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Drug Discovery and Repurposing Inhibits a Major Gut Pathogen-Derived Oncogenic Toxin
Paul Metz1,2,3, Martijn J H Tjan2,3, Shaoguang Wu3
1Centre for Molecular and Biomolecular Informatics, Radboud University Medical Center (Radboudumc), Nijmegen, Netherlands.
Abstract:
Objective: The human intestinal microbiome plays an important role in inflammatory bowel disease (IBD) and colorectal cancer (CRC) development. One of the first discovered bacterial mediators involves Bacteroides fragilis toxin (BFT, also named as fragilysin), a metalloprotease encoded by enterotoxigenic Bacteroides fragilis (ETBF) that causes barrier disruption and inflammation of the colon, leads to tumorigenesis in susceptible mice, and is enriched in the mucosa of IBD and CRC patients. Thus, targeted inhibition of BFT may benefit ETBF carrying patients. Design: By applying two complementary in silico drug design techniques, drug repositioning and molecular docking, we predicted potential BFT inhibitory compounds. Top candidates were tested in vitro on the CRC epithelial cell line HT29/c1 for their potential to inhibit key aspects of BFT activity, being epithelial morphology changes, E-cadherin cleavage (a marker for barrier function) and increased IL-8 secretion. Results: The primary bile acid and existing drug chenodeoxycholic acid (CDCA), currently used for treating gallstones, cerebrotendinous xanthomatosis, and constipation, was found to significantly inhibit all evaluated cell responses to BFT exposure. The inhibition of BFT resulted from a direct interaction between CDCA and BFT, as confirmed by an increase in the melting temperature of the BFT protein in the presence of CDCA. Conclusion: Together, our results show the potential of in silico drug discovery to combat harmful human and microbiome-derived proteins and more specifically suggests a potential for retargeting CDCA to inhibit the pro-oncogenic toxin BFT.
Insights
Chenodeoxycholic acid (CDCA), a bile acid drug, was found to inhibit Bacteroides fragilis toxin (BFT). This discovery highlights in silico drug design
Area of Science:
- Microbiology
- Gastroenterology
- Drug Discovery
Background:
- The human intestinal microbiome influences inflammatory bowel disease (IBD) and colorectal cancer (CRC).
- Bacteroides fragilis toxin (BFT) from enterotoxigenic B. fragilis (ETBF) disrupts the colon barrier, promotes inflammation, and is linked to IBD and CRC.
- Targeting BFT may offer therapeutic benefits for ETBF-colonized patients.
Purpose of the Study:
- To identify potential inhibitors of BFT using in silico drug design.
- To evaluate the efficacy of identified compounds against BFT's effects on colon epithelial cells.
Main Methods:
- Employed drug repositioning and molecular docking to predict BFT inhibitors.
- Tested top candidates in vitro on HT29/c1 CRC cells to assess inhibition of BFT-induced morphology changes, E-cadherin cleavage, and IL-8 secretion.
Main Results:
- Chenodeoxycholic acid (CDCA), a primary bile acid and existing drug, significantly inhibited all tested cellular responses to BFT.
- CDCA directly interacted with BFT, evidenced by an increased melting temperature of the BFT protein.
Conclusions:
- In silico drug discovery can identify inhibitors for harmful microbiome-derived proteins.
- CDCA shows potential for repurposing to neutralize the pro-oncogenic BFT toxin.
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