Please use this identifier to cite or link to this item: https://doi.org/10.1242/jcs.00599
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dc.titleEffect of pathogenic mis-sense mutations in lamin A on its interaction with emerin in vivo
dc.contributor.authorHolt, I
dc.contributor.authorÖstlund, C
dc.contributor.authorStewart, C.L
dc.contributor.authorthi Man, N
dc.contributor.authorWorman, H.J
dc.contributor.authorMorris, G.E
dc.date.accessioned2020-10-27T09:54:45Z
dc.date.available2020-10-27T09:54:45Z
dc.date.issued2003
dc.identifier.citationHolt, I, Östlund, C, Stewart, C.L, thi Man, N, Worman, H.J, Morris, G.E (2003). Effect of pathogenic mis-sense mutations in lamin A on its interaction with emerin in vivo. Journal of Cell Science 116 (14) : 3027-3035. ScholarBank@NUS Repository. https://doi.org/10.1242/jcs.00599
dc.identifier.issn00219533
dc.identifier.urihttps://scholarbank.nus.edu.sg/handle/10635/181122
dc.description.abstractMutations in lamin A/C can cause Emery-Dreifuss muscular dystrophy (EDMD) or a related cardiomyopathy (CMD1A). Using transfection of lamin-A/C-deficient fibroblasts, we have studied the effects of nine pathogenic mutations on the ability of laminin A to assemble normally and to localize emerin normally at the nuclear rim. Five mutations in the rod domain (L85R, N195K, E358K, M371K and R386K) affected the assembly of the lamina. With the exception of mutant L85R, all rod domain mutants induced the formation of large nucleoplasmic foci in about 10% of all nuclei. The presence of emerin in these foci suggests that the interaction of lamin A with emerin is not directly affected by the rod domain mutations. Three mutations in the tail region, R453W, W520S and R527P, might directly affect emerin binding by disrupting the structure of the putative emerin-binding site, because mutant lamin A localized normally to the nuclear rim but its ability to trap emerin was impaired. Nucleoplasmic foci rarely formed in these three cases (<2%) but, when they did so, emerin was absent, consistent with a direct effect of the mutations on emerin binding. The lipodystrophy mutation R482Q, which causes a different phenotype and is believed to act through an emerin-independent mechanism, was indistinguishable from wild-type in its localization and its ability to trap emerin at the nuclear rim. The novel hypothesis suggested by the data is that EDMD/CMD1A mutations in the tail domain of lamin A/C work by direct impairment of emerin interaction, whereas mutations in the rod region cause defective lamina assembly that might or might not impair emerin capture at the nuclear rim. Subtle effects on the function of the lamina-emerin complex in EDMD/CMD1A patients might be responsible for the skeletal and/or cardiac muscle phenotype.
dc.rightsAttribution 4.0 International
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/
dc.sourceUnpaywall 20201031
dc.subjectemerin
dc.subjectlamin A
dc.subjectmutant protein
dc.subjectanimal cell
dc.subjectarticle
dc.subjectbinding site
dc.subjectcardiomyopathy
dc.subjectcell nucleus
dc.subjectcontrolled study
dc.subjectEmery Dreifuss muscular dystrophy
dc.subjectfibroblast
dc.subjectgenetic transfection
dc.subjectheart muscle
dc.subjecthuman
dc.subjecthuman cell
dc.subjectin vivo study
dc.subjectlipodystrophy
dc.subjectmissense mutation
dc.subjectmouse
dc.subjectnonhuman
dc.subjectpathogenicity
dc.subjectphenotype
dc.subjectpriority journal
dc.subjectprotein assembly
dc.subjectprotein binding
dc.subjectprotein domain
dc.subjectprotein function
dc.subjectprotein interaction
dc.subjectprotein localization
dc.subjectprotein structure
dc.subjectskeletal muscle
dc.subjectwild type
dc.subjectAnimals
dc.subjectBinding Sites
dc.subjectCell Nucleus
dc.subjectCells, Cultured
dc.subjectCOS Cells
dc.subjectDNA, Complementary
dc.subjectElectroporation
dc.subjectEndoplasmic Reticulum
dc.subjectExons
dc.subjectHela Cells
dc.subjectHumans
dc.subjectImmunohistochemistry
dc.subjectLamin Type A
dc.subjectLipodystrophy
dc.subjectMembrane Proteins
dc.subjectMice
dc.subjectMice, Knockout
dc.subjectMuscle, Skeletal
dc.subjectMuscular Dystrophy, Emery-Dreifuss
dc.subjectMutation
dc.subjectMutation, Missense
dc.subjectMyocardium
dc.subjectNuclear Proteins
dc.subjectPhenotype
dc.subjectProtein Binding
dc.subjectProtein Structure, Tertiary
dc.subjectThymopoietins
dc.subjectTransfection
dc.subjectAnimalia
dc.typeArticle
dc.contributor.departmentBIOLOGICAL SCIENCES
dc.description.doi10.1242/jcs.00599
dc.description.sourcetitleJournal of Cell Science
dc.description.volume116
dc.description.issue14
dc.description.page3027-3035
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