The Stickland fermentation precursor trans-4-hydroxyproline differentially impacts the metabolism of Clostridioides difficile and commensal Clostridia
Theriot, C. M.; Reed, A. D.; Fletcher, J. R.; Huang, Y.; Thanissery, R.; Rivera, A. M.; Parsons, R. J.; Stewart, A.; Kountz, D. J.; Shen, A.; Balskus, E. P.
Show abstract
An intact gut microbiota confers colonization resistance against Clostridioides difficile through a variety of mechanisms, likely including competition for nutrients. Recently, proline was identified as an important environmental amino acid that C. difficile uses to support growth and cause significant disease. A post-translationally modified form, trans-4-hydroxyproline, is highly abundant in collagen, which is degraded by host proteases in response to C. difficile toxin activity. The ability to dehydrate trans-4-hydroxyproline via the HypD glycyl radical enzyme is wide-spread amongst gut microbiota, including C. difficile and members of the commensal Clostridia, suggesting that this amino acid is an important nutrient in the host environment. Therefore, we constructed a C. difficile {Delta}hypD mutant and found that it was modestly impaired in fitness in a mouse model of infection, and was associated with an altered microbiota when compared to mice challenged with the wild type strain. Changes in the microbiota between the two groups were largely driven by members of the Lachnospiraceae family and the Clostridium genus. We found that C. difficile and type strains of three commensal Clostridia had significant alterations to their metabolic gene expression in the presence of trans-4-hydroxyproline in vitro. The proline reductase (prd) genes were elevated in C. difficile, consistent with the hypothesis that trans-4-hydroxyproline is used by C. difficile to supply proline for fermentation. Similar transcripts were also elevated in some commensal Clostridia tested, although each strain responded differently. This suggests that the uptake and utilization of other nutrients by the commensal Clostridia may be affected by trans-4-hydroxyproline metabolism, highlighting how a common nutrient may be a signal to each organism to adapt to a unique niche. Further elucidation of the differences between them in the presence of hydroxyproline and other key nutrients will be important to determining their role in nutrient competition against C. difficile.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Manganese uptake, mediated by SloABC and MntH, is essential for the fitness of Streptococcus mutans 95%
- Degradation of the incretin hormone Glucagon-Like Peptide-1 (GLP-1) by Enterococcus faecalis metalloprotease GelE 95%
- Clostridioides difficile-mucus interactions encompass shifts in gene expression, metabolism, and biofilm formation 94%
Similar papers in this journal
- Enterotoxigenic Escherichia coli display a distinct growth phase before entry into stationary phase with shifts in tryptophan- fucose- and putrescine metabolism and degradation of neurotransmitter precursors 95%
- A novel bacteriophage with broad host-range against Clostridioides difficile ribotype 078 elucidates the phage receptor. 94%
- Novel insights into the pig gut microbiome using metagenome-assembled genomes 94%
Similar papers in this journal
- Protection from lethal Clostridioides difficile infection via intraspecies competition for co-germinant 95%
- Stabilizing genetically unstable simple sequence repeats in the Campylobacter jejuni genome by multiplex genome editing: a reliable approach for delineating multiple phase-variable genes 95%
- Disruptions in Outer Membrane-Peptidoglycan Interactions Enhance Bile Salt Resistance in O-antigen-Producing E. coli 95%
Similar papers in this journal
- Long-read sequencing to interrogate strain-level variation among adherent-invasive Escherichia coli isolated from human intestinal tissue 95%
- Improved transformation efficiency of group A Streptococcus by inactivation of a type I restriction modification system 94%
- MinION Sequencing of colorectal cancer tumour microbiomes - a comparison with amplicon-based and RNA-Sequencing 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.