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将功能化DNA纳米结构引入活细胞核。

Piggybacking functionalized DNA nanostructures into live cell nuclei.

作者信息

Roozbahani Golbarg M, Colosi Patricia, Oravecz Attila, Sorokina Elena M, Pfeifer Wolfgang, Shokri Siamak, Wei Yin, Didier Pascal, DeLuca Marcello, Arya Gaurav, Tora László, Lakadamyali Melike, Poirier Michael G, Castro Carlos E

机构信息

Department of Physics, The Ohio State University, Columbus, OH, 43210, USA.

Department of Mechanical and Aerospace Engineering, The Ohio State University, Columbus, OH, 43210, USA.

出版信息

bioRxiv. 2024 Jan 1:2023.12.30.573746. doi: 10.1101/2023.12.30.573746.

Abstract

DNA origami (DO) are promising tools for or applications including drug delivery; biosensing, detecting biomolecules; and probing chromatin sub-structures. Targeting these nanodevices to mammalian cell nuclei could provide impactful approaches for probing visualizing and controlling important biological processes in live cells. Here we present an approach to deliver DO strucures into live cell nuclei. We show that labelled DOs do not undergo detectable structural degradation in cell culture media or human cell extracts for 24 hr. To deliver DO platforms into the nuclei of human U2OS cells, we conjugated 30 nm long DO nanorods with an antibody raised against the largest subunit of RNA Polymerase II (Pol II), a key enzyme involved in gene transcription. We find that DOs remain structurally intact in cells for 24hr, including within the nucleus. Using fluorescence microscopy we demonstrate that the electroporated anti-Pol II antibody conjugated DOs are efficiently piggybacked into nuclei and exihibit sub-diffusive motion inside the nucleus. Our results reveal that functionalizing DOs with an antibody raised against a nuclear factor is a highly effective method for the delivery of nanodevices into live cell nuclei.

摘要

DNA折纸术(DO)是用于多种应用的有前景的工具,包括药物递送、生物传感(检测生物分子)以及探测染色质亚结构。将这些纳米装置靶向哺乳动物细胞核可为探测、可视化和控制活细胞中重要生物学过程提供有影响力的方法。在此,我们展示一种将DO结构递送至活细胞核的方法。我们表明,标记的DO在细胞培养基或人细胞提取物中24小时内不会发生可检测到的结构降解。为了将DO平台递送至人U2OS细胞的细胞核,我们将30纳米长的DO纳米棒与针对RNA聚合酶II(Pol II)最大亚基产生的抗体偶联,RNA聚合酶II是参与基因转录的关键酶。我们发现DO在细胞内24小时内保持结构完整,包括在细胞核内。使用荧光显微镜,我们证明电穿孔的抗Pol II抗体偶联的DO能有效地搭载进入细胞核,并在细胞核内表现出亚扩散运动。我们的结果表明,用针对核因子产生的抗体对DO进行功能化是将纳米装置递送至活细胞核的一种高效方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c56f/10802371/5615d1bacc5b/nihpp-2023.12.30.573746v1-f0001.jpg

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