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批量生产高质量石墨烯网格用于冷冻电镜:可溶性甲烷单加氧酶羟化酶的冷冻电镜结构。

Batch Production of High-Quality Graphene Grids for Cryo-EM: Cryo-EM Structure of Soluble Methane Monooxygenase Hydroxylase.

机构信息

Department of Biological Chemistry, University of Michigan, Ann Arbor, Michigan 48109, United States.

Department of Fine Chemistry, Seoul National University of Science and Technology, Seoul 139-743, Korea.

出版信息

ACS Nano. 2023 Mar 28;17(6):6011-6022. doi: 10.1021/acsnano.3c00463. Epub 2023 Mar 16.

Abstract

Cryogenic electron microscopy (cryo-EM) has become a widely used tool for determining the protein structure. Despite recent technical advances, sample preparation remains a major bottleneck for several reasons, including protein denaturation at the air-water interface, the presence of preferred orientations, nonuniform ice layers, etc. Graphene, a two-dimensional allotrope of carbon consisting of a single atomic layer, has recently gained attention as a near-ideal support film for cryo-EM that can overcome these challenges because of its superior properties, including mechanical strength and electrical conductivity. Here, we introduce a reliable, easily implemented, and reproducible method to produce 36 graphene-coated grids within 1.5 days. To demonstrate their practical application, we determined the cryo-EM structure of soluble methane monooxygenase hydroxylase (sMMOH) at resolutions of 2.9 and 2.5 Å using Quantifoil and graphene-coated grids, respectively. We found that the graphene-coated grid has several advantages, including a smaller amount of protein required and avoiding protein denaturation at the air-water interface. By comparing the cryo-EM structure of sMMOH with its crystal structure, we identified subtle yet significant geometrical changes at the nonheme diiron center, which may better indicate the active site configuration of sMMOH in the resting/oxidized state.

摘要

低温电子显微镜(cryo-EM)已成为确定蛋白质结构的常用工具。尽管最近取得了技术进步,但由于多种原因,样品制备仍然是一个主要的瓶颈,包括在气-水界面处的蛋白质变性、优先取向的存在、不均匀的冰层等。石墨烯是由单层原子组成的碳的二维同素异形体,由于其优异的性质,包括机械强度和导电性,最近作为一种克服这些挑战的理想支持膜而受到关注。在这里,我们介绍了一种可靠、易于实施和可重复的方法,可在 1.5 天内生产 36 个石墨烯涂层网格。为了证明它们的实际应用,我们使用 Quantifoil 和石墨烯涂层网格分别以 2.9 和 2.5 Å 的分辨率确定了可溶性甲烷单加氧酶羟化酶(sMMOH)的 cryo-EM 结构。我们发现石墨烯涂层网格具有几个优点,包括需要的蛋白质量更少,并且可以避免在气-水界面处的蛋白质变性。通过将 sMMOH 的 cryo-EM 结构与其晶体结构进行比较,我们确定了在非血红素双核中心存在细微但显著的几何变化,这可能更好地指示了 sMMOH 在静止/氧化状态下的活性位点构象。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ef4/10062032/bfefa5582d4f/nn3c00463_0001.jpg

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