The crystallization of asymmetric patchy models for globular proteins in solution
Soft Condensed Matter
2015-06-12 v2 Materials Science
Biological Physics
Abstract
Asymmetric patchy particle models have recently been shown to describe the crystallization of small globular proteins with near quantitative accuracy. Here, we investigate how asymmetry in patch geometry and bond energy generally impact the phase diagram and nucleation dynamics of this family of soft matter models. We find the role of the geometry asymmetry to be weak, but the energy asymmetry to markedly interfere with the crystallization thermodynamics and kinetics. These results provide a rationale for the success and occasional failure of George and Wilson's proposal for protein crystallization conditions as well as physical guidance for developing more effective protein crystallization strategies.
Cite
@article{arxiv.1301.3349,
title = {The crystallization of asymmetric patchy models for globular proteins in solution},
author = {Diana Fusco and Patrick Charbonneau},
journal= {arXiv preprint arXiv:1301.3349},
year = {2015}
}
Comments
10 pages, 8 figures