2015
Factor VIII organisation on nanodiscs with different lipid composition
Grushin K, Miller J, Dalm D, Stoilova-McPhie S. Factor VIII organisation on nanodiscs with different lipid composition. Thrombosis And Haemostasis 2015, 113: 741-749. PMID: 25589466, DOI: 10.1160/th14-09-0725.Peer-Reviewed Original ResearchMeSH KeywordsAlgorithmsAnimalsBinding SitesFactor VIIIImage Processing, Computer-AssistedImaging, Three-DimensionalMembrane ProteinsMembranes, ArtificialMicroscopy, Electron, TransmissionNanostructuresPhosphatidylserinesProtein BindingProtein ConformationProtein FoldingProtein MultimerizationRecombinant ProteinsSurface PropertiesSwineConceptsMembrane-bound factor VIIISingle-particle electron microscopyProtein-membrane interfaceElectron microscopyComplex assemblyBinding of FVIIIFVIII formsSingle-particle reconstructionDifferent lipid compositionsFunctional studiesNanodiscsProteinLipid compositionPhysiological conditionsFurther assemblyPhosphatidylserineStructural studiesMembrane patchesMembranePlatelet membranesStructure determinationNormal haemostasisParticle reconstructionComplexesAssembly
2012
The Box C/D sRNP dimeric architecture is conserved across Kingdom Archaea
Baserga S, Phipps K, Taylor D, Wang H. The Box C/D sRNP dimeric architecture is conserved across Kingdom Archaea. The FASEB Journal 2012, 26: 773.2-773.2. DOI: 10.1096/fasebj.26.1_supplement.773.2.Peer-Reviewed Original ResearchBox C/D sRNPDimeric architectureBox C/DRecent structural studiesSRNP assemblyArchaeal speciesArchaeal kingdomOligomeric architectureKingdom ArchaeaPyrococcus abyssiArchaeoglobus fulgidusMutational analysisSRNPSingle-particle reconstructionStructural determinantsArchaeaStructural studiesEukaryotesSRNAsFulgidusSolfataricusParticle reconstructionRNASpeciesMutations
2007
The beginning of kinesin's force-generating cycle visualized at 9-Å resolution
Sindelar CV, Downing KH. The beginning of kinesin's force-generating cycle visualized at 9-Å resolution. Journal Of Cell Biology 2007, 177: 377-385. PMID: 17470637, PMCID: PMC2064809, DOI: 10.1083/jcb.200612090.Peer-Reviewed Original ResearchConceptsSwitch II helixMicrotubule-binding proteinN-terminal extensionII helixNucleotide-free stateCryo-electron microscopySwitch IMicrotubule contactsResponse elementSingle-particle reconstructionConformational changesMicrotubulesActivation mechanismKinesinHigh-resolution characterizationHelixProtein
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