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Effect of Non-Lethal Selection on Spontaneous Revertants of Frameshift Mutations: The Escherichia coli hisF Case. | LitMetric

Effect of Non-Lethal Selection on Spontaneous Revertants of Frameshift Mutations: The Escherichia coli hisF Case.

Microorganisms

Laboratory of Microbial and Molecular Evolution, Department of Biology, University of Florence, Via Madonna del Piano 6, 50019 Sesto Fiorentino, Italy.

Published: March 2022

AI Article Synopsis

  • Microorganisms adapt to environmental changes through mutations, with a focus on the reversion of auxotrophic mutations, particularly frameshift mutations that cause amino acid auxotrophy being less understood.* -
  • This study aimed to analyze reverse mutations under various selective pressures and to examine the three-dimensional structures of revertant enzymes to see how they relate to growth capabilities.* -
  • A specific strain, FB182, with a histidine auxotrophy mutation was tested, revealing different mutations over time and selective conditions, showing a link between the mutations' structures and the enzymes' ability to function and support growth without histidine.*

Article Abstract

Microorganisms possess the potential to adapt to fluctuations in environmental parameters, and their evolution is driven by the continuous generation of mutations. The reversion of auxotrophic mutations has been widely studied; however, little is known about the reversion of frameshift mutations resulting in amino acid auxotrophy and on the structure and functioning of the protein encoded by the revertant mutated gene. The aims of this work were to analyze the appearance of reverse mutations over time and under different selective pressures and to investigate revertant enzymes' three-dimensional structures and their correlation with a different growth ability. FB182 strain, carrying the single nucleotide deletion resulting in histidine auxotrophy, was subjected to different selective pressures, and revertant mutants were isolated and characterized. The obtained results allowed us to identify different indels of different lengths located in different positions in the gene, and relations with the incubation time and the selective pressure applied were observed. Moreover, the structure of the different mutant proteins was consistent with the respective revertant ability to grow in absence of histidine, highlighting a correlation between the mutations and the catalytic activity of the mutated HisF enzyme.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9032791PMC
http://dx.doi.org/10.3390/microorganisms10040692DOI Listing

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