Literature DB >> 30194073

Selection and Plasmid Transfer Underlie Adaptive Mutation in Escherichia coli.

Sophie Maisnier-Patin1, John R Roth1.   

Abstract

In the Cairns-Foster adaptive mutation system, a +1 lac frameshift mutant of Escherichia coli is plated on lactose medium, where the nondividing population gives rise to Lac+ revertant colonies during a week under selection. Reversion requires the mutant lac allele to be located on a conjugative F'lac plasmid that also encodes the error-prone DNA polymerase, DinB. Rare plated cells with multiple copies of the mutant F'lac plasmid initiate the clones that develop into revertants under selection. These initiator cells arise before plating, and their extra lac copies allow them to divide on lactose and produce identical F'lac-bearing daughter cells that can mate with each other. DNA breaks can form during plasmid transfer and their recombinational repair can initiate rolling-circle replication of the recipient plasmid. This replication is mutagenic because the amplified plasmid encodes the error-prone DinB polymerase. A new model proposes that Lac+ revertants arise during mutagenic over-replication of the F'lac plasmid under selection. This mutagenesis is focused on the plasmid because the cell chromosome replicates very little. The outer membrane protein OmpA is essential for reversion under selection. OmpA helps cells conserve energy and may stabilize the long-term mating pairs that produce revertants.
Copyright © 2018 by the Genetics Society of America.

Entities:  

Keywords:  DNA repair; adaptive mutation; conjugation; copy number variation; mutagenesis; plasmid transfer; recombination; rolling-circle replication; selective gene amplification

Mesh:

Substances:

Year:  2018        PMID: 30194073      PMCID: PMC6218229          DOI: 10.1534/genetics.118.301347

Source DB:  PubMed          Journal:  Genetics        ISSN: 0016-6731            Impact factor:   4.562


  80 in total

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Authors:  P L Foster; J M Trimarchi
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Review 10.  An Overview of the Molecular Mechanisms of Recombinational DNA Repair.

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  2 in total

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2.  Increased copy number couples the evolution of plasmid horizontal transmission and plasmid-encoded antibiotic resistance.

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