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The Pxp Complex Detoxifies 5-Oxoproline and Promotes the Growth of Clostridioides difficile.

Clostridioides difficile is an anaerobic enteric pathogen that disseminates in the environment as a dormant spore. For C. difficile and other sporulating bacteria, the initiation of sporulation is a regulated process that prevents spore formation under favorable growth conditions. In Bacillus subtilis, one such mechanism for preventing sporulation is the prokaryotic 5-oxoprolinase, PxpB (KipI), which impedes the activation of the main sporulation kinase. In addition, PxpB functions as part of a complex that detoxifies the intermediate metabolite, 5-oxoproline (OP), a harmful by-product of glutamic acid and its derivatives. In this study, we investigate the orthologous Pxp proteins in C. difficile to determine their roles in the regulation of sporulation and metabolism. Through deletion of the pxpAGBC operon, we show that, unlike in B. subtilis, the Pxp (Kip) proteins have no significant impact on sporulation. However, we found that the pxp operon encodes a functional oxoprolinase that facilitates detoxification of OP. Furthermore, our data demonstrate that PxpAGBC not only detoxifies OP but also allows OP to be used as a nutrient source that supports the growth of C. difficile, thereby facilitating the conversion of a toxic by-product of metabolism into an energy source.

Clostridioides difficile

Characterization of the 5' termini of hn RNA in mouse L cells: implications for processing and cap formation.

An analysis of the phosphorylated and capped 5' termini of the heterogenous nuclear RNA of mouse L cells has revealed four types of structure: pppXp..., ppXp..., pXp..., and m7/GpppXmp.... The 5'triphosphate termini consists exclusively of pppGp... and pppAp..., whereas a large proportion of the 5' monophosphate termini are pUp.... The 5'diphosphate termini contain all four species of nucleotide in relative proportions that are roughly similar to those found at the Xm position of cap structures. These results indicate that initiation of hnRNA transcription occurre exclusively with purine nucleotides, and consequently that the hnRNA molecules containing pyrimidines at the 5' termini very probably arise by cleavages at internal sites of larger primary transcripts. Taken together with previous results relating cap structures of hnRNA and mRNA, the data favor a model in which some mRNA sequences are located at transcriptionally initiated proportions and others in internal regions of their precursors. According to this model, both the mRNA segments derived from initial 5' end, and those derived by cleavage at internal sites could be converted to diphosphate-terminated derivatives, which then condense with GTP to form cap structures according to the mechanism previously described for vaccinia and reovirus mRNA.

Adenine