A Laboratory Model for Virus Particle Nanoindentation

Author:

Thompson William C.1,Cattani Angela J.1,Lee Olive,Ma Xiang1,Tsvetkova Irina B.1,Dragnea Bogdan1

Affiliation:

1. Department of Chemistry, Indiana University, Bloomington, IN 47405, USA

Abstract

ABSTRACT Self-organization is ubiquitous in biology, with viruses providing an excellent illustration of bioassemblies being much more than the sum of their parts. Following nature's lead, molecular self-assembly has emerged as a new synthetic strategy in the past 3 decades or so. Self-assembly approaches promise to generate complex supramolecular architectures having molecular weights of 0.5 to 100 MDa and collective properties determined by the interplay between structural organization and composition. However, biophysical methods specific to mesoscopic self-assembly, and presentations of the challenges they aim to overcome, remain underrepresented in the educational laboratory curriculum. We present here a simple but effective model for laboratory instruction that introduces students to the world of intermolecular forces and virus assembly, and to a cutting-edge technology, atomic force microscopy nanoindentation, which is able to measure the mechanical properties of single virus shells in vitro. In addition, the model illustrates the important idea that, at nanoscale, phenomena often have an inherent interdisciplinary character.

Publisher

Biophysical Society

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Modelling virus contact mechanics under atomic force imaging conditions;Applicable Analysis;2022-02-26

2. Virus Mechanics under Molecular Crowding;The Journal of Physical Chemistry B;2021-02-12

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