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April 17, 2026Toxins0 citationsOpen Access

Interference of Large Clostridial Glucosyltransferases with the Endolysosomal Pathway: Toxin-Induced Imbalance of Early Endosomes, Functional Lysosomes and Autophagosomes

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ALAnna LangejürgenGSGudula SchmidtLULeon Unsöld

Key Points

  • This research aims to characterize the impact of Clostridioides difficile toxins on endolysosomal transport and autophagic function.
  • Immunofluorescent characterization of vesicular structures
  • Assessment of endolysosomal aggregates and autophagosomes
  • RILP pull-down assay to test Rab7 activity
  • Comparison of wild-type and autoproteolytic deficient mutant TcdB effects
  • Toxin B induces damaged endolysosomal aggregates
  • Increase in non-mature autophagosomes (amphisomes) observed
  • Active Rab7 levels increase after TcdB treatment but do not restore lysosomal function
  • Lysosomal dysfunction is a common effect among large clostridial glucosyltransferases

Abstract

Toxin A and B from Clostridioides difficile are the main pathogenicity factors for clinical symptoms of C. difficile infections. Receptor-mediated endocytosis and endosomal escape are required for targeting substrate proteins of the Rho-GTPase family. We previously reported that Toxin B (TcdB) affects endo-lysosomal transport and autophagic flux of target cells. These effects are independent from pathogenic Rho inhibition. Here, we aimed at further characterization of this event by immunofluorescent characterization of the vesicular structures that are affected. We found large aggregates of damaged endolysosomal structures positive for EEA1, LAMP1, CHMP4B and TcdB, as well as an increase in perinuclear concentration of non-mature autophagosomes (amphisomes) positive for SQSTM, Rab7, and LC3B. We investigated whether Rab7, a regulator of late endosome transport, is causative for decreased lysosome function. Although TcdB induced an increase in active Rab7, as tested by an RILP pull-down assay, inhibition of Rab7 did not prevent TcdB-induced decrease in cathepsin D as a surrogate for lysosome dysfunction. It also indicates that the observed increase in Rab7 positive amphisomes is secondary to lysosomal dysfunction. By applying an autoproteolytic deficient mutant of TcdB we proved that the release of the glucosyltransferase domain is mandatory for triggering all of these effects. This suggests that after membrane perforation the toxin remnants leave an open leak in endolysosomes affecting ion homeostasis. Investigation of all large clostridial glucosyltransferases and other toxins revealed lysosomal dysfunction as a general effect of many but not of all toxins that integrate into the endosome membrane.

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Cite This Study

Langejürgen et al. (2026) studied this question.

synapsesocial.com/papers/69e1cf625cdc762e9d858389https://doi.org/10.3390/toxins18040186
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1A targeted cell lysis mechanism facilitates toxin release in Clostridioides difficile2025
  2. 2Clostridioides difficile toxin A and toxin B inhibit toxin-specific adaptive immune responses through glucosyltransferase-dependent activity2025
  3. 3Clostridioides difficile toxin A and toxin B inhibit toxin-specific adaptive immune responses through glucosyltransferase-dependent activity2025
  4. 4A Clostridioides difficile endolysin modulates toxin secretion without cell lysis2024 · 2 citations
  5. 5Purified CDT toxins and a clean deletion within the CDT locus provide novel insights into the contribution of binary toxin in cellular inflammation and Clostridioides difficile infection2024 · 5 citations