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Updated: Jun 9, 2026

Detection of Toxin Translocation into the Host Cytosol by Surface Plasmon Resonance
Published on: January 3, 2012
Shiga toxin 1 and ricin A chain bind to human polymorphonuclear leucocytes through a common receptor
Valentina Arfilli1, Domenica Carnicelli, Laura Rocchi
1Dipartimento di Patologia Sperimentale, Università di Bologna, Italy.
Insights
Shiga toxins (Stx) cause HUS by binding to a specific receptor on polymorphonuclear leukocytes (PMN). Ribosome-inactivating proteins (RIPs) share this receptor, indicating Stx-PMN interaction is specific and biologically significant.
Area of Science:
- Microbiology
- Toxicology
- Immunology
Background:
- Haemolytic uraemic syndrome (HUS) in children is primarily caused by Shiga toxins (Stx) from Escherichia coli infections.
- Stx targets renal and cerebral endothelium, leading to HUS.
- Polymorphonuclear leukocytes (PMN) are implicated in Stx delivery via an unidentified membrane receptor.
Purpose of the Study:
- To investigate the specificity of the Stx-PMN interaction.
- To identify the receptor involved in Stx binding to PMN.
- To explore potential biological significance of Stx-PMN interaction.
Main Methods:
- Competitive binding assays using Stx A chain, ricin A chain, other toxins, and receptor agonists.
- Assessment of ricin A chain's effect on PMN viability (protein synthesis, apoptosis).
- Testing of other ribosome-inactivating proteins (gelonin, saporin S6) for receptor competition.
Main Results:
- Ricin A chain binds to the same PMN receptor as Stx (Kd=10⁻⁹ M), competing for binding sites.
- Diphtheria toxin and TLR/mannose receptor agonists did not compete for the Stx receptor.
- Ricin A chain showed no toxicity to PMN.
- Other ribosome-inactivating proteins also competed for the Stx receptor on PMN.
Conclusions:
- The Stx-PMN interaction is specific, mediated by a common receptor shared with ribosome-inactivating proteins.
- PMN recognize conserved molecular patterns on foreign molecules like Stx and RIPs.
- This specificity challenges previous notions of the Stx-PMN interaction being non-specific.
Abstract:
The main cause of acute renal failure in children is HUS (haemolytic uraemic syndrome), a consequence of intestinal infections with Escherichia coli strains producing Stx (Shiga toxins). Stx released in the gut by the non-invasive bacteria reach the bloodstream and are targeted to cerebral and renal endothelium triggering HUS. PMN (polymorphonuclear leucocytes) seem to be involved in Stx delivery through an unidentified membrane receptor (Kd=10⁻⁸ M; 2×10⁵ binding sites) which does not allow internalization. Some experts in the field have defined the Stx-PMN interaction as non-specific and of little biological significance. In the present study, we show that the A chain of ricin, the well-known plant RIP (ribosome-inactivating protein), interacts with PMN (Kd=10⁻⁹ M; 2×10⁵ binding sites) competing for the same receptor that recognizes Stx, whereas diphtheria toxin and several agonists of TLRs (Toll-like receptors) or the mannose receptor were ineffective. No toxic effects of ricin A chain on PMN were observed, as assessed by measuring protein synthesis and the rate of spontaneous apoptosis of leucocytes. Moreover, two single-chain RIPs (gelonin and saporin S6) had the same competing effect. Thus RIPs and Stx1 share structural similarities, the same enzymatic activity and a common receptor on PMN. These observations reveal that the Stx-PMN interaction is specific, confirming that PMN recognize molecular patterns common to different foreign molecules.
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