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Control of macromolecular structure and function using covalently attached double-stranded DNA constraints

机译:使用共价连接的双链DNA约束条件控制大分子的结构和功能

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摘要

The biophysical properties of DNA suggest its use for applications beyond serving as the genetic material. Several recent reports describe the use of covalently attached double-stranded DNA for controlling the structures of other macromolecules such as protein and RNA. These exploitations of DNA rigidity are conceptually distinct from many other studies in the area of "DNA nanotechnology". Double-stranded DNA constraints provide a means of introducing selective tension onto other molecules. This should facilitate fundamental investigations of macromolecular folding landscapes and tertiary interactions, as well as allow study of the mechanotransduction of biochemical signals. Use of a DNA constraint as the key element of a sensor has already been demonstrated, and such applications will be enhanced by improvements in the signal readout methods. If practical challenges such as delivery and stability can be addressed, these new efforts may also enable development of selective sensors for in vivo applications.
机译:DNA的生物物理特性表明,它不仅可以用作遗传物质,还可以用于其他用途。最近的一些报道描述了使用共价连接的双链DNA来控制其他大分子(例如蛋白质和RNA)的结构。对DNA刚性的这些利用在概念上不同于“ DNA纳米技术”领域中的许多其他研究。双链DNA限制条件提供了将选择性张力引入其他分子的方法。这应该有助于对大分子折叠态势和第三级相互作用的基础研究,并允许研究生物化学信号的机械转导。已经证明了使用DNA约束作为传感器的关键元件,并且通过改善信号读出方法将增强此类应用。如果可以解决诸如传递和稳定性等实际挑战,那么这些新的努力也可能使体内应用选择性传感器的开发成为可能。

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  • 来源
    《Molecular BioSystems》 |2007年第1期|p.24-29|共6页
  • 作者

    Scott K. Silverman;

  • 作者单位

    Department of Chemistry, University of Illinois at Urbana-Champaign, 600 South Mathews Avenue, Urbana, Illinois 61801, USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
  • 关键词

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