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February 17, 20260 citationsOpen Access

Heterologous Expression and Characterization of Estercin A, a Class II Lanthipeptide Derived from Clostridium estertheticum CF016, with Antimicrobial Activity against Clinically Relevant Pathogens

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CWChenhui WangJWJoseph WambuiUniversity of ZurichMFMaría Victoria Fernández-CantosBiotechnology Institute

Key Points

  • The study aims to express and characterize estercin A, a class II lanthipeptide, for its antimicrobial properties.
  • Heterologous expression of estercin A from Clostridium estertheticum CF016
  • Structural characterization to assess amino acid composition and ring structure
  • Evaluation of antimicrobial activity against clinically relevant pathogens
  • Estercin A exhibited selective antimicrobial properties against methicillin-resistant bacteria
  • The peptide effectively bound to lipid II, disrupting cell membrane integrity
  • Demonstrated stability across various pH levels and temperatures, with resistance to trypsin degradation

Abstract

Recent genome mining work revealed that unexplored habitats exhibit great potential for discovering new nonribosomal peptides (NRPs) and ribosomally synthesized and post-translationally modified peptides (RiPPs). Lanthipeptides are a group of RiPPs exhibiting a variety of biological functions. They are characterized by the presence of the thioether-containing bis-amino acids lanthionine and/or methyllanthionine. In this study, we heterologously expressed and structurally characterized estercin A, an unprecedented class II lanthipeptide derived from CF016 in . Comprising 27 amino acids, estercin A features three overlapping (methyl-)lanthionine rings, with a shorter C-terminal part compared to most reported class II lanthipeptides. Estercin A exhibited selective antimicrobial properties against methicillin-resistant , bowel infection-associated and . The mode of action of estercin A was determined as binding to lipid II on the cell membrane. Estercin A exhibited stability across a range of pH values and temperatures and showed resistance to degradation by trypsin. Our findings highlight estercin A as a novel and stable antimicrobial peptide with significant potential in combating clinically relevant pathogens.

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Cite This Study

Wang et al. (2025) studied this question.

synapsesocial.com/papers/699405494e9c9e835dfd6226https://doi.org/10.5167/uzh-291624
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