Decoding riboregulation in complex cellular behaviour of bacteria
In plain English
AI plain-English summaryBacteria rely on RNA molecules to decide whether to become infectious or resistant to antibiotics, and this project will map the molecular machines that control those decisions. RNA is best known for carrying genetic instructions from DNA to the protein-making machinery, but it does far more. In bacteria, RNA molecules are constantly being made, folded, modified, and destroyed. The protein complexes that manage these processes determine which genes are active and when. This project will isolate those complexes, solve their three-dimensional structures, and watch them work inside living cells. The goal is to understand the rules that govern an RNA molecule's lifetime and its ultimate biological effect. This is fundamental science. It will not produce a drug or a diagnostic tomorrow. But bacterial virulence and antibiotic resistance are controlled by RNA-based regulatory networks. Understanding how those networks operate—how a bacterium decides to switch from harmless to dangerous, or from drug-sensitive to drug-resistant—could eventually reveal new targets for therapies that disrupt those decisions. Past work on bacterial RNA regulation has already yielded tools like CRISPR, which began as a study of how bacteria store memories of viral infections.
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