Charge isomers of myelin basic protein: Structure and interactions with membranes, nucleotide analogues, and calmodulin

dc.bibliographicCitation.firstPagee19915eng
dc.bibliographicCitation.issue5eng
dc.bibliographicCitation.journalTitlePLoS ONEeng
dc.bibliographicCitation.volume6eng
dc.contributor.authorWang, C.
dc.contributor.authorNeugebauer, U.
dc.contributor.authorBürck, J.
dc.contributor.authorMyllykoski, M.
dc.contributor.authorBaumgärtel, P.
dc.contributor.authorPopp, J.
dc.contributor.authorKursula, P.
dc.date.accessioned2020-11-20T17:21:07Z
dc.date.available2020-11-20T17:21:07Z
dc.date.issued2011
dc.description.abstractAs an essential structural protein required for tight compaction of the central nervous system myelin sheath, myelin basic protein (MBP) is one of the candidate autoantigens of the human inflammatory demyelinating disease multiple sclerosis, which is characterized by the active degradation of the myelin sheath. In this work, recombinant murine analogues of the natural C1 and C8 charge components (rmC1 and rmC8), two isoforms of the classic 18.5-kDa MBP, were used as model proteins to get insights into the structure and function of the charge isomers. Various biochemical and biophysical methods such as size exclusion chromatography, calorimetry, surface plasmon resonance, small angle X-ray and neutron scattering, Raman and fluorescence spectroscopy, and conventional as well as synchrotron radiation circular dichroism were used to investigate differences between these two isoforms, both from the structural point of view, and regarding interactions with ligands, including calmodulin (CaM), various detergents, nucleotide analogues, and lipids. Overall, our results provide further proof that rmC8 is deficient both in structure and especially in function, when compared to rmC1. While the CaM binding properties of the two forms are very similar, their interactions with membrane mimics are different. CaM can be used to remove MBP from immobilized lipid monolayers made of synthetic lipids - a phenomenon, which may be of relevance for MBP function and its regulation. Furthermore, using fluorescently labelled nucleotides, we observed binding of ATP and GTP, but not AMP, by MBP; the binding of nucleoside triphosphates was inhibited by the presence of CaM. Together, our results provide important further data on the interactions between MBP and its ligands, and on the differences in the structure and function between MBP charge isomers.eng
dc.description.versionpublishedVersioneng
dc.identifier.urihttps://doi.org/10.34657/4569
dc.identifier.urihttps://oa.tib.eu/renate/handle/123456789/5940
dc.language.isoengeng
dc.publisherSan Francisco, CA : Public Library of Scienceeng
dc.relation.doihttps://doi.org/10.1371/journal.pone.0019915
dc.relation.issn1932-6203
dc.rights.licenseCC BY 3.0 Unportedeng
dc.rights.urihttps://creativecommons.org/licenses/by/3.0/eng
dc.subject.ddc570eng
dc.subject.otheradenosine phosphateeng
dc.subject.otheradenosine triphosphateeng
dc.subject.othercalmodulineng
dc.subject.otherdetergenteng
dc.subject.otherfluorescent dyeeng
dc.subject.otherguanosine triphosphateeng
dc.subject.otherlipideng
dc.subject.othermyelin basic proteineng
dc.subject.othernucleoside analogeng
dc.subject.otherisoproteineng
dc.subject.otherligandeng
dc.subject.othernucleotideeng
dc.subject.otherarticleeng
dc.subject.otherbiochemistryeng
dc.subject.otherbiophysicseng
dc.subject.othercalorimetryeng
dc.subject.othercircular dichroismeng
dc.subject.othercontrolled studyeng
dc.subject.otherfluorescence spectroscopyeng
dc.subject.othergel permeation chromatographyeng
dc.subject.otherlipid monolayereng
dc.subject.otherneutron scatteringeng
dc.subject.otherprotein bindingeng
dc.subject.otherprotein functioneng
dc.subject.otherprotein interactioneng
dc.subject.otherprotein structureeng
dc.subject.otherRaman spectrometryeng
dc.subject.othersurface plasmon resonanceeng
dc.subject.othersynchrotron radiationeng
dc.subject.otherX ray crystallographyeng
dc.subject.otheranimaleng
dc.subject.othercell membraneeng
dc.subject.otherchemical structureeng
dc.subject.otherchemistryeng
dc.subject.othergel chromatographyeng
dc.subject.otherlipid metabolismeng
dc.subject.othermetabolismeng
dc.subject.othermouseeng
dc.subject.otherprotein secondary structureeng
dc.subject.otherMurinaeeng
dc.subject.otherAnimalseng
dc.subject.otherCalmodulineng
dc.subject.otherCalorimetryeng
dc.subject.otherCell Membraneeng
dc.subject.otherChromatography, Geleng
dc.subject.otherLigandseng
dc.subject.otherLipid Metabolismeng
dc.subject.otherMiceeng
dc.subject.otherModels, Moleculareng
dc.subject.otherMyelin Basic Proteinseng
dc.subject.otherNucleotideseng
dc.subject.otherProtein Bindingeng
dc.subject.otherProtein Isoformseng
dc.subject.otherProtein Structure, Secondaryeng
dc.subject.otherSpectrum Analysis, Ramaneng
dc.subject.otherSurface Plasmon Resonanceeng
dc.titleCharge isomers of myelin basic protein: Structure and interactions with membranes, nucleotide analogues, and calmodulineng
dc.typeArticleeng
dc.typeTexteng
tib.accessRightsopenAccesseng
wgl.contributorIPHTeng
wgl.subjectBiowissenschaften/Biologieeng
wgl.typeZeitschriftenartikeleng
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