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January 1, 2009Current Pharmaceutical Biotechnology521 citations

Lantibiotics: Mode of Action, Biosynthesis and Bioengineering

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GBGabriele BierbaumHSHans‐Georg Sahl

Key Points

  • To review the antimicrobial mechanisms of action, biosynthetic enzyme pathways, and bioengineering advances of lantibiotics.
  • Synthesized molecular mechanisms of lipid II binding and pore formation across diverse lantibiotics.
  • Analyzed the genetic architecture of lan gene clusters and post-translational modification enzymes including LanM, LanB, and LanC.
  • Examined in vitro peptide bioengineering platforms and the generation of variants targeting resistant bacteria.
  • Lantibiotics such as nisin demonstrate a dual mechanism of action by binding lipid II to halt cell wall synthesis and aggregating to form membrane pores.
  • Post-translational ring formation is directed by specific biosynthetic enzymes, including single LanM enzymes or dehydratase-cyclase pairs (LanB and LanC).
  • In vitro modification systems enable the introduction of thioether rings into diverse peptides, yielding novel variants with activity against multiresistant pathogens.

Abstract

Lantibiotics are gene-encoded peptides that contain intramolecular ring structures, introduced through the thioether containing lanthionine and methyllanthionine residues. The overwhelming majority of the lantibiotics shows antibacterial activity. Some lantibiotics, e.g. nisin, are characterized by a dual mode of action. These peptides form a complex with the ultimate cell wall precursor lipid II, thereby inhibiting cell wall biosynthesis. The complexes then aggregate, incorporate further peptides and form a pore in the bacterial membrane. Recent results show that complexing of lipid II is widespread among lantibiotics; however, pore formation depends on the overall length of the peptide and the lipid composition of the test strain membrane. In the two-component system of lacticin 3147, the two functions are performed by the two different peptides. The genetic information for production of lantibiotics is organized in gene clusters which contain a structural gene (lanA) for the lantibiotic prepeptide. The modifications are introduced by one biosynthetic enzyme (LanM) or a combination of a dehydratase (LanB) and a cyclase (LanC). These enzymes have been in the focus of recent bioengineering studies: The structure of NisC has been resolved, the reaction mechanism of LctM was elucidated and the active site residues were characterized by mutagenesis studies. In vitro modification systems have successfully been used to introduce thioether rings into other biologically active peptides. Furthermore, variant lantibiotics with enhanced properties have been engineered and at least one promising new lantibiotic with strong activity against multiresistant pathogens has been described.

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Cite This Study

Bierbaum et al. (2009) studied this question.

synapsesocial.com/papers/69d80f0bec670a5632d17d28https://doi.org/10.2174/138920109787048616
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