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Culturing and Maintaining Clostridium difficile in an Anaerobic Environment
Published on: September 14, 2013
Spores of Clostridioides difficile are toxin delivery vehicles
Carolina P Cassona1, Sara Ramalhete1, Khira Amara1
1Instituto de Tecnologia Química e Biológica, NOVA University Lisbon, Oeiras, Portugal.
Abstract:
Clostridioides difficile causes a wide range of intestinal diseases through the action of two main cytotoxins, TcdA and TcdB. Ingested spores germinate in the intestine establishing a population of cells that produce toxins and spores. The pathogenicity locus, PaLoc, comprises several genes, including those coding for TcdA/B, for the holin-like TcdE protein, and for TcdR, an auto-regulatory RNA polymerase sigma factor essential for tcdA/B and tcdE expression. Here we show that tcdR, tcdA, tcdB and tcdE are expressed in a fraction of the sporulating cells, in either the whole sporangium or in the forespore. The whole sporangium pattern is due to protracted expression initiated in vegetative cells by σD, which primes the TcdR auto-regulatory loop. In contrast, the forespore-specific regulatory proteins σG and SpoVT control TcdR production and tcdA/tcdB and tcdE expression in this cell. We detected TcdA at the spore surface, and we show that wild type and ΔtcdA or ΔtcdB spores but not ΔtcdR or ΔtcdA/ΔtcdB spores are cytopathic against HT29 and Vero cells, indicating that spores may serve as toxin-delivery vehicles. Since the addition of TcdA and TcdB enhance binding of spores to epithelial cells, this effect may occur independently of toxin production by vegetative cells.
Insights
Clostridioides difficile spores deliver toxins TcdA and TcdB to the gut, causing intestinal disease. Spore surface toxin detection reveals spores act as vehicles for toxin delivery, enhancing epithelial cell binding.
Area of Science:
- Microbiology
- Molecular Biology
- Cell Biology
Background:
- Clostridioides difficile (C. diff) causes intestinal diseases via toxins TcdA and TcdB.
- C. diff pathogenicity locus (PaLoc) genes regulate toxin production.
- Spores are key for C. diff infection and transmission.
Purpose of the Study:
- Investigate the spatiotemporal expression of C. diff toxin genes.
- Determine the role of regulatory proteins in toxin gene expression.
- Assess the contribution of spores to C. diff pathogenesis.
Main Methods:
- Analysis of tcdR, tcdA, tcdB, and tcdE gene expression patterns during sporulation.
- Study of regulatory roles of sigma factors (σD, σG) and SpoVT.
- Assessment of spore cytopathicity and epithelial cell binding.
Main Results:
- Toxin and regulatory genes are expressed in specific fractions of sporulating cells (sporangium or forespore).
- σD primes the TcdR auto-regulatory loop, while σG and SpoVT control forespore expression.
- TcdA is detected on the spore surface; spores are cytopathic and enhance epithelial cell binding.
Conclusions:
- C. diff toxin gene expression is tightly regulated during sporulation by distinct cellular compartments.
- Spores function as vehicles for toxin delivery, contributing to C. diff pathogenesis and host cell interaction.

