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Interleaflet organization of membrane nanodomains: What can(not) be resolved by FRET?

dc.contributor.authorChmelová, Barbora
dc.contributor.authorDavidović, David
dc.contributor.authorŠachl, Radek
dc.date.accessioned2024-03-04T09:13:30Z
dc.date.available2024-03-04T09:13:30Z
dc.date.issued2023
dc.identifier.urihttps://hdl.handle.net/20.500.14178/2353
dc.description.abstractPlasma membranes as well as their simplified model systems show an inherent nanoscale heterogeneity. As a result of strong interleaflet interactions, these nanoheterogeneities (called here lipid nanodomains) can be found in perfect registration (i.e., nanodomains in the inner leaflet are registered with the nanodomains in the outer leaflet). Alternatively, they might be interleaflet independent, antiregistered, or located asymmetrically in one bilayer leaflet only. To distinguish these scenarios from each other appears to be an experimental challenge. In this work, we analyzed the potential of Förster resonance energy transfer to characterize interleaflet organization of nanodomains. We generated in silico time-resolved fluorescence decays for a large set of virtual as well as real donor/acceptor pairs distributed over the bilayer containing registered, independent, antiregistered, or asymmetrically distributed nanodomains. In this way, we were able to identify conditions that gave satisfactory or unsatisfactory resolution. Overall, Förster resonance energy transfer appears as a robust method that, when using donor/acceptor pairs with good characteristics, yields otherwise difficult-to-reach characteristics of membrane lipid nanodomains.en
dc.language.isoen
dc.relation.urlhttps://doi.org/10.1016/j.bpj.2022.11.014
dc.rightsCreative Commons Uveďte původ 4.0 Internationalcs
dc.rightsCreative Commons Attribution 4.0 Internationalen
dc.titleInterleaflet organization of membrane nanodomains: What can(not) be resolved by FRET?en
dcterms.accessRightsopenAccess
dcterms.licensehttps://creativecommons.org/licenses/by/4.0/legalcode
dc.date.updated2024-03-04T09:13:30Z
dc.subject.keywordMC-FRETen
dc.subject.keywordlipid bilayeren
dc.subject.keywordnanodomainen
dc.subject.keywordinterleaflet organizationen
dc.relation.fundingReferenceinfo:eu-repo/grantAgreement/UK/SVV/SVV260586
dc.relation.fundingReferenceinfo:eu-repo/grantAgreement/UK/COOP/COOP
dc.relation.fundingReferenceinfo:eu-repo/grantAgreement/UK//SVV260687
dc.date.embargoStartDate2024-03-04
dc.type.obd73
dc.type.versioninfo:eu-repo/semantics/publishedVersion
dc.identifier.doi10.1016/j.bpj.2022.11.014
dc.identifier.utWos001053565300001
dc.identifier.eidScopus2-s2.0-85142851949
dc.identifier.obd618779
dc.identifier.pubmed36380590
dc.subject.rivPrimary10000::10400::10403
dc.subject.rivSecondary10000::10300::10301
dcterms.isPartOf.nameBiophysical Journal
dcterms.isPartOf.issn0006-3495
dcterms.isPartOf.journalYear2023
dcterms.isPartOf.journalVolume122
dcterms.isPartOf.journalIssue11
uk.faculty.primaryId116
uk.faculty.primaryNameMatematicko-fyzikální fakultacs
uk.faculty.primaryNameFaculty of Mathematics and Physicsen
uk.faculty.secondaryId115
uk.faculty.secondaryNamePřírodovědecká fakultacs
uk.faculty.secondaryNameFaculty of Scienceen
uk.department.primaryId1191
uk.department.primaryNameFyzikální ústav UKcs
uk.department.primaryNameInstitute of Physics of Charles Universityen
uk.department.secondaryId1277
uk.department.secondaryId1049
uk.department.secondaryNameKatedra chemické fyziky a optikycs
uk.department.secondaryNameDepartment of Chemical Physics and Opticsen
uk.department.secondaryNameKatedra fyzikální a makromolekulární chemiecs
uk.department.secondaryNameDepartment of Physical and Macromolecular Chemistryen
dc.description.pageRange2053-2067
dc.type.obdHierarchyCsČLÁNEK V ČASOPISU::článek v časopisu::původní článekcs
dc.type.obdHierarchyEnJOURNAL ARTICLE::journal article::original articleen
dc.type.obdHierarchyCode73::152::206en
uk.displayTitleInterleaflet organization of membrane nanodomains: What can(not) be resolved by FRET?en


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