Nonlinear mechanics of lamin filaments and the meshwork topology build an emergent nuclear lamina

Author:

Sapra K. TanujORCID,Qin Zhao,Dubrovsky-Gaupp Anna,Aebi Ueli,Müller Daniel J.ORCID,Buehler Markus J.,Medalia OhadORCID

Abstract

AbstractThe nuclear lamina—a meshwork of intermediate filaments termed lamins—is primarily responsible for the mechanical stability of the nucleus in multicellular organisms. However, structural-mechanical characterization of lamin filaments assembled in situ remains elusive. Here, we apply an integrative approach combining atomic force microscopy, cryo-electron tomography, network analysis, and molecular dynamics simulations to directly measure the mechanical response of single lamin filaments in three-dimensional meshwork. Endogenous lamin filaments portray non-Hookean behavior – they deform reversibly at a few hundred picoNewtons and stiffen at nanoNewton forces. The filaments are extensible, strong and tough similar to natural silk and superior to the synthetic polymer Kevlar®. Graph theory analysis shows that the lamin meshwork is not a random arrangement of filaments but exhibits small-world properties. Our results suggest that lamin filaments arrange to form an emergent meshwork whose topology dictates the mechanical properties of individual filaments. The quantitative insights imply a role of meshwork topology in laminopathies.

Funder

Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung

United States Department of Defense | United States Navy | ONR | Office of Naval Research Global

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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