Molecular Pharmaceutics · 2005 · 28 citations · 19 references
We have identified an optimized peptide inhibitor that can be used to develop potent anthrax toxin therapeutics. Anthrax toxin, an essential virulence factor of Bacillus anthracis, elicits many of the symptoms associated with the disease, and is responsible for death. The toxin is composed of a cell-binding component, protective antigen, and two enzymatic components, edema factor and lethal factor. The three proteins are secreted individually by the bacterium and then assemble into functional complexes on the surface of mammalian cells. These complexes are endocytosed, and the enzymatic components are translocated into the cytosol, where they exert their activities. We screened a phage display library for peptides that can bind the heptameric cell-binding subunit of anthrax toxin, and identified a novel peptide that can block toxin assembly. We made a series of mutant peptides and attached these peptides to polymer backbones to assess their inhibitory activities in vitro. This series of truncated peptide mutants was used to identify a minimal peptide sequence, TYWWLD, that can be used to develop potent polyvalent inhibitors of anthrax toxin.
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Proteolytic Inactivation of MAP-Kinase-Kinase by Anthrax Lethal Factor
Nicholas S. Duesbery, Craig P. Webb, Stephen H. Leppla et al. · Science · 1998 · 1K citations
Apoptosis, Immunology, Cell Death +19
Identification of the cellular receptor for anthrax toxin
Kenneth A. Bradley, Jeremy Mogridge, Michaël Mourez et al. · Nature · 2001 · 843 citations
Crystal structure of the anthrax toxin protective antigen
Carlo Petosa, R. John Collier, Kurt R. Klimpel et al. · Nature · 1997 · 754 citations