Publication | Open Access
Identification of the Optimal Structure Required for a Shiga Toxin Neutralizer with Oriented Carbohydrates to Function in the Circulation
95
Citations
20
References
2005
Year
Protein SecretionToxinologyProtein AssemblyShiga Toxin NeutralizerGlycobiologyTherapeutic Stx NeutralizerChemical BiologyOriented CarbohydratesPotent Stx NeutralizerBioenergeticsBioanalysisBiochemical EngineeringShiga ToxinOptimal Structure RequiredMicrobial ToxinBiochemistryVirulence FactorNatural SciencesBiotechnologyMicrobiologyMedicine
Shiga toxin (Stx) is a major virulence factor of Stx-producing Escherichia coli. Recently, we developed a therapeutic Stx neutralizer with 6 trisaccharides of globotriaosyl ceramide, a receptor for Stx, in its dendrimer structure (referred to as "SUPER TWIG [1]6") to function in the circulation. Here, we determined the optimal structure of SUPER TWIG for it to function in the circulation and identified a SUPER TWIG with 18 trisaccharides, SUPER TWIG (2)18, as another potent Stx neutralizer. SUPER TWIGs (1)6 and (2)18 shared a structural similarity, a dumbbell shape in which 2 clusters of trisaccharides were connected via a linkage with a hydrophobic chain. The dumbbell shape was found to be required for formation of a complex with Stx that enables efficient uptake and degradation of Stx by macrophages and, consequently, for potent Stx-neutralizing activity in the circulation. We also determined the binding site of the SUPER TWIGs on Stx.
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