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A Graphene Oxide center dot Streptavidin Complex for Biorecognition - Towards Affinity Purification

机译:用于生物识别的氧化石墨烯中心点链霉亲和素复合物 - 走向亲和纯化

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摘要

In our postgenomic era, understanding of protein-protein interactions by characterizing the structure of the corresponding protein complex is becoming increasingly important. An important problem is that many protein complexes are only stable for a few minutes. Dissociation will occur when using the typical, time-consuming purification methods such as tandem affinity purification and multiple chromatographic separations. Therefore, there is an urgent need for a quick and efficient protein-complex purification method for 3D structure characterization. The graphene oxide (GO)center dot streptavidin complex is prepared via a GO center dot biotin center dot streptavidin strategy and used for affinity purification The complex shows a strong biotin recognition capability and an excellent loading capacity. Capturing biotinylated DNA, fluorophores and Au nanoparticles on the GO center dot streptavidin complexes demonstrates the usefulness of the GO center dot streptavidin complex as a docking matrix for affinity purification. GO shows a high transparency towards electron beams, making it specifically well suited for direct imaging by electron microscopy. The captured protein complex can be separated via a filtration process or even via on-grid purification and used directly for single-particle analysis via cryo-electron microscopy. Therefore, the purification, sample preparation, and characterization are rolled into one single step.
机译:在我们的后基因组时代,通过表征相应蛋白质复合物的结构来理解蛋白质-蛋白质相互作用变得越来越重要。一个重要的问题是,许多蛋白质复合物只能稳定几分钟。当使用典型的、耗时的纯化方法(如串联亲和纯化和多次色谱分离)时,会发生解离。因此,迫切需要一种快速高效的蛋白质复合物纯化方法进行三维结构表征。氧化石墨烯(GO)中心点链霉亲和素复合物采用GO中心点生物素中心点链霉亲和素策略制备,用于亲和纯化,该复合物具有较强的生物素识别能力和优异的负载能力。在 GO 中心点链霉亲和素复合物上捕获生物素化 DNA、荧光团和 Au 纳米颗粒证明了 GO 中心点链霉亲和素复合物作为亲和纯化的对接基质的有用性。GO对电子束具有很高的透明度,使其特别适合通过电子显微镜进行直接成像。捕获的蛋白质复合物可以通过过滤过程甚至通过网格纯化进行分离,并通过冷冻电子显微镜直接用于单颗粒分析。因此,纯化、样品制备和表征都集中在一个步骤中。

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