丝绸
拉马钱德兰地块
材料科学
二面角
结晶度
生物高聚物
结晶学
分子动力学
随机六聚体
纳米技术
纳米结构
高分子科学
化学
聚合物
蛋白质结构
计算化学
分子
复合材料
氢键
有机化学
生物化学
作者
Sinan Keten,Markus J. Buehler
摘要
Spider silk is an ultrastrong and extensible self-assembling biopolymer that outperforms the mechanical characteristics of many synthetic materials including steel. Here we report atomic-level structures that represent aggregates of MaSp1 proteins from the N. Clavipes silk sequence based on a bottom-up computational approach using replica exchange molecular dynamics. We discover that poly-alanine regions predominantly form distinct and orderly beta-sheet crystal domains while disorderly structures are formed by poly-glycine repeats, resembling 31-helices. These could be the molecular source of the large semicrystalline fraction observed in silks, and also form the basis of the so-called “prestretched” molecular configuration. Our structures are validated against experimental data based on dihedral angle pair calculations presented in Ramachandran plots, alpha-carbon atomic distances, as well as secondary structure content.
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