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DNA Origami Post-Processing by CRISPR-Cas12a

机译:CRISPR-CAS12A的DNA ORGAMI后处理

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Customizable nanostructures built through the DNA-origami technique hold tremendous promise in nanomaterial fabrication and biotechnology. Despite the cutting-edge tools for DNA-origami design and preparation, it remains challenging to separate structural components of an architecture built from-thus held together by-a continuous scaffold strand, which in turn limits the modularity and function of the DNA-origami devices. To address this challenge, here we present an enzymatic method to clean up and reconfigure DNA-origami structures. We target single-stranded (ss) regions of DNA-origami structures and remove them with CRISPR-Cas12a, a hyper-active ssDNA endonuclease without sequence specificity. We demonstrate the utility of this facile, selective post-processing method on DNA structures with various geometrical and mechanical properties, realizing intricate structures and structural transformations that were previously difficult to engineer. Given the biocompatibility of Cas12a-like enzymes, this versatile tool may be programmed in the future to operate functional nanodevices in cells.
机译:通过DNA-Origami技术构建的可定制纳米结构在纳米材料制造和生物技术中具有巨大的承诺。尽管具有用于DNA-折纸设计和制备的尖端工具,但是将由连续支架股线上构建的架构的结构部件分开 - 连续支架股线的结构部件仍然具有挑战性,这反过来限制了DNA-折纸的模块化和功能设备。为了解决这一挑战,我们在这里提出了一种清理和重新配置DNA-折纸结构的酶法。我们靶向DNA-折纸结构的单链(SS)区域,并用CRISPR-CAS12A将它们除去,无序列特异性的超活性SSDNA内切核酸酶。我们展示了这种容易的效用,在具有各种几何和机械性能的DNA结构上的选择性后处理方法,实现了先前难以工程的复杂结构和结构变换。鉴于CAS12A样酶的生物相容性,可以将来在将来编程该多功能工具以在细胞中操作功能纳米型。

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