4.6 Article

Development of a Peptide Antagonist against fsr Quorum Sensing of Enterococcus faecalis

Journal

ACS CHEMICAL BIOLOGY
Volume 8, Issue 4, Pages 804-811

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/cb300717f

Keywords

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Funding

  1. Japan Society for the Promotion of Science [2138006, 24380050, AS232Z02064G]
  2. Targeted Proteins Research Program
  3. Platform for Drug Design, Discovery and Development of the Ministry of Education, Culture, Sports, Science and Technology of Japan
  4. Grants-in-Aid for Scientific Research [23228003] Funding Source: KAKEN

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Enterococcus faecalis fsr quorum sensing (QS) involves an 11 residue cyclic peptide named gelatinase biosynthesis activating pheromone (GBAP) that autoinduces two pathogenicity related extracellular proteases in a cell density-dependent fashion. To identify anti pathogenic agents that target fsr QS signaling, peptide antagonists of GBAP were created by our unique drug design approach based on reverse alanine scanning. First of all, a receptor-binding scaffold (RBs), [Ala(4,5,6,8,9,11)]Z-GBAP was created, in which all amino acids within the ring region of GBAP, except for two essential aromatic residues, were substituted to alanine. Next, the substituted alanine residues were changed back to the original amino acid one by one, permitting selection of those peptide combinations exhibiting increased antagonist activity. After three cycles of this reverse alanine scan, [Ala(5,9,11)]Z-GBAP,was obtained as a maximally reverted Peptide (MRP) holding the strongest antagonist activity Then the fifth residue in MRP, which is one of the Critical residues to determine agonist/antagonist activity, was further modified by substituting with different types of amino acids including unnatural ammo acids. As a result, [Tyr(Bzl)(5), Ala(9,11)]Z-GBAP, named ZBzl-YAA5911, showed the strongest antagonist activity [IC50 = 262 nM and K-d against GBAP receptor (FsrC) = 39.4 nM]. In vivo efficacy of this peptide assessed with an aphaldc rabbit endophthalmitis model Z1371-YAA5911 suppressed translocation of E. faecalis from the aqueous humor into the vitreous cavity by more than 1 order of magnitude and significantly reduced retinal damage. We propose that ZBzl-YAA5911 or its derivatives would be useful as anti-infective agents to attenuate virulence expression in this opportunistic pathogen.

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