Theory of active self-organization of dense nematic structures in the actin cytoskeleton

Author:

Mirza Waleed12,Corato Marco De3,Pensalfini Marco1,Vilanova Guillermo1,Torres-Sànchez Alejandro145,Arroyo Marino146

Affiliation:

1. Universitat Politècnica de Catalunya BarcelonaTech

2. Barcelona Graduate School of Mathematics (BGSMath)

3. Aragon Institute of Engineering Research (I3A), University of Zaragoza

4. Institute for Bioengineering of Catalonia (IBEC), The Barcelona Institute of Science and Technology (BIST)

5. European Molecular Biology Laboratory

6. Centre Internacional de Mètodes Numèrics en Enginyeria (CIMNE)

Abstract

The actin cytoskeleton is remarkably adaptable and multifunctional. It often organizes into nematic bundles such as contractile rings or stress fibers. However, how a uniform and isotropic actin gel self-organizes into dense nematic bundles is not fully understood. Here, using an active gel model accounting for nematic order and density variations, we identify an active patterning mechanism leading to localized dense nematic structures. Linear stability analysis and nonlinear finite element simulations establish the conditions for nematic bundle self-assembly and how active gel parameters control the architecture, orientation, connectivity and dynamics of self-organized patterns. Finally, we substantiate with discrete network simulations the main requirements for nematic bundle formation according to our theory, namely increased active tension perpendicular to the nematic direction and generalized active forces conjugate to nematic order. Our work portrays actin gels a reconfigurable active materials with a spontaneous tendency to develop patterns of dense nematic bundles.

Publisher

eLife Sciences Publications, Ltd

Reference72 articles.

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