低温电子显微
聚合物
化学
纳米技术
软物质
高分子
结构生物学
自组装
材料科学
胶体
生物化学
物理化学
有机化学
作者
Fengbin Wang,O.M. Gnewou,Armin Solemanifar,Vincent P. Conticello,Edward H. Egelman
出处
期刊:Chemical Reviews
[American Chemical Society]
日期:2022-02-08
卷期号:122 (17): 14055-14065
被引量:27
标识
DOI:10.1021/acs.chemrev.1c00753
摘要
While the application of cryogenic electron microscopy (cryo-EM) to helical polymers in biology has a long history, due to the huge number of helical macromolecular assemblies in viruses, bacteria, archaea, and eukaryotes, the use of cryo-EM to study synthetic soft matter noncovalent polymers has been much more limited. This has mainly been due to the lack of familiarity with cryo-EM in the materials science and chemistry communities, in contrast to the fact that cryo-EM was developed as a biological technique. Nevertheless, the relatively few structures of self-assembled peptide nanotubes and ribbons solved at near-atomic resolution by cryo-EM have demonstrated that cryo-EM should be the method of choice for a structural analysis of synthetic helical filaments. In addition, cryo-EM has also demonstrated that the self-assembly of soft matter polymers has enormous potential for polymorphism, something that may be obscured by techniques such as scattering and spectroscopy. These cryo-EM structures have revealed how far we currently are from being able to predict the structure of these polymers due to their chaotic self-assembly behavior.
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