Journal of The Royal Society Interface · 2005 · 92 citations · 22 references
EngineeringNuclear StructureNuclear LaminaMolecular BiologyCytoskeletonContinuum MechanicSoft MatterImage AnalysisElasticity (Physics)MechanicsBiomechanicsNuclear EnvelopeBiophysicsMechanobiologyNonlinear ElasticityPhysicsNuclear OrganizationSolid MechanicsCell BiomechanicsCell BiologyCellular StructureMedicineMechanics Of Materials
Underlying the nuclear envelope (NE) of most eukaryotic cells is the nuclear lamina, a meshwork consisting largely of coiled-coil nuclear intermediate filament proteins that play a critical role in nuclear organization and gene expression, and are vital for the structural stability of the NE/nucleus. By confocal microscopy and micromanipulation of the NE in living cells and isolated nuclei, we show that the NE undergoes deformations without large-scale rupture and maintains structural stability when exposed to mechanical stress. In conjunction with image analysis, we have developed theory for a two-dimensional elastic material to quantify NE elastic behaviour. We show that the NE is elastic and exhibits characteristics of a continuous two-dimensional solid, including connections between lamins and the embedded nuclear pore complexes. Correlating models of NE lateral organization to the experimental findings indicates a heterogeneous lateral distribution of NE components on a mesoscopic scale.
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Non-linear elastic deformations
Ray W. Ogden · Engineering Analysis · 1984 · 1.5K citations
The nuclear lamina is a meshwork of intermediate-type filaments
Ueli Aebi, Julie Cohn, Loren Buhle et al. · Nature · 1986 · 975 citations