In vitro single-molecule manipulation studies of viral DNA replication

Enzymes. 2021:49:115-148. doi: 10.1016/bs.enz.2021.09.001. Epub 2021 Oct 13.

Abstract

Faithfull replication of genomic information relies on the coordinated activity of the multi-protein machinery known as the replisome. Several constituents of the replisome operate as molecular motors that couple thermal and chemical energy to a mechanical task. Over the last few decades, in vitro single-molecule manipulation techniques have been used to monitor and manipulate mechanically the activities of individual molecular motors involved in DNA replication with nanometer, millisecond, and picoNewton resolutions. These studies have uncovered the real-time kinetics of operation of these biological systems, the nature of their transient intermediates, and the processes by which they convert energy to work (mechano-chemistry), ultimately providing new insights into their inner workings of operation not accessible by ensemble assays. In this chapter, we describe two of the most widely used single-molecule manipulation techniques for the study of DNA replication, optical and magnetic tweezers, and their application in the study of the activities of proteins involved in viral DNA replication.

Keywords: Magnetic tweezers; Mechano-chemistry; Optical tweezers; Real-time kinetics; Viral replisomes.

MeSH terms

  • DNA Replication*
  • DNA, Viral / genetics
  • Nanotechnology
  • Optical Tweezers*
  • Virus Replication

Substances

  • DNA, Viral