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Sub–100-nm metafluorophores with digitally tunable optical properties self-assembled from DNA

机译:从DNA自行组装的具有数字可调光学特性的亚100纳米焦荧光团

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摘要

Fluorescence microscopy allows specific target detection down to the level of single molecules and has become an enabling tool in biological research. To transduce the biological information to an imageable signal, we have developed a variety of fluorescent probes, such as organic dyes or fluorescent proteins with different colors. Despite their success, a limitation on constructing small fluorescent probes is the lack of a general framework to achieve precise and programmable control of critical optical properties, such as color and brightness. To address this challenge, we introduce metafluorophores, which are constructed as DNA nanostructure–based fluorescent probes with digitally tunable optical properties. Each metafluorophore is composed of multiple organic fluorophores, organized in a spatially controlled fashion in a compact sub–100-nm architecture using a DNA nanostructure scaffold. Using DNA origami with a size of 90 × 60 nm2, substantially smaller than the optical diffraction limit, we constructed small fluorescent probes with digitally tunable brightness, color, and photostability and demonstrated a palette of 124 virtual colors. Using these probes as fluorescent barcodes, we implemented an assay for multiplexed quantification of nucleic acids. Additionally, we demonstrated the triggered in situ self-assembly of fluorescent DNA nanostructures with prescribed brightness upon initial hybridization to a nucleic acid target.
机译:荧光显微镜可以检测到单个分子水平的特定目标,并已成为生物学研究中的辅助工具。为了将生物学信息转化为可成像的信号,我们开发了多种荧光探针,例如有机染料或具有不同颜色的荧光蛋白。尽管取得了成功,但构建小型荧光探针的局限性在于缺少通用框架来实现对关键光学特性(例如颜色和亮度)的精确和可编程控制。为了应对这一挑战,我们介绍了间位荧光团,它是基于DNA纳米结构的荧光探针,具有数字可调的光学特性。每个超荧光团由多个有机荧光团组成,它们使用DNA纳米结构支架以紧凑的亚100纳米结构以空间受控的方式组织。使用大小为90×60 nm 2 (比光学衍射极限小得多)的DNA折纸,我们构建了具有数字可调亮度,颜色和光稳定性的小型荧光探针,并展示了124种虚拟颜色的调色板。使用这些探针作为荧光条形码,我们实施了一种用于核酸多重定量的检测方法。此外,我们展示了在与核酸靶标进行初始杂交后,具有规定亮度的荧光DNA纳米结构的触发原位自组装。

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