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Intermediate filaments: primary determinants of cell architecture and plasticity
Harald Herrmann, Sergei V. Strelkov, Peter Burkhard, Ueli Aebi
Harald Herrmann, Sergei V. Strelkov, Peter Burkhard, Ueli Aebi
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Intermediate filaments: primary determinants of cell architecture and plasticity

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Abstract

Intermediate filaments (IFs) are major constituents of the cytoskeleton and nuclear boundary in animal cells. They are of prime importance for the functional organization of structural elements. Depending on the cell type, morphologically similar but biochemically distinct proteins form highly viscoelastic filament networks with multiple nanomechanical functions. Besides their primary role in cell plasticity and their established function as cellular stress absorbers, recently discovered gene defects have elucidated that structural alterations of IFs can affect their involvement both in signaling and in controlling gene regulatory networks. Here, we highlight the basic structural and functional properties of IFs and derive a concept of how mutations may affect cellular architecture and thereby tissue construction and physiology.

Authors

Harald Herrmann, Sergei V. Strelkov, Peter Burkhard, Ueli Aebi

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Figure 7

Tearing and reduction in diameter of mature IFs as observed (A) on an electron microscopic grid and (B) by atomic force microscopy.

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Tearing and reduction in diameter of mature IFs as observed (A) on an el...
(C) Schematic description of the filament rupture. The gray disk depicts the atomic force microscopy tip tearing on a filament (black bar). The bottom diagram illustrates the force-displacement curve corresponding to the 5 phases shown in the upper panel. A and B were reproduced with permission from Journal of molecular biology (125). Scale bars: 100 nm.

Copyright © 2026 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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