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一种用于计算核酸器件中反应枚举的几何框架。

A geometric framework for reaction enumeration in computational nucleic acid devices.

机构信息

Department of Computer Science, University of New Mexico, Albuquerque, NM, USA.

Department of Chemical and Biological Engineering, University of New Mexico, Albuquerque, NM, USA.

出版信息

J R Soc Interface. 2023 Nov;20(208):20230259. doi: 10.1098/rsif.2023.0259. Epub 2023 Nov 15.

Abstract

Cascades of DNA strand displacement reactions enable the design of potentially large circuits with complex behaviour. Computational modelling of such systems is desirable to enable rapid design and analysis. In previous work, the expressive power of graph theory was used to enumerate reactions implementing strand displacement across a wide range of complex structures. However, coping with the rich variety of possible graph-based structures required enumeration rules with complicated side-conditions. This paper presents an alternative approach to tackle the problem of enumerating reactions at domain level involving complex structures by integrating with a geometric constraint solving algorithm. The rule sets from previous work are simplified by replacing side-conditions with a general check on the geometric plausibility of structures generated by the enumeration algorithm. This produces a highly general geometric framework for reaction enumeration. Here, we instantiate this framework to solve geometric constraints by a structure sampling approach in which we randomly generate sets of coordinates and check whether they satisfy all the constraints. We demonstrate this system by applying it to examples from the literature where molecular geometry plays an important role, including DNA hairpin and remote toehold reactions. This work therefore enables integration of reaction enumeration and structural modelling.

摘要

DNA 链置换反应级联使设计具有复杂行为的潜在大型电路成为可能。为了实现快速设计和分析,对这类系统进行计算建模是可取的。在之前的工作中,图论的表达能力被用于枚举在广泛的复杂结构中实现链置换的反应。然而,为了应对可能的基于图的结构的丰富多样性,需要使用带有复杂附加条件的枚举规则。本文提出了一种替代方法,通过与几何约束求解算法集成,在涉及复杂结构的域级别上解决反应枚举问题。通过用枚举算法生成的结构的几何合理性的一般性检查来替换附加条件,从而简化了之前工作中的规则集。这为反应枚举生成了一个高度通用的几何框架。在这里,我们通过一种结构抽样方法来实例化这个框架来解决几何约束,其中我们随机生成坐标集,并检查它们是否满足所有约束。我们通过将其应用于文献中分子几何起重要作用的示例来证明这个系统,包括 DNA 发夹和远程结合反应。因此,这项工作实现了反应枚举和结构建模的集成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3eb7/10645505/49547a84098f/rsif20230259f01.jpg

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