An overview of single-molecule techniques and applications in the study of nucleic acid structure and function

Biochimie. 2023 Mar:206:1-11. doi: 10.1016/j.biochi.2022.09.014. Epub 2022 Sep 27.

Abstract

Nucleic acids are an indispensable component in all known life forms. The biological processes are regulated by Nucleic acids, which associate to form special high-order structures. since the high-level structures of nucleic acids are related to gene expression in cancer cells or viruses, it is very likely to become a potential drug target. Traditional biochemical methods are limited to distinguish the conformational distribution and dynamic transition process of single nucleic acid structure. The ligands based on the intermediate and transition states between different conformations are not designed by traditional biochemical methods. The single-molecule techniques enable real-time observation of the individual nucleic acid behavior due to its high resolution. Here, we introduce the application of single-molecule techniques in the study of small molecules to recognize nucleic acid structures, such as single-molecule FRET, magnetic tweezers, optical tweezers and atomic force microscopy. At the same time, we also introduce the specific advantages of single-molecule technology compared with traditional biochemical methods and some problems arisen in current research.

Keywords: Conformational distribution; Interaction between proteins and nucleic acid structures; Interaction between small molecules and nucleic acid structures; Nucleic acid structure; Single-molecule technology; Structural transformation.

Publication types

  • Review

MeSH terms

  • Microscopy, Atomic Force / methods
  • Molecular Conformation
  • Nanotechnology / methods
  • Nucleic Acid Conformation
  • Nucleic Acids*
  • Viruses*

Substances

  • Nucleic Acids