Literature DB >> 19401336

Mechanosensing in actin stress fibers revealed by a close correlation between force and protein localization.

Julien Colombelli1, Achim Besser, Holger Kress, Emmanuel G Reynaud, Philippe Girard, Emmanuel Caussinus, Uta Haselmann, John V Small, Ulrich S Schwarz, Ernst H K Stelzer.   

Abstract

The mechanics of the actin cytoskeleton have a central role in the regulation of cells and tissues, but the details of how molecular sensors recognize deformations and forces are elusive. By performing cytoskeleton laser nanosurgery in cultured epithelial cells and fibroblasts, we show that the retraction of stress fibers (SFs) is restricted to the proximity of the cut and that new adhesions form at the retracting end. This suggests that SFs are attached to the substrate. A new computational model for SFs confirms this hypothesis and predicts the distribution and propagation of contractile forces along the SF. We then analyzed the dynamics of zyxin, a focal adhesion protein present in SFs. Fluorescent redistribution after laser nanosurgery and drug treatment shows a high correlation between the experimentally measured localization of zyxin and the computed localization of forces along SFs. Correlative electron microscopy reveals that zyxin is recruited very fast to intermediate substrate anchor points that are highly tensed upon SF release. A similar acute localization response is found if SFs are mechanically perturbed with the cantilever of an atomic force microscope. If actin bundles are cut by nanosurgery in living Drosophila egg chambers, we also find that zyxin redistribution dynamics correlate to force propagation and that zyxin relocates at tensed SF anchor points, demonstrating that these processes also occur in living organisms. In summary, our quantitative analysis shows that force and protein localization are closely correlated in stress fibers, suggesting a very direct force-sensing mechanism along actin bundles.

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Year:  2009        PMID: 19401336     DOI: 10.1242/jcs.042986

Source DB:  PubMed          Journal:  J Cell Sci        ISSN: 0021-9533            Impact factor:   5.285


  108 in total

1.  Drosophila morphogenesis: tissue force laws and the modeling of dorsal closure.

Authors:  Anita T Layton; Yusuke Toyama; Guo-Qiang Yang; Glenn S Edwards; Daniel P Kiehart; Stephanos Venakides
Journal:  HFSP J       Date:  2009-12-15

2.  Optimization of traction force microscopy for micron-sized focal adhesions.

Authors:  Jonathan Stricker; Benedikt Sabass; Ulrich S Schwarz; Margaret L Gardel
Journal:  J Phys Condens Matter       Date:  2010-05-19       Impact factor: 2.333

3.  Dissecting regional variations in stress fiber mechanics in living cells with laser nanosurgery.

Authors:  Kandice Tanner; Aaron Boudreau; Mina J Bissell; Sanjay Kumar
Journal:  Biophys J       Date:  2010-11-03       Impact factor: 4.033

4.  The cytoskeletal regulator zyxin is required for viability in Drosophila melanogaster.

Authors:  Patricia J Renfranz; Elizabeth Blankman; Mary C Beckerle
Journal:  Anat Rec (Hoboken)       Date:  2010-09       Impact factor: 2.064

5.  Friction-controlled traction force in cell adhesion.

Authors:  Tilo Pompe; Martin Kaufmann; Maria Kasimir; Stephanie Johne; Stefan Glorius; Lars Renner; Manfred Bobeth; Wolfgang Pompe; Carsten Werner
Journal:  Biophys J       Date:  2011-10-19       Impact factor: 4.033

6.  Role of focal adhesions and mechanical stresses in the formation and progression of the lamellipodium-lamellum interface [corrected].

Authors:  Tom Shemesh; Alexander B Verkhovsky; Tatyana M Svitkina; Alexander D Bershadsky; Michael M Kozlov
Journal:  Biophys J       Date:  2009-09-02       Impact factor: 4.033

7.  Single-cell response to stiffness exhibits muscle-like behavior.

Authors:  Démosthène Mitrossilis; Jonathan Fouchard; Axel Guiroy; Nicolas Desprat; Nicolas Rodriguez; Ben Fabry; Atef Asnacios
Journal:  Proc Natl Acad Sci U S A       Date:  2009-10-05       Impact factor: 11.205

Review 8.  Tissue remodelling through branching morphogenesis.

Authors:  Markus Affolter; Rolf Zeller; Emmanuel Caussinus
Journal:  Nat Rev Mol Cell Biol       Date:  2009-12       Impact factor: 94.444

9.  α-actinin1 and 4 tyrosine phosphorylation is critical for stress fiber establishment, maintenance and focal adhesion maturation.

Authors:  Yunfeng Feng; Hai Ngu; Shannon K Alford; Michael Ward; Frank Yin; Gregory D Longmore
Journal:  Exp Cell Res       Date:  2013-02-27       Impact factor: 3.905

Review 10.  LIM proteins in actin cytoskeleton mechanoresponse.

Authors:  M A Smith; L M Hoffman; M C Beckerle
Journal:  Trends Cell Biol       Date:  2014-06-02       Impact factor: 20.808

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