Viscoelastic properties of vimentin compared with other filamentous biopolymer networks.

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Viscoelastic properties of vimentin compared with other filamentous biopolymer networks

The cytoplasm of vertebrate cells contains three distinct filamentous biopolymers, the microtubules, microfilaments, and intermediate filaments. The basic structural elements of these three filaments are linear polymers of the proteins tubulin, actin, and vimentin or another related intermediate filament protein, respectively. The viscoelastic properties of cytoplasmic filaments are likely to b...

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Desmin and vimentin intermediate filament networks: their viscoelastic properties investigated by mechanical rheometry.

We have investigated the viscoelastic properties of the cytoplasmic intermediate filament (IF) proteins desmin and vimentin. Mechanical measurements were supported by time-dependent electron microscopy studies of the assembly process under similar conditions. Network formation starts within 2 min, but it takes more than 30 min until equilibrium mechanical network strength is reached. Filament b...

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Viscoelastic Properties of Microtubule Networks

Microtubules are filamentous protein biopolymers found in eukaryotic cells. They form networks that guide active intracellular transport and support the overall cell structure. Microtubules are very rigid polymers, with persistence lengths as large as a millimeter. As such, they constitute an example of rodlike polymers, whose mechanical and rheological properties are as yet poorly understood. ...

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Motile Properties of Vimentin Intermediate Filament Networks in Living Cells

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ژورنال

عنوان ژورنال: Journal of Cell Biology

سال: 1991

ISSN: 0021-9525,1540-8140

DOI: 10.1083/jcb.113.1.155