The molecular machinery of RNA metabolism and riboregulation in bacteria
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AI plain-English summaryBacteria produce dozens of small RNA molecules to rewire their gene activity when under stress, and this project will capture the first detailed snapshots of the molecular machines that process and destroy those RNAs. Current antibiotics mostly target bacterial growth, but many chronic infections involve bacteria that have switched into a slow-growing, stress-resistant state. The molecular machinery that controls RNA-based gene regulation is a potential new target for drugs that could disable bacteria in this persistent state. The researchers will use structural biology to visualise how the degradative enzyme complex captures RNA transcripts, feeds them into its active site, and either chops them up or trims them into mature forms. They will also map which RNA targets the chaperone proteins and the degradation machinery bind to, and test whether those targets shift during the cell cycle or under different physiological conditions. This is fundamental science. It asks how even simple bacteria achieve complex, rapid responses to their environment using RNA-based regulation. A deeper understanding of these molecular mechanisms could eventually inform the design of novel antimicrobials that disrupt bacterial stress responses rather than growth itself—an approach that might slow the development of resistance.
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