TY - JOUR
T1 - Widespread Utilization of Peptide Communication in Phages Infecting Soil and Pathogenic Bacteria
AU - Stokar-Avihail, Avigail
AU - Tal, Nitzan
AU - Erez, Zohar
AU - Lopatina, Anna
AU - Sorek, Rotem
N1 - We thank M. Voichek for assistance in the RNA-seq experiments, V. Fischetti for kindly contributing the Wbeta lysogen and its host, T. Dagan for advice in phylogenetic analyses, and A. Eldar and the Sorek lab members for fruitful discussion. R.S. was supported, in part, by the Israel Science Foundation (personal grant 1360/16 and I-CORE grant 1796/12), the European Research Council (ERC) (grant ERC-CoG 681203), the German Research Council (DFG) priority program SPP 2002 (grant SO 1611/1-1), the David and Fela Shapell Family Foundation, and the Benoziyo Advancement of Science grant.
PY - 2019/5/8
Y1 - 2019/5/8
N2 - Temperate phages can adopt either a lytic or lysogenic lifestyle within their host bacteria. It was recently shown that Bacillus-subtilis-infecting phages of the SPbeta group utilize a peptide-based communication system called arbitrium to coordinate the lysogeny decision. The occurrence of peptide-based communication systems among phages more broadly remains to be explored. Here, we uncover a wide array of peptide-based communication systems utilized by phages for lysogeny decisions. These arbitrium-like systems show diverse peptide codes and can be detected in numerous genetically distant phage types and conjugative elements. The pathogens Bacillus anthracis, Bacillus cereus, and Bacillus thuringiensis are commonly infected by arbitrium-carrying mobile elements, which often carry toxins essential for pathogenicity. Experiments with phages containing these arbitrium-like systems demonstrate their involvement in lysogeny decisions. Finally, our results suggest that the peptidebased decision is executed by an antisense RNA that controls the regulator of the lysogenic state.
AB - Temperate phages can adopt either a lytic or lysogenic lifestyle within their host bacteria. It was recently shown that Bacillus-subtilis-infecting phages of the SPbeta group utilize a peptide-based communication system called arbitrium to coordinate the lysogeny decision. The occurrence of peptide-based communication systems among phages more broadly remains to be explored. Here, we uncover a wide array of peptide-based communication systems utilized by phages for lysogeny decisions. These arbitrium-like systems show diverse peptide codes and can be detected in numerous genetically distant phage types and conjugative elements. The pathogens Bacillus anthracis, Bacillus cereus, and Bacillus thuringiensis are commonly infected by arbitrium-carrying mobile elements, which often carry toxins essential for pathogenicity. Experiments with phages containing these arbitrium-like systems demonstrate their involvement in lysogeny decisions. Finally, our results suggest that the peptidebased decision is executed by an antisense RNA that controls the regulator of the lysogenic state.
UR - https://www.scopus.com/pages/publications/85064910679
U2 - 10.1016/j.chom.2019.03.017
DO - 10.1016/j.chom.2019.03.017
M3 - Article
SN - 1931-3128
VL - 25
SP - 746-755.e5
JO - Cell Host & Microbe
JF - Cell Host & Microbe
IS - 5
ER -