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一种基于共价功能化石墨烯的用于冷冻电子显微镜蛋白质结构分析的新型支撑膜。

A New Support Film for Cryo Electron Microscopy Protein Structure Analysis Based on Covalently Functionalized Graphene.

作者信息

Nickl Philip, Hilal Tarek, Olal Daniel, Donskyi Ievgen Sergeevitch, Radnik Jörg, Ludwig Kai, Haag Rainer

机构信息

Institut für Chemie und Biochemie, Freie Universität Berlin, Takustr. 3, 14195, Berlin, Germany.

Forschungszentrum für Elektronenmikroskopie und Core Facility BioSupraMol, Institut für Chemie und Biochemie, Freie Universität Berlin, Fabeckstr. 36a, 14195, Berlin, Germany.

出版信息

Small. 2023 Feb;19(8):e2205932. doi: 10.1002/smll.202205932. Epub 2022 Dec 11.

Abstract

Protein adsorption at the air-water interface is a serious problem in cryogenic electron microscopy (cryoEM) as it restricts particle orientations in the vitrified ice-film and promotes protein denaturation. To address this issue, the preparation of a graphene-based modified support film for coverage of conventional holey carbon transmission electron microscopy (TEM) grids is presented. The chemical modification of graphene sheets enables the universal covalent anchoring of unmodified proteins via inherent surface-exposed lysine or cysteine residues in a one-step reaction. Langmuir-Blodgett (LB) trough approach is applied for deposition of functionalized graphene sheets onto commercially available holey carbon TEM grids. The application of the modified TEM grids in single particle analysis (SPA) shows high protein binding to the surface of the graphene-based support film. Suitability for high resolution structure determination is confirmed by SPA of apoferritin. Prevention of protein denaturation at the air-water interface and improvement of particle orientations is shown using human 20S proteasome, demonstrating the potential of the support film for structural biology.

摘要

在低温电子显微镜(cryoEM)中,蛋白质在气-水界面的吸附是一个严重问题,因为它限制了玻璃态冰膜中颗粒的取向并促进蛋白质变性。为了解决这个问题,本文介绍了一种用于覆盖传统多孔碳透射电子显微镜(TEM)网格的基于石墨烯的改性支撑膜的制备方法。石墨烯片的化学修饰能够通过固有的表面暴露赖氨酸或半胱氨酸残基,在一步反应中实现未修饰蛋白质的通用共价锚定。采用Langmuir-Blodgett(LB)槽法将功能化石墨烯片沉积到市售的多孔碳TEM网格上。改性TEM网格在单颗粒分析(SPA)中的应用表明,蛋白质与基于石墨烯的支撑膜表面具有高度结合。脱铁铁蛋白的SPA证实了其适用于高分辨率结构测定。使用人20S蛋白酶体展示了在气-水界面防止蛋白质变性和改善颗粒取向,证明了支撑膜在结构生物学中的潜力。

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