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冷冻电镜样品优化中的石墨烯。

Graphene in cryo-EM specimen optimization.

机构信息

Ministry of Education Key Laboratory of Protein Sciences, Beijing Frontier Research Center for Biological Structure, School of Life Sciences, Tsinghua University, Beijing 100084, China.

Ministry of Education Key Laboratory of Protein Sciences, Beijing Frontier Research Center for Biological Structure, School of Life Sciences, Tsinghua University, Beijing 100084, China; Tsinghua-Peking Joint Center for Life Sciences, Tsinghua University, Beijing 100084, China.

出版信息

Curr Opin Struct Biol. 2024 Jun;86:102823. doi: 10.1016/j.sbi.2024.102823. Epub 2024 Apr 29.

Abstract

Specimen preparation is a critical but challenging step in high-resolution cryogenic electron microscopy (cryo-EM) structural analysis of macromolecules. In the past decade, graphene has gained much recognition as the supporting substrate to optimize cryo-EM specimen preparation. It improves macromolecule embedding in ice, reduces beam-induced motion, while imposing negligible background noise. Various types of graphene-coated cryo-EM grids were implemented to improve the robustness and efficiency of specimen preparation. Graphene functionalization by different means has been proved specifically useful in addressing challenges related to the air-water interface (AWI), such as preferential orientation and sample denaturation. Graphene sandwich specimen preparation sets a new direction to explore in cryo-EM analysis of biological specimens. In this review, we discuss the current challenges and future prospects of graphene application in cryo-EM analysis of macromolecules.

摘要

标本制备是高分子进行高分辨率低温电子显微镜(cryo-EM)结构分析的关键但具有挑战性的步骤。在过去的十年中,石墨烯作为支持衬底来优化低温电子显微镜标本制备得到了广泛认可。它改善了大分子在冰中的嵌入,减少了束流诱导的运动,同时几乎没有产生背景噪声。各种类型的石墨烯涂覆 cryo-EM 网格已被实施以提高标本制备的稳健性和效率。通过不同方式的石墨烯功能化已被证明在解决与气-液界面(AWI)相关的挑战方面特别有用,例如优先取向和样品变性。石墨烯夹层标本制备为 cryo-EM 分析生物标本开辟了新的探索方向。在这篇综述中,我们讨论了石墨烯在 cryo-EM 分析高分子中的应用所面临的当前挑战和未来前景。

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