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Position Accuracy of Gold Nanoparticles on DNA Origami Structures Studied with Small-angle X-ray Scattering

机译:金纳米粒子在DNA折纸结构上的小角X射线散射研究的位置精度

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摘要

DNA origami objects allow for accurate positioning of guest molecules in three dimensions. Validation and understanding of design strategies for particle attachment as well as analysis of specific particle arrangements are desirable. Small-angle X-ray scattering (SAXS) is suited to probe distances of nano-objects with sub-nanometer resolution at physiologically relevant conditions including pH and salt, and at varying temperatures. Here we show that the pair density distribution function (PDDF) obtained from an indirect Fourier transform of SAXS intensities in a model-free way allows to investigate prototypical DNA origami-mediated gold nanoparticle (AuNP) assemblies. We analyze the structure of three AuNP-dimers on a DNA origami block, an AuNP trimer constituted by those dimers, and a helical arrangement of nine AuNPs on a DNA origami cylinder. For the dimers, we compare the model-free PDDF and explicit modeling of the SAXS intensity data by superposition of scattering intensities of the scattering objects. The PDDF of the trimer is verified to be a superposition of its dimeric contributions, i.e. here AuNP-DNA origami assemblies were used as test boards underlining the validity of the PDDF analysis beyond pairs of AuNPs. We obtain information about AuNP distances with an uncertainty margin of 1.2 nm. This readout accuracy in turn can be used for high precision placement of AuNP by careful design of the AuNP attachment sites on the DNA-structure and by fine-tuning of the connector types.
机译:DNA折纸对象可以在三个维度上精确定位来宾分子。需要对粒子附着的设计策略进行验证和理解,以及对特定粒子排列的分析。小角度X射线散射(SAXS)适合在生理相关条件(包括pH值和盐)以及变化的温度下,以亚纳米分辨率探测纳米物体的距离。在这里,我们显示了从SAXS强度的间接傅里叶变换中以无模型的方式获得的对密度分布函数(PDDF),可以研究原型DNA折纸介导的金纳米粒子(AuNP)组件。我们分析DNA折纸块上的三个AuNP二聚体的结构,由那些二聚体构成的AuNP三聚体和DNA折纸圆柱体上的九个AuNP的螺旋排列。对于二聚体,我们通过叠加散射对象的散射强度来比较无模型的PDDF和SAXS强度数据的显式建模。验证了三聚体的PDDF是其二聚体贡献的叠加,即在此AuNP-DNA折纸组件被用作测试板,强调了PDDF分析的有效性超出了成对的AuNPs。我们获得有关AuNP距离的信息,不确定性裕度为1.2 nm。通过仔细设计DNA结构上的AuNP附着位点和微调连接器类型,此读出精度又可以用于AuNP的高精度放置。

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