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任意二维和三维线框 DNA 折纸的快速原型制作。

Rapid prototyping of arbitrary 2D and 3D wireframe DNA origami.

机构信息

Department of Biological Engineering, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.

Division of Mechanical System Engineering, Jeonbuk National University, Jeonju-si, Jellabuk-do 54896, Republic of Korea.

出版信息

Nucleic Acids Res. 2021 Oct 11;49(18):10265-10274. doi: 10.1093/nar/gkab762.

Abstract

Wireframe DNA origami assemblies can now be programmed automatically from the top-down using simple wireframe target geometries, or meshes, in 2D and 3D, using either rigid, six-helix bundle (6HB) or more compliant, two-helix bundle (DX) edges. While these assemblies have numerous applications in nanoscale materials fabrication due to their nanoscale spatial addressability and high degree of customization, no easy-to-use graphical user interface software yet exists to deploy these algorithmic approaches within a single, standalone interface. Further, top-down sequence design of 3D DX-based objects previously enabled by DAEDALUS was limited to discrete edge lengths and uniform vertex angles, limiting the scope of objects that can be designed. Here, we introduce the open-source software package ATHENA with a graphical user interface that automatically renders single-stranded DNA scaffold routing and staple strand sequences for any target wireframe DNA origami using DX or 6HB edges, including irregular, asymmetric DX-based polyhedra with variable edge lengths and vertices demonstrated experimentally, which significantly expands the set of possible 3D DNA-based assemblies that can be designed. ATHENA also enables external editing of sequences using caDNAno, demonstrated using asymmetric nanoscale positioning of gold nanoparticles, as well as providing atomic-level models for molecular dynamics, coarse-grained dynamics with oxDNA, and other computational chemistry simulation approaches.

摘要

现在可以使用二维和三维的简单线框目标几何图形(网格),或者使用刚性六螺旋束(6HB)或更具弹性的双螺旋束(DX)边缘,从自上而下自动编程线框 DNA 折纸组装。尽管由于其纳米级空间可寻址性和高度定制性,这些组装在纳米级材料制造中有许多应用,但目前还没有易于使用的图形用户界面软件可在单个独立界面中部署这些算法方法。此外,以前由 DAEDALUS 启用的基于 3D DX 的自上而下序列设计仅限于离散的边缘长度和统一的顶点角度,限制了可以设计的对象的范围。在这里,我们引入了开源软件包 ATHENA,它具有图形用户界面,可以为任何使用 DX 或 6HB 边缘的目标线框 DNA 折纸自动渲染单链 DNA 支架布线和订书钉链序列,包括实验证明的具有可变边缘长度和顶点的不规则、不对称 DX 多面体,这大大扩展了可以设计的可能的 3D DNA 基组装集。ATHENA 还允许使用 caDNAno 进行外部编辑序列,使用不对称纳米级金纳米粒子定位进行了演示,以及为分子动力学、与 oxDNA 的粗粒度动力学以及其他计算化学模拟方法提供原子级模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb5f/8501967/4139262a36dc/gkab762fig1.jpg

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