Evolution of the SpoIISABC Toxin-Antitoxin-Antitoxin System in Bacilli.

Toxins (Basel)

Institute of Molecular Biology, Slovak Academy of Sciences, 845 51 Bratislava 45, Slovakia.

Published: June 2016

AI Article Synopsis

  • The SpoIISABC system in bacteria, first found in Bacillus subtilis, includes a toxic protein (SpoIISA) and two neutralizing antitoxins (SpoIISB and SpoIISC).
  • A bioinformatics analysis explores how these genes are distributed across different species, identifying conserved regions and relationships between them.
  • This system is core to the Bacillus genus but can also be found in non-Bacillus species due to horizontal gene transfer, with SpoIISB and SpoIISC evolving from gene duplications in separate lineages.

Article Abstract

Programmed cell death in bacteria is generally associated with two-component toxin-antitoxin systems. The SpoIISABC system, originally identified in Bacillus subtilis, consists of three components: a SpoIISA toxin and the SpoIISB and SpoIISC antitoxins. SpoIISA is a membrane-bound protein, while SpoIISB and SpoIISC are small cytosolic antitoxins, which are able to bind SpoIISA and neutralize its toxicity. In the presented bioinformatics analysis, a taxonomic distribution of the genes of the SpoIISABC system is investigated; their conserved regions and residues are identified; and their phylogenetic relationships are inferred. The SpoIISABC system is part of the core genome in members of the Bacillus genus of the Firmicutes phylum. Its presence in some non-bacillus species is likely the result of horizontal gene transfer. The SpoIISB and SpoIISC antitoxins originated by gene duplications, which occurred independently in the B. subtilis and B. cereus lineages. In the B. cereus lineage, the SpoIIS module is present in two different architectures.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4926146PMC
http://dx.doi.org/10.3390/toxins8060180DOI Listing

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