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Kohm, K.

Publications and source records attributed to Kohm, K..

2 recordsLinked to original sources

Structural and functional analysis of YopR and identification of an additional key component of the SPβ phage lysis-lysogeny management system

Prophages need to tightly control their lifestyle to either be maintained within the host genome or enter the lytic cycle. The SP{beta} prophage present in the genome of Bacillus subtilis 168 was recently shown to possess an arbitrium system defining its replication stage. Using an historic B. subtilis strain harboring the heat-sensitive SP{beta} c2 mutant, we analyzed a key component of the lysis-lysogeny decision system called YopR, which is critical for maintenance of lysogeny. Here, we demonstrate that the heat-sensitive SP{beta} c2 phenotype is due to a single nucleotide exchange in the yopR gene, rendering the encoded YopRG136E protein temperature sensitive. Structural characterization of YopR revealed that the protein is a DNA-binding protein with an overall fold like tyrosine recombinases. Biochemical and functional analyses indicate that YopR has lost the recombinase function and the G136E exchange impairs its higher order structure and DNA binding activity. We further show that the heat-inducible SP{beta} excision of the c2 mutant still depends on the serine recombinase SprA. Finally, an evolution experiment identified the YosL protein of unknown function as a novel component of the lysis-lysogeny management system, as the presence of yosL is crucial for the induction of the lytic cycle of SP{beta}.

microbiology↗

The Bacillus phage SPβ and its relatives: A temperate phage model system reveals new strains, species, prophage integration loci, conserved proteins and lysogeny management components

The Bacillus phage SP{beta} has been known for about 50 years, but only a few strains are avalible. We isolated four new wild type strains of the SPbeta species. Phage vB_BsuS-Goe14 introduces its prophage into the spoVK locus, previously not observed to be used by SP{beta}-like phages. We could also reveal the SP{beta}-like phage genome replication strategy, the genome packaging mode, and the phage genome opening point. We extracted 55 SP{beta}-like prophages from public Bacillus genomes, thereby discovering three more integration loci and one additional type of integrase. The identified prophages resembled four new species clusters and three species orphans in the genus Spbetavirus. The determined core proteome of all SP{beta}-like prophages consists of 38 proteins. The integration cassette proved to be not conserved even though present in all strains. It consists of distinct integrases. Analysis of SP{beta} transcriptomes revealed three conserved genes, yopQ, yopR, and yokI, to be transcribed from a dormant prophage. While yopQ and yokI could be deleted from the prophage without activating the prophage, damaging of yopR led to a clear-plaque phenotype. Under the applied laboratory conditions, the yokI mutant showed an elevated virion release implying the YokI protein being a component of the arbitrium system.

microbiology↗