Resolution of multimeric forms of circular plasmids and chromosomes

Crozat, Estelle;Fournes, Florian;Cornet, François;Hallet, Bernard;Rousseau, Philippe
(2014) Plasmids: Biology and Impact in Biotechnology and Discovery — 157-173, published

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Authors
  • Crozat, EstelleUniversité de Toulouse
    Author
  • Fournes, FlorianUniversité de Toulouse
    Author
  • Cornet, FrançoisCNRS Toulouse
    Author
  • Author
  • Rousseau, PhilippeUniversité Toulouse
    Author
Abstract
One of the disadvantages of circular plasmids and chromosomes is their high sensitivity to rearrangements caused by homologous recombination. Odd numbers of crossing-over occurring during or after replication of a circular replicon result in the formation of a dimeric molecule in which the two copies of the replicon are fused. If they are not converted back to monomers, the dimers of replicons may fail to correctly segregate at the time of cell division. Resolution of multimeric forms of circular plasmids and chromosomes is mediated by site-specific recombination, and the enzymes that catalyze this type of reaction fall into two families of proteins: the serine and tyrosine recombinase families. Here we give an overview of the variety of site-specific resolution systems found on circular plasmids and chromosomes.
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Citations

Crozat, E., Fournes, F., Cornet, F., Hallet, B., & Rousseau, P. (2014). Resolution of multimeric forms of circular plasmids and chromosomes. In Tolmasky M, Alonso J (ed) (ed.), Plasmids: Biology and Impact in Biotechnology and Discovery (pp. 157-173). ASM press. https://doi.org/10.1128/microbiolspec.PLAS-0025-2014