高分子
聚电解质
涂层
低温电子显微
材料科学
高分子拥挤
纳米技术
显微镜
化学
聚合物
光学
生物化学
物理
复合材料
作者
D. Hrebik,Mária Gondová,Lucie Valentová,Tibor Füzik,Antonín Přidal,Jiří Nováček,Pavel Plevka
出处
期刊:
日期:2022-10-20
卷期号:78 (11): 1337-1346
被引量:4
标识
DOI:10.1107/s2059798322009299
摘要
Cryo-electron microscopy (cryo-EM) is one of the primary methods used to determine the structures of macromolecules and their complexes. With the increased availability of cryo-electron microscopes, the preparation of high-quality samples has become a bottleneck in the cryo-EM structure-determination pipeline. Macromolecules can be damaged during the purification or preparation of vitrified samples for cryo-EM, making them prone to binding to the grid support, to aggregation or to the adoption of preferential orientations at the air–water interface. Here, it is shown that coating cryo-EM grids with a negatively charged polyelectrolyte, such as single-stranded DNA, before applying the sample reduces the aggregation of macromolecules and improves their distribution. The single-stranded DNA-coated grids enabled the determination of high-resolution structures from samples that aggregated on conventional grids. The polyelectrolyte coating reduces the diffusion of macromolecules and thus may limit the negative effects of the contact of macromolecules with the grid support and blotting paper, as well as of the shear forces on macromolecules during grid blotting. Coating grids with polyelectrolytes can readily be employed in any laboratory dealing with cryo-EM sample preparation, since it is fast, simple, inexpensive and does not require specialized equipment.
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