harvesting complexchemistry.chemical_compoundPigmentchemistryvisual_artChlorophyllXanthophyllvisual_art.visual_art_mediumsense organsProtein secondary structurePhotosynthesis Research
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Ethanedithiol diacetate

2001

Ethane-1,2-diyl S,S′-bis­(thio­acetate), H3CC(O)SCH2CH2SC(O)CH3 or C6H10O2S2, forms centrosymmetric mol­ecules in the solid state and the molecular structure determined by X-ray crystallography is in good agreement with that obtained by density functional geometry optimization. The planarity of the O=C—S—C fragment, which is also found in structures of other thio­acetates, is attributed to a strong np(S)–π*(C—O) orbital interaction.

chemistry.chemical_classificationCrystallographychemistryFragment (logic)ThiolSolid-stateMoleculeGeneral Materials ScienceGeneral ChemistryCondensed Matter PhysicsEnergy minimizationPlanarity testingActa Crystallographica Section E Structure Reports Online
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Performance-based characterization of recycled polymer modified asphalt mixture

2021

Due to the introduction of secondary materials, the asphalt mixtures to be designed and tested in our laboratories are constantly becoming much more complex than traditional asphalt mixtures making difficult to use conventional laboratory procedure and/or predict expected results. This study proposes a comprehensive characterization of asphalt mixture modified with recycled polymer compound by using both wet and dry process proposing adjustments to laboratory mixing and sample compaction procedure. Accordingly, three AC20 Hot Asphalt Mixture (HMA) were designed and their conventional and performance related properties were assessed by looking at a) Indirect Tensile test (ITS) a) moisture da…

chemistry.chemical_classificationDry proceMaterials scienceDry processRutPioneering mixing processCompactionMixing (process engineering)Pioneering mixing proceBuilding and ConstructionPolymerModified asphalt mixturesModified asphalt mixtureRecycled polymer compoundCrackingchemistryAsphaltPlastic wasteUltimate tensile strengthPMBGeneral Materials ScienceComposite materialCivil and Structural EngineeringTensile testingConstruction and Building Materials
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Experimental Testing of Some Polymer Materials

2019

Abstract The research aims to test polymer materials as the plastic materials: UHMWPE and POM, to observe there characteristics, to determing how they can be used and what we can obtain from them. We wanted to see the strong and the weak values that characterize them, what kind of parts we can produce from them and in what case we can use it. By applying this tests is necessary in order to see real datas that can help you compare them, and lead you to conclusions. Using these methods of testing materials leads to the establishment of real properties of the material and to the establishment of new configurations necessary to be made to the manufactured parts.

chemistry.chemical_classificationExperimental testingMaterials sciencechemistryGeneral MedicinePolymerComposite materialActa Universitatis Cibiniensis. Technical Series
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2-(Mesitylmethylsulfanyl)pyridineN-oxide–18-crown-6 (2/1)

2008

In the title compound, 2C(15)H(17)NOS·C(12)H(24)O(6), the asymmetric unit consists of one N-oxide derivative and one-half of the 18-crown-6 ether, which lies on an inversion centre. In the crown ether, the O-C-C-O torsion angles indicate a gauche conformation of the ethyl-eneoxy units, while the C-O-C-C torsion angles indicate planarity of these segments. In the N-oxide unit, the dihedral angle between the pyridine and benzene rings is 85.88 (12)°. The crystal packing is stabilized by weak C-H⋯O hydrogen bonds and C-H⋯π inter-actions.

chemistry.chemical_classificationHydrogen bond18-Crown-6Pyridine-N-oxideEtherGeneral ChemistryDihedral angleCondensed Matter PhysicsBioinformaticsOrganic PapersPlanarity testingchemistry.chemical_compoundCrystallographychemistryPyridineGeneral Materials ScienceCrown etherActa Crystallographica Section E Structure Reports Online
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The Binding of Xanthophylls to the Bulk Light-harvesting Complex of Photosystem II of Higher Plants

2002

The pigment composition of the light-harvesting complexes (LHCs) of higher plants is highly conserved. The bulk complex (LHCIIb) binds three xanthophyll molecules in combination with chlorophyll (Chl) a and b. The structural requirements for binding xanthophylls to LHCIIb have been examined using an in vitro reconstitution procedure. Reassembly of the monomeric recombinant LHCIIb was performed using a wide range of native and nonnative xanthophylls, and a specific requirement for the presence of a hydroxy group at C-3 on a single β-end group was identified. The presence of additional substituents (e.g.at C-4) did not interfere with xanthophyll binding, but they could not, on their own, supp…

chemistry.chemical_classificationLuteinPhotosystem IIfood and beveragesCell BiologyBiologyXanthophyll bindingBiochemistryeye diseasesZeaxanthinLight-harvesting complexchemistry.chemical_compoundchemistryBiochemistryXanthophyllMolecular BiologyCarotenoidViolaxanthinJournal of Biological Chemistry
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The Role of Planarity versus Nonplanarity in the Electronic Communication of TCAQ-Based Push–Pull Chromophores

2018

Donor-acceptor-substituted alkynes, endowed with 11,11,12,12-tetracyano-9,10-anthraquinodimethane (TCAQ) and N,N-dimethylaniline (DMA) units, have been further functionalized by a [2+2] cycloaddition with tetracyanoethylene (TCNE) followed by a subsequent retro-electrocyclization to form distorted nonplanar structures with bridging 1,1,4,4-tetracyanobuta-1,3-diene (TCBD) units. Comprehensive spectroscopic, electrochemical, and computational studies have been carried out to compare the electronic communication in planar (alkyne bridges) and nonplanar (TCBD bridges) TCAQ-based push-pull chromophores. Cyclic voltammetry and UV/Vis absorption measurements confirm the electronic communication be…

chemistry.chemical_classificationMaterials science010405 organic chemistryAlkyneGeneral ChemistryTetracyanoethyleneChromophore010402 general chemistry01 natural sciencesPlanarity testingCycloaddition3. Good health0104 chemical scienceschemistry.chemical_compoundCrystallographychemistryElectronic communicationDensity functional theoryCyclic voltammetry
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Multicomponent solid dispersion a new generation of solid dispersion produced by spray-drying

2020

Abstract The term “multicomponent solid dispersion” is widely used in recent literature to describe solid formulations consisting of a special excipient's mixture and active molecules finely dispersed. However, this term has not yet been defined. In this review, we aimed to improve the definition of multicomponent solid dispersions as a new generation of solid dispersions capable to improve both formulation issues and the therapeutic effect of the final dosage form. As it is well-known the use of solid dispersions to improve drug dissolution rate and solubility, this review describes the field of solid dispersions as well as the formulation strategies available for their production. In part…

chemistry.chemical_classificationMaterials sciencePharmaceutical ScienceExcipient02 engineering and technologyPolymer021001 nanoscience & nanotechnology030226 pharmacology & pharmacyDosage form03 medical and health sciences0302 clinical medicineChemical engineeringchemistrySpray dryingmedicineDissolution testingSolubility0210 nano-technologyDispersion (chemistry)Multicomponent solid dispersion Spray-drying Dissolution rates Dosage form Polymersmedicine.drugJournal of Drug Delivery Science and Technology
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