Poppleton Erik, Bohlin Joakim, Matthies Michael, Sharma Shuchi, Zhang Fei, Šulc Petr
School of Molecular Sciences and Center for Molecular Design and Biomimetics, The Biodesign Institute, Arizona State University, 1001 South McAllister Avenue, Tempe, AZ 85281, USA.
Department of Physics, Clarendon Laboratory, University of Oxford, Parks Road, Oxford OX1 3PU, UK.
Nucleic Acids Res. 2020 Jul 9;48(12):e72. doi: 10.1093/nar/gkaa417.
This work seeks to remedy two deficiencies in the current nucleic acid nanotechnology software environment: the lack of both a fast and user-friendly visualization tool and a standard for structural analyses of simulated systems. We introduce here oxView, a web browser-based visualizer that can load structures with over 1 million nucleotides, create videos from simulation trajectories, and allow users to perform basic edits to DNA and RNA designs. We additionally introduce open-source software tools for extracting common structural parameters to characterize large DNA/RNA nanostructures simulated using the coarse-grained modeling tool, oxDNA, which has grown in popularity in recent years and is frequently used to prototype new nucleic acid nanostructural designs, model biophysics of DNA/RNA processes, and rationalize experimental results. The newly introduced software tools facilitate the computational characterization of DNA/RNA designs by providing multiple analysis scripts, including mean structures and structure flexibility characterization, hydrogen bond fraying, and interduplex angles. The output of these tools can be loaded into oxView, allowing users to interact with the simulated structure in a 3D graphical environment and modify the structures to achieve the required properties. We demonstrate these newly developed tools by applying them to design and analysis of a range of DNA/RNA nanostructures.
既缺乏快速且用户友好的可视化工具,又缺乏模拟系统结构分析的标准。我们在此介绍oxView,这是一种基于网络浏览器的可视化工具,它可以加载超过100万个核苷酸的结构,从模拟轨迹创建视频,并允许用户对DNA和RNA设计进行基本编辑。我们还引入了开源软件工具,用于提取常见的结构参数,以表征使用粗粒度建模工具oxDNA模拟的大型DNA/RNA纳米结构。近年来,oxDNA越来越受欢迎,常用于新核酸纳米结构设计的原型制作、DNA/RNA过程的生物物理建模以及对实验结果进行合理化分析。新引入的软件工具通过提供多种分析脚本,包括平均结构和结构灵活性表征、氢键磨损以及双链间角度分析,促进了DNA/RNA设计的计算表征。这些工具的输出可以加载到oxView中,允许用户在三维图形环境中与模拟结构进行交互,并修改结构以实现所需的特性。我们通过将这些新开发的工具应用于一系列DNA/RNA纳米结构的设计和分析来展示它们。