Group I introns in Staphylococcus bacteriophages

Author:

Lavigne Rob1,Vandersteegen Katrien2

Affiliation:

1. Katholieke Universiteit Leuven, Department of Biosystems, Kasteelpark Arenberg 21, Bus 2462, Leuven, Belgium.

2. Katholieke Universiteit Leuven, Department of Biosystems, Kasteelpark Arenberg 21, Bus 2462, Leuven, Belgium

Abstract

The abundance of group I introns, intragenic RNA sequences capable of self-splicing, in Gram-positive bacteriophage genomes, is illustrated by various new group I introns recently described in Staphylococcus phage genomes. These introns were found to interrupt DNA metabolism genes as well as late genes. These group I introns often code for homing endonucleases, which promote lateral transfer of group I introns, thereby enabling spread through a population. Homing endonucleases encoded by group I introns in Staphylococcus phage genomes were predicted to belong to the GIY-YIG, LAGLIDADG, HNH or EDxHD family of endonucleases. The group I intron distribution in Staphylococcus phage genomes exemplifies the homology between these introns as well as the encoded endonucleases. Despite several suggested functions, the role of group I introns in bacteriophages remains unclear or might be nonexistent. However, transcriptome analysis might provide additional information to elucidate the possible purpose of group I introns in phage genomes.

Publisher

Future Medicine Ltd

Subject

Virology

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