Please use this identifier to cite or link to this item: https://hdl.handle.net/1959.11/17319
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dc.contributor.authorMoens, Pierreen
dc.contributor.authorDigman, Michelleen
dc.contributor.authorGratton, Enricoen
dc.date.accessioned2015-05-14T17:40:00Z-
dc.date.issued2015-
dc.identifier.citationBiophysical Journal, 108(6), p. 1448-1458en
dc.identifier.issn1542-0086en
dc.identifier.issn0006-3495en
dc.identifier.urihttps://hdl.handle.net/1959.11/17319-
dc.description.abstractThe image-mean square displacement technique applies the calculation of the mean square displacement commonly used in single-molecule tracking to images without resolving single particles. The image-mean square displacement plot obtained is similar to the mean square displacement plot obtained using the single-particle tracking technique. This plot is then used to reconstruct the protein diffusion law and to identify whether the labeled molecules are undergoing pure isotropic, restricted, corralled, transiently confined, or directed diffusion. In our study total internal reflection fluorescence microscopy images were taken of Cholera toxin subunit B (CtxB) membrane-labeled NIH 3T3 mouse fibroblasts and MDA 231 MB cells. We found a population of CTxB undergoing purely isotropic diffusion and one displaying restricted diffusion with corral sizes ranging from 150 to -1800 nm. We show that the diffusion rate of CTxB bound to GM1 is independent of the size of the confinement, suggesting that the mechanism of confinement is different from the mechanism controlling the diffusion rate of CtxB. We highlight the potential effect of continuous illumination on the diffusion mode of CTxB. We also show that aggregation of CTxB/GM1 in large complexes occurs and that these aggregates tend to have slower diffusion rates.en
dc.languageenen
dc.publisherElsevier Incen
dc.relation.ispartofBiophysical Journalen
dc.titleModes of Diffusion of Cholera Toxin Bound to GM1 on Live Cell Membrane by Image Mean Square Displacement Analysisen
dc.typeJournal Articleen
dc.identifier.doi10.1016/j.bpj.2015.02.003en
dcterms.accessRightsGolden
dc.subject.keywordsCell Physiologyen
dc.subject.keywordsBiological Physicsen
local.contributor.firstnamePierreen
local.contributor.firstnameMichelleen
local.contributor.firstnameEnricoen
local.subject.for2008111601 Cell Physiologyen
local.subject.for2008029901 Biological Physicsen
local.subject.seo2008970106 Expanding Knowledge in the Biological Sciencesen
local.profile.schoolSchool of Science and Technologyen
local.profile.schoolSchool of Science and Technologyen
local.profile.emailpmoens@une.edu.auen
local.profile.emailmdigman@une.edu.auen
local.profile.emailegratton@une.edu.auen
local.output.categoryC1en
local.record.placeauen
local.record.institutionUniversity of New Englanden
local.identifier.epublicationsrecordune-20150326-135918en
local.publisher.placeUnited States of Americaen
local.format.startpage1448en
local.format.endpage1458en
local.identifier.scopusid84925398186en
local.peerreviewedYesen
local.identifier.volume108en
local.identifier.issue6en
local.access.fulltextYesen
local.contributor.lastnameMoensen
local.contributor.lastnameDigmanen
local.contributor.lastnameGrattonen
dc.identifier.staffune-id:pmoensen
dc.identifier.staffune-id:mdigmanen
dc.identifier.staffune-id:egrattonen
local.profile.orcid0000-0003-3121-5306en
local.profile.roleauthoren
local.profile.roleauthoren
local.profile.roleauthoren
local.identifier.unepublicationidune:17534en
local.identifier.handlehttps://hdl.handle.net/1959.11/17319en
dc.identifier.academiclevelAcademicen
dc.identifier.academiclevelAcademicen
dc.identifier.academiclevelAcademicen
local.title.maintitleModes of Diffusion of Cholera Toxin Bound to GM1 on Live Cell Membrane by Image Mean Square Displacement Analysisen
local.output.categorydescriptionC1 Refereed Article in a Scholarly Journalen
local.search.authorMoens, Pierreen
local.search.authorDigman, Michelleen
local.search.authorGratton, Enricoen
local.uneassociationUnknownen
local.identifier.wosid000351774800017en
local.year.published2015en
local.subject.for2020320801 Cell physiologyen
local.subject.for2020510501 Biological physicsen
local.subject.seo2020280102 Expanding knowledge in the biological sciencesen
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