Many bacteria produce extracellular and surface-associated components such as membrane vesicles (MVs), extracellular DNA and moonlighting cytosolic proteins for which the biogenesis and export pathways are not fully understood. Here we show that the explosive cell lysis of a sub-population of cells accounts for the liberation of cytosolic content in Pseudomonas aeruginosa biofilms. Super-resolution microscopy reveals that explosive cell lysis also produces shattered membrane fragments that rapidly form MVs. A prophage endolysin encoded within the R- and F-pyocin gene cluster is essential for explosive cell lysis. Endolysin-deficient mutants are defective in MV production and biofilm development, consistent with a crucial role in the biogenesis of MVs and liberation of extracellular DNA and other biofilm matrix components. Our findings reveal that explosive cell lysis, mediated through the activity of a cryptic prophage endolysin, acts as a mechanism for the production of bacterial MVs. Many bacteria release DNA and membrane vesicles through unclear mechanisms. Here, the authors show that a prophage endolysin is involved in the explosive lysis of a sub-population of cells in Pseudomonas aeruginosa, releasing cytoplasmic content and membrane fragments that rapidly form membrane vesicles.
Explosive cell lysis as a mechanism for the biogenesis of bacterial membrane vesicles and biofilms
L. Turnbull,M. Toyofuku,Amelia L Hynen,Masaharu Kurosawa,Gabriella Pessi,Nicola K. Petty,S. Osvath,Gerardo Cárcamo-Oyarce,Erin S. Gloag,R. Shimoni,U. Omasits,S. Ito,Xinhui Yap,Leigh G. Monahan,Rosalia Cavaliere,C. Ahrens,I. Charles,N. Nomura,L. Eberl,C. Whitchurch
Published 2016 in Nature Communications
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- Publication year
2016
- Venue
Nature Communications
- Publication date
2016-04-14
- Fields of study
Biology, Medicine, Environmental Science
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Semantic Scholar, PubMed
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