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Compiler-aided systematic construction of large-scale DNA strand displacement circuits using unpurified components

机译:使用未纯化组件的大型DNA链置换电路的编译器辅助系统构建

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摘要

Biochemical circuits made of rationally designed DNA molecules are proofs of concept for embedding control within complex molecular environments. They hold promise for transforming the current technologies in chemistry, biology, medicine and material science by introducing programmable and responsive behaviour to diverse molecular systems. As the transformative power of a technology depends on its accessibility, two main challenges are an automated design process and simple experimental procedures. Here we demonstrate the use of circuit design software, combined with the use of unpurified strands and simplified experimental procedures, for creating a complex DNA strand displacement circuit that consists of 78 distinct species. We develop a systematic procedure for overcoming the challenges involved in using unpurified DNA strands. We also develop a model that takes synthesis errors into consideration and semi-quantitatively reproduces the experimental data. Our methods now enable even novice researchers to successfully design and construct complex DNA strand displacement circuits.
机译:由合理设计的DNA分子组成的生化回路是将控制嵌入复杂分子环境中的概念证明。他们通过将可编程和响应行为引入各种分子系统,有望改变化学,生物学,医学和材料科学领域的当前技术。由于技术的变革能力取决于其可访问性,因此两个主要挑战是自动化设计过程和简单的实验程序。在这里,我们演示了电路设计软件的使用,结合未纯化链的使用和简化的实验程序,用于创建由78个不同物种组成的复杂DNA链置换电路。我们开发了一种系统的程序来克服使用未纯化的DNA链所涉及的挑战。我们还开发了一个模型,该模型考虑了综合误差并半定量复制了实验数据。现在,即使是新手研究人员,我们的方法也可以成功设计和构建复杂的DNA链置换电路。

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