The biological function of an insect antifreeze protein simulated by molecular dynamics

被引:93
|
作者
Kuiper, Michael J. [1 ]
Morton, Craig J. [2 ]
Abraham, Sneha E. [3 ]
Gray-Weale, Angus [3 ]
机构
[1] Univ Melbourne, Victorian Life Sci Computat Initiat, Carlton, Vic 3053, Australia
[2] St Vincents Inst Med Res, ACRF Rational Drug Discovery Ctr, Fitzroy, Vic 3065, Australia
[3] Univ Melbourne, Sch Chem, Melbourne, Vic, Australia
来源
ELIFE | 2015年 / 4卷
基金
澳大利亚研究理事会;
关键词
ICE GROWTH-INHIBITION; WINTER FLOUNDER; BETA-HELIX; COMPUTER-SIMULATION; ICE/WATER INTERFACE; CRYSTAL-STRUCTURE; WATER INTERFACE; BINDING; MECHANISM; POLYPEPTIDE;
D O I
10.7554/eLife.05142
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Antifreeze proteins (AFPs) protect certain cold-adapted organisms from freezing to death by selectively adsorbing to internal ice crystals and inhibiting ice propagation. The molecular details of AFP adsorption-inhibition is uncertain but is proposed to involve the Gibbs-Thomson effect. Here we show by using unbiased molecular dynamics simulations a protein structure-function mechanism for the spruce budworm Choristoneura fumiferana AFP, including stereo-specific binding and consequential melting and freezing inhibition. The protein binds indirectly to the prism ice face through a linear array of ordered water molecules that are structurally distinct from the ice. Mutation of the ice binding surface disrupts water-ordering and abolishes activity. The adsorption is virtually irreversible, and we confirm the ice growth inhibition is consistent with the Gibbs-Thomson law.
引用
收藏
页数:14
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