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Thiopeptide antibiotics stimulate biofilm formation in Bacillus subtilis.
- Source :
- Proceedings of the National Academy of Sciences of the United States of America; 3/10/2015, Vol. 112 Issue 10, p3086-3091, 6p
- Publication Year :
- 2015
-
Abstract
- Bacteria have evolved the ability to produce a wide range of structurally complex natural products historically called "secondary" metabolites. Although some of these compounds have been identified as bacterial communication cues, more frequently natural products are scrutinized for antibiotic activities that are relevant to human health. However, there has been little regard for how these compounds might otherwise impact the physiology of neighboring microbes present in complex communities. Bacillus cereus secretes molecules that activate expression of biofilm genes in Bacillus subtilis. Here, we use imaging mass spectrometry to identify the thiocillins, a group of thiazolyl peptide antibiotics, as biofilm matrix-inducing compounds produced by B. cereus. We found that thiocillin increased the population of matrix-producing B. subtilis cells and that this activity could be abolished by multiple structural alterations. Importantly, a mutation that eliminated thiocillin's antibiotic activity did not affect its ability to induce biofilm gene expression in B. subtilis. We go on to show that biofilm induction appears to be a general phenomenon of multiple structurally diverse thiazolyl peptides and use this activity to confirm the presence of thiazolyl peptide gene clusters in other bacterial species. Our results indicate that the roles of secondary metabolites initially identified as antibiotics may have more complex effects-- acting not only as killing agents, but also as specific modulators of microbial cellular phenotypes. [ABSTRACT FROM AUTHOR]
- Subjects :
- BACILLUS subtilis
BACILLUS (Bacteria)
ANTIBIOTICS
MICROBIAL metabolites
BIOSYNTHESIS
Subjects
Details
- Language :
- English
- ISSN :
- 00278424
- Volume :
- 112
- Issue :
- 10
- Database :
- Complementary Index
- Journal :
- Proceedings of the National Academy of Sciences of the United States of America
- Publication Type :
- Academic Journal
- Accession number :
- 103354003
- Full Text :
- https://doi.org/10.1073/pnas.1414272112