RNA-Seq analysis of PNA-mediated knockdown of the colibactin regulator ClbR in uropathogenic Escherichia coli CCR20
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ABSTRACT: Antisense oligomers (ASOs) offer a sequence-specific strategy to reprogram bacterial gene expression. Currently, they have primarily been used as antimicrobials targeting mRNAs of essential genes. By contrast, their potential to selectively suppress harmful genes in members of the microbiota without eliminating these bacteria is underexplored. Here, we investigated the use of ASOs to repress the biosynthesis of the genotoxin colibactin in Escherichia coli. Colibactin, a secondary metabolite of Enterobacteriaceae harboring the polyketide synthase (pks) island, has been linked to the development of colorectal cancer. We show that peptide nucleic acid (PNA)- based ASOs against different pks island mRNAs (clbA, clbP, clbQ, and clbR) selectively blocked protein synthesis in vitro and in the colorectal cancer isolate E. coli CCR20 pks+ . Moreover, clbR- targeting ASOs effectively reduced colibactin-induced DNA damage in infected HeLa cells, indicating that clbR, which encodes the transcriptional activator of the pks island, is a particularly potent target to disrupt colibactin production. Clinically relevant phosphorodiamidate morpholino (PMO)-based ASOs were equally effective as PNA-based ASOs. Our work introduces ASOs as a viable RNA-based strategy to inhibit secondary metabolite production and pioneers a nongenetic approach to study biosynthetic gene clusters, which are common in nature and often found in genetically intractable microbes.
ORGANISM(S): Escherichia coli
PROVIDER: GSE345846 | GEO | 2026/09/02
REPOSITORIES: GEO
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