Issue 4, 2012

Comparative analysis of nanomechanics of protein filaments under lateral loading

Abstract

Using a combination of explicit solvent atomistic simulation and continuum theory, here we study the lateral deformation mechanics of three distinct protein structures: an amyloid fibril, a beta helix, and an alpha helix. We find that the two β-sheet rich structures – amyloid fibril and beta helix, with persistence lengths on the order of μm – are well described by continuum mechanical theory, but differ in the degree to which shear deformation affects the overall bending behavior. The alpha helical protein structure, however, with a persistence length on the order of one nanometer, does not conform to the continuum theory and its deformation is dominated by entropic elasticity due to significant fluctuations. This study provides fundamental insight into the nanomechanics of widely found protein motifs and insight into molecular-scale deformation mechanisms, as well as quantitative estimates of Young's modulus and shear modulus in agreement with experimental results.

Graphical abstract: Comparative analysis of nanomechanics of protein filaments under lateral loading

Article information

Article type
Paper
Submitted
07 Sep 2011
Accepted
31 Oct 2011
First published
22 Dec 2011

Nanoscale, 2012,4, 1177-1183

Comparative analysis of nanomechanics of protein filaments under lateral loading

M. Solar and M. J. Buehler, Nanoscale, 2012, 4, 1177 DOI: 10.1039/C1NR11260K

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