...
首页> 外文期刊>Nucleic Acids Research >Design and synthesis of pleated DNA origami nanotubes with adjustable diameters
【24h】

Design and synthesis of pleated DNA origami nanotubes with adjustable diameters

机译:可调节直径的褶DNA折纸纳米管的设计与合成

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

DNA origami allows for the synthesis of nanoscale structures and machines with nanometre precision and high yields. Tubular DNA origami nanostructures are particularly useful because their geometry facilitates a variety of applications including nanoparticle encapsulation, the construction of artificial membrane pores and as structural scaffolds that can uniquely spatially arrange nanoparticles in circular, linear and helical arrays. Here we report a system of parametrization for the design of radially symmetric DNA origami nanotubes with adjustable diameter, length, crossover density, pleat angle and chirality. The system is implemented into a computational algorithm that provides a practical means to navigate the complex geometry of DNA origami nanotube design. We apply this in the design, synthesis and characterization of novel DNA origami nanotubes. These include structures with pleated walls where the same number of duplexes can form nanotubes with different diameters, and to vary the diameter within the same structure. We also construct nanotubes that can be reconfigured into different chiral shapes. Finally, we explore the effect of strain on the local and global geometry of DNA origami nanotubes and demonstrate how pleated walls can provide a strategy to rigidify nanotubes and to construct closely packed parallel duplexes.
机译:DNA折纸允许用纳米精度和高收益率合成纳米级结构和机器。管状DNA折纸纳米结构特别有用,因为它们的几何形状有助于各种应用,包括纳米粒子封装,人造膜孔的构造以及作为结构支架,可以在圆形,线性和螺旋阵列中唯一地布置纳米颗粒。在这里,我们报告了具有可调节直径,长度,交叉密度,褶皱角和手性的径向对称DNA折纸纳米管的参数化系统。该系统实现成计算算法,提供了一种实用的方法来导航DNA折纸纳米管设计的复杂几何体。我们在新型DNA折纸纳米管的设计,合成和表征中应用这一点。这些包括具有褶皱壁的结构,其中相同数量的双工可以形成具有不同直径的纳米管,并在相同结构内变化直径。我们还构造了可以重新配置为不同的手性形状的纳米管。最后,我们探讨了DNA折纸纳米管局部和全局几何形状的应变的影响,并证明了褶皱壁如何提供抗纳米管的策略并构建紧密堆积的平行双链体。

著录项

  • 来源
    《Nucleic Acids Research》 |2019年第22期|共13页
  • 作者单位

    UNSW Sydney Sch Med Sci EMBL Australia Node Single Mol Sci Kensington NSW 2052 Australia;

    UNSW Sydney Sch Phys Kensington NSW 2052 Australia;

    Univ Oxford Dept Chem Phys &

    Theoret Chem Lab South Parks Rd Oxford OX1 3QZ England;

    Univ Oxford Dept Chem Phys &

    Theoret Chem Lab South Parks Rd Oxford OX1 3QZ England;

    Osaka Univ Inst Prot Res Osaka Kansai 5650871 Japan;

    UNSW Sydney Electron Microscopy Unit Kensington NSW 2052 Australia;

    UNSW Sydney Sch Med Sci EMBL Australia Node Single Mol Sci Kensington NSW 2052 Australia;

    UNSW Sydney Sch Med Sci EMBL Australia Node Single Mol Sci Kensington NSW 2052 Australia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号