Spatiotemporal Coupling of DNA Supercoiling and Genomic Sequence Organization-A Timing Chain for the Bacterial Growth Cycle?

Biomolecules. 2022 Jun 15;12(6):831. doi: 10.3390/biom12060831.

Abstract

In this article we describe the bacterial growth cycle as a closed, self-reproducing, or autopoietic circuit, reestablishing the physiological state of stationary cells initially inoculated in the growth medium. In batch culture, this process of self-reproduction is associated with the gradual decline in available metabolic energy and corresponding change in the physiological state of the population as a function of "travelled distance" along the autopoietic path. We argue that this directional alteration of cell physiology is both reflected in and supported by sequential gene expression along the chromosomal OriC-Ter axis. We propose that during the E. coli growth cycle, the spatiotemporal order of gene expression is established by coupling the temporal gradient of supercoiling energy to the spatial gradient of DNA thermodynamic stability along the chromosomal OriC-Ter axis.

Keywords: DNA sequence organization; DNA supercoiling; bacterial growth cycle; growth phase-dependent gene expression; nucleoid-associated proteins.

Publication types

  • Review
  • Research Support, Non-U.S. Gov't

MeSH terms

  • Bacterial Proteins / metabolism
  • Chromosomes, Bacterial* / genetics
  • DNA / metabolism
  • DNA, Bacterial / genetics
  • DNA, Bacterial / metabolism
  • DNA, Superhelical* / genetics
  • DNA, Superhelical* / metabolism
  • Escherichia coli / metabolism
  • Gene Expression Regulation, Bacterial
  • Genomics

Substances

  • Bacterial Proteins
  • DNA, Bacterial
  • DNA, Superhelical
  • DNA