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Architecture with GIDEON A Program for Design in Structural DNA Nanotechnology

机译:使用GIDEON进行结构设计这是一种结构DNA纳米技术的设计程序

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摘要

We present geometry based design strategies for DNA nanostructures. The strategies have been implemented with GIDEON – a Graphical Integrated Development Environment for OligoNucleotides. GIDEON has a highly flexible graphical user interface that facilitates the development of simple yet precise models, and the evaluation of strains therein. Models are built on a simple model of undistorted B-DNA double-helical domains. Simple point and click manipulations of the model allow the minimization of strain in the phosphate-backbone linkages between these domains and the identification of any steric clashes that might occur as a result. Detailed analysis of 3D triangles yields clear predictions of the strains associated with triangles of different sizes. We have carried out experiments that confirm that 3D triangles form well only when their geometrical strain is less than 4% deviation from the estimated relaxed structure. Thus geometry-based techniques alone, without energetic considerations, can be used to explain general trends in DNA structure formation. We have used GIDEON to build detailed models of double crossover and triple crossover molecules, evaluating the non-planarity associated with base tilt and junction mis-alignments. Computer modeling using a graphical user interface overcomes the limited precision of physical models for larger systems, and the limited interaction rate associated with earlier, command-line driven software.
机译:我们提出了基于几何学的DNA纳米结构设计策略。该策略已通过GIDEON(用于寡核苷酸的图形集成开发环境)实施。 GIDEON具有高度灵活的图形用户界面,可促进简单而精确的模型的开发以及其中的应变评估。模型建立在未扭曲的B-DNA双螺旋结构域的简单模型上。该模型的简单点击操作就可以使这些域之间的磷酸酯-骨干连接中的应变最小化,并可以识别由此可能发生的任何空间冲突。对3D三角形的详细分析可以清楚地预测与不同大小的三角形相关的应变。我们进行的实验证实,只有当3D三角形的几何应变与估计的松弛结构的偏差小于4%时,它们才能形成良好的三角形。因此,仅凭基于几何的技术,无需精力充沛的考虑,就可以用来解释DNA结构形成的一般趋势。我们已经使用GIDEON建立了双交叉和三交叉分子的详细模型,评估了与基极倾斜和结错位有关的非平面性。使用图形用户界面的计算机建模克服了大型系统物理模型的有限精度,以及与早期命令行驱动软件相关的有限交互速率。

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