Suppr超能文献

透射电子显微镜用支持体漂浮块制备样品支持膜。

Preparation of Sample Support Films in Transmission Electron Microscopy using a Support Floatation Block.

机构信息

Section of Structural & Synthetic Biology, Department of Infectious Diseases, Faculty of Medicine, Imperial College London, South Kensington Campus.

Section of Structural & Synthetic Biology, Department of Infectious Diseases, Faculty of Medicine, Imperial College London, South Kensington Campus;

出版信息

J Vis Exp. 2021 Apr 8(170). doi: 10.3791/62321.

Abstract

Structure determination by cryo-electron microscopy (cryo-EM) has rapidly grown in the last decade; however, sample preparation remains a significant bottleneck. Macromolecular samples are ideally imaged directly from random orientations in a thin layer of vitreous ice. However, many samples are refractory to this, and protein denaturation at the air-water interface is a common problem. To overcome such issues, support films-including amorphous carbon, graphene, and graphene oxide-can be applied to the grid to provide a surface which samples can populate, reducing the probability of particles experiencing the deleterious effects of the air-water interface. The application of these delicate supports to grids, however, requires careful handling to prevent breakage, airborne contamination, or extensive washing and cleaning steps. A recent report describes the development of an easy-to-use floatation block that facilitates wetted transfer of support films directly to the sample. Use of the block minimizes the number of manual handling steps required, preserving the physical integrity of the support film, and the time over which hydrophobic contamination can accrue, ensuring that a thin film of ice can still be generated. This paper provides step-by-step protocols for the preparation of carbon, graphene, and graphene oxide supports for EM studies.

摘要

通过冷冻电子显微镜(cryo-EM)进行结构测定在过去十年中迅速发展;然而,样品制备仍然是一个重大的瓶颈。理想情况下,大分子样品应直接从玻璃态冰的薄层中的任意方向进行成像。然而,许多样品对此具有抗性,并且蛋白质在气-水界面变性是一个常见的问题。为了克服这些问题,可以将支撑膜(包括无定形碳、石墨烯和氧化石墨烯)应用于网格上,以提供样品可以填充的表面,从而降低颗粒经历气-水界面有害影响的概率。然而,将这些脆弱的支撑物应用于网格需要小心处理,以防止断裂、空气传播污染或广泛的洗涤和清洁步骤。最近的一份报告描述了一种易于使用的漂浮块的开发,该漂浮块便于将支撑膜直接湿转移到样品上。该块的使用最大限度地减少了所需的手动处理步骤的数量,保持了支撑膜的物理完整性,以及疏水污染累积的时间,从而确保仍然可以生成一层薄冰。本文提供了用于 EM 研究的碳、石墨烯和氧化石墨烯支撑物的制备的分步协议。

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