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抗原触发的 DNA 纳米器件逻辑门控。

Antigen-Triggered Logic-Gating of DNA Nanodevices.

机构信息

Laboratory for Biomolecular Nanotechnology, Physics Department, Technical University of Munich, Garching near Munich 85748, Germany.

Munich Institute of Biomedical Engineering, Technical University of Munich, Garching near Munich 85748, Germany.

出版信息

J Am Chem Soc. 2021 Dec 29;143(51):21630-21636. doi: 10.1021/jacs.1c09967. Epub 2021 Dec 20.

Abstract

Synthetic nanoscale devices that reconfigure dynamically in response to physiological stimuli could offer new avenues for diagnostics and therapy. Here, we report a strategy for controlling the state of DNA nanodevices based on sensing antigens with IgG antibodies. To this end, we use IgG antibodies as structural elements to kinetically trap reconfigurable DNA origami structures in metastable states. Addition of soluble antigens displace the IgGs from the objects and triggers reconfiguration. We demonstrate this mechanism by antigen-triggered disassembly of DNA origami shells for two different IgGs and their cognate antigens, and we determined the corresponding dose response curves. We also describe the logic-gated actuation of DNA objects with combinations of antigens, as demonstrated with AND-type shells that disassemble only when two different antigens are detected simultaneously. We apply our system for the antigen-triggered release of molecular payload as exemplified by the release of virus particles that we loaded into the DNA origami shells. We expect our approach to be applicable in many types of DNA nanostructures and with many other IgG-antigen combinations.

摘要

基于 IgG 抗体感应抗原的策略,用于控制 DNA 纳米器件的状态。为此,我们使用 IgG 抗体作为结构元件,通过动力学将可重构 DNA 折纸结构捕获在亚稳态中。添加可溶性抗原会将 IgGs 从物体上置换下来,并触发其重新配置。我们通过两种不同 IgG 及其同源抗原引发的 DNA 折纸壳的抗原触发的组装/拆卸来证明这种机制,并确定了相应的剂量反应曲线。我们还描述了通过抗原组合进行逻辑门控的 DNA 物体的致动,这可以通过 AND 型外壳来证明,只有当同时检测到两种不同的抗原时,该外壳才会进行组装/拆卸。我们应用我们的系统进行抗原触发的分子有效负载的释放,例如我们将病毒颗粒装载到 DNA 折纸壳中。我们预计我们的方法适用于许多类型的 DNA 纳米结构和许多其他 IgG-抗原组合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9cc2/8719334/85147276fcba/ja1c09967_0001.jpg

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