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独立 DNA 折纸超晶格促进冷冻电镜观察膜囊泡。

Free-Standing DNA Origami Superlattice to Facilitate Cryo-EM Visualization of Membrane Vesicles.

机构信息

Université Paris Cité, CNRS, CiTCoM, F-75006 Paris, France.

Université de Montpellier, CNRS, INSERM, Centre de Biologie Structurale, F-34000 Montpellier, France.

出版信息

J Am Chem Soc. 2024 May 15;146(19):12925-12932. doi: 10.1021/jacs.3c07328. Epub 2024 May 1.

Abstract

Technological breakthroughs in cryo-electron microscopy (cryo-EM) methods open new perspectives for highly detailed structural characterizations of extracellular vesicles (EVs) and synthetic liposome-protein assemblies. Structural characterizations of these vesicles in solution under a nearly native hydrated state are of great importance to decipher cell-to-cell communication and to improve EVs' application as markers in diagnosis and as drug carriers in disease therapy. However, difficulties in preparing holey carbon cryo-EM grids with low vesicle heterogeneities, at low concentration and with kinetic control of the chemical reactions or assembly processes, have limited cryo-EM use in the EV study. We report a straightforward membrane vesicle cryo-EM sample preparation method that assists in circumventing these limitations by using a free-standing DNA-affinity superlattice for covering holey carbon cryo-EM grids. Our approach uses DNA origami to self-assemble to a solution-stable and micrometer-sized ordered molecular template in which structure and functional properties can be rationally controlled. We engineered the template with cholesterol-binding sites to specifically trap membrane vesicles. The advantages of this DNA-cholesterol-affinity lattice (DCAL) include (1) local enrichment of artificial and biological vesicles at low concentration and (2) isolation of heterogeneous cell-derived membrane vesicles (exosomes) from a prepurified pellet of cell culture conditioned medium on the grid.

摘要

冷冻电子显微镜(cryo-EM)方法的技术突破为细胞外囊泡(EVs)和合成脂质体-蛋白组装体的高度详细结构特征提供了新的视角。在近乎天然水合状态下对这些囊泡在溶液中的结构特征进行研究对于破译细胞间通讯以及提高 EVs 作为诊断标志物和疾病治疗中药物载体的应用具有重要意义。然而,在低浓度下制备具有低囊泡异质性、具有动力学控制化学反应或组装过程的有孔碳 cryo-EM 网格的困难限制了 cryo-EM 在 EV 研究中的应用。我们报告了一种简单的膜囊泡 cryo-EM 样品制备方法,该方法使用独立式 DNA 亲和力超晶格覆盖有孔碳 cryo-EM 网格,有助于克服这些限制。我们的方法使用 DNA 折纸术自组装成一种在溶液中稳定且具有微米级有序的分子模板,其中结构和功能特性可以得到合理控制。我们设计了该模板,使其具有胆固醇结合位点,以特异性捕获膜囊泡。这种 DNA-胆固醇亲和晶格(DCAL)的优点包括:(1)在低浓度下局部富集人工和生物囊泡;(2)在网格上从预纯化的细胞培养条件培养基沉淀中分离出异质的细胞衍生膜囊泡(外泌体)。

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