Bacterial sRNAs together with the RNA chaperone Hfq post-transcriptionally regulate gene expression by affecting ribosome binding or mRNA stability. In the human pathogen Bordetella pertussis, the causative agent of whooping cough, hundreds of sRNAs have been identified, but their roles in B. pertussis biology are mostly unknown. Here we characterize a Hfq-dependent sRNA (S17), whose level is dramatically higher in the virulence (Bvg(+)) mode. We show that transcription from a Ï(A)-dependent promoter yields a long form of 190 nucleotides (nts) that is processed by RNase E to generate a shorter, more stable form (S17S) of 67 nts. Using RNA-seq and RT-qPCR, we identify 92 genes whose expression significantly increases in the absence of S17. Of these genes, 70 contain sequences at/near their ribosome binding sites (RBSs) that are complementary to single-stranded (ss) regions (Sites 1 or 2) of S17S. The identified genes include those encoding multiple transporters and 3 transcriptional regulators. Using a lacZ translational reporter system, we demonstrate that S17S directly represses one of these genes, BP2158, a Ï(54)-dependent transcriptional regulator, suggesting the repression of a Ï(54) regulon in the Bvg(+) mode. We find that the S17S region containing Sites 1 and 2 is 100% conserved throughout various Betaproteobacteria species, and the S17S target sites are often conserved in the homologs of the B. pertussis target genes. We speculate that S17S regulation represents a highly conserved process that fine-tunes gene expression in the Bvg(+) mode of B. pertussis and perhaps under other conditions in related bacteria.
A highly conserved sRNA downregulates multiple genes, including a Ï(54) transcriptional activator, in the virulence mode of Bordetella pertussis.
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作者:Sim Minji, Nguyen Jeffers, Å kopová KarolÃna, Yoo Kyungyoon, Tai Chin-Hsien, Knipling Leslie, Chen Qing, Kim David, Nolan Summer, Elaksher Rawan, Majdalani Nadim, Lorenzi Hernan, Stibitz Scott, Moon Kyung, Hinton Deborah M
| 期刊: | bioRxiv | 影响因子: | 0.000 |
| 时间: | 2024 | 起止号: | 2024 Nov 19 |
| doi: | 10.1101/2024.11.19.624354 | ||
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