4.5 Article

p-Sulfonato-calix[n]arenes inhibit staphylococcal bicomponent leukotoxins by supramolecular interactions

期刊

BIOCHEMICAL JOURNAL
卷 450, 期 -, 页码 559-571

出版社

PORTLAND PRESS LTD
DOI: 10.1042/BJ20121628

关键词

calixarene; gamma-haemolysin; leukotoxin; Panton-Valentine leukocidin; Staphylococcus aureus; toxin inhibition

资金

  1. Consiglio Nazionale delle Ricerche (CNR)
  2. Fondazione Bruno Kessler (FBK)
  3. Provincia Autonoma di Trento (PAT) Fondo Progetti (Project StaWars)
  4. Provincia Autonoma di Trento (PAT) Fondo Progetti (Project Plugs)
  5. Fondazione Cariverona, Bando
  6. Direction de la Recherche et des Etudes superieures, France [EA-4438]
  7. Ministere de l'Enseignement Superieur et de la Recherche

向作者/读者索取更多资源

PVL (Panton-Valentine leukocidin) and other Staphylococcus aureus beta-stranded pore-forming toxins are important virulence factors involved in various pathologies that are often necrotizing. The present study characterized leukotoxin inhibition by selected SCns (p-sulfonato-calix[n]arenes): SC4, SC6 and SC8. These chemicals have no toxic effects on human erythrocytes or neutrophils, and some are able to inhibit both the activity of and the cell lysis by leukotoxins in a dose-dependent manner. Depending on the type of leukotoxins and SCns, flow cytometry revealed IC50 values of 6-22 mu M for Ca2+ activation and of 2-50 mu M for cell lysis. SCns were observed to affect membrane binding of class S proteins responsible for cell specificity. Electrospray MS and surface plasmon resonance established supramolecular interactions (1:1 stoichiometry) between SCns and class S proteins in solution, but not class F proteins. The membrane-binding affinity of S proteins was K-d = 0.07-6.2 nM. The binding ability was completely abolished by SCns at different concentrations according to the number of benzenes (30-300 mu M; SC8 >SC6>>SC4). The inhibitory properties of SCns were also observed in vivo in a rabbit model of PVL-induced endophthalmitis. These calixarenes may represent new therapeutic avenues aimed at minimizing inflammatory reactions and necrosis due to certain virulence factors.

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