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Article Abstract

Unlabelled: Sequence differences among the subtypes of toxin TcdB (2,366 amino acids) are broadly distributed across the entire protein, with the notable exception of 76 residues at the protein's carboxy terminus. This sequence invariable region (SIR) is identical at the DNA and protein level among the TcdB variants, suggesting this string of amino acids has undergone selective pressure to prevent alterations. The functional role of the SIR domain in TcdB has not been determined. Analysis of a recombinantly constructed TcdB mutant lacking the SIR domain did not identify changes in TcdB's enzymatic or cytopathic activities. To further assess the SIR region, we constructed a strain with the final 228 bp deleted from the gene, resulting in the production of a truncated form of TcdB lacking the SIR (TcdB2). Using a combination of approaches, we found in the absence of the SIR sequence TcdB2 retained cytotoxic activity but was not secreted from . TcdB2 was not released from the cell under autolytic conditions, indicating the SIR is involved in a more discrete step in toxin escape from the bacterium. Fractionation experiments combined with antibody detection found that TcdB2 accumulates at the cell membrane but is unable to complete steps in secretion beyond this point. These data suggest conservation of the SIR domain across variants of TcdB could be influenced by the sequence's role in efficient escape of the toxin from .

Importance: is a leading cause of antibiotic associated disease in the United States. The primary virulence factors produced by are two large glucosylating toxins TcdA and TcdB. To date, several sequence variants of TcdB have been identified that differ in various functional properties. Here, we identified a highly conserved region among TcdB subtypes that is required for release of the toxin from . This study reveals a putative role for the longest stretch of invariable sequence among TcdB subtypes and provides new details regarding toxin release into the extracellular environment. Improving our understanding of the functional roles of the conserved regions of TcdB variants aids in the development of new, broadly applicable strategies to treat CDI.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11323933PMC
http://dx.doi.org/10.1128/jb.00096-24DOI Listing

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