Mechanisms of complex transcriptional processes and assemblies in bacteria
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AI plain-English summaryInside a living bacterial cell, a single RNA polymerase molecule is being tracked in real time as it copies DNA into RNA. This matters because bacteria rely on transcription—the process of reading genes—to adapt, cause infections, and resist antibiotics. Current lab experiments cannot recreate the crowded, fluctuating environment inside a cell, so scientists lack a clear picture of how transcription actually works there. This project uses advanced single-molecule imaging to watch transcription happen live, inside living cells, for the first time. It will also examine large clusters of transcription machinery that may form through a process called liquid-liquid phase separation, whose role in gene control is poorly understood. If successful, the work will resolve long-standing debates about the speed and steps of the transcription cycle, and reveal the structure and function of these clusters. This is fundamental science—there is no immediate practical application. But a deeper understanding of bacterial transcription could eventually inform new strategies for designing antibiotics, engineering bacteria for biotechnology, or building synthetic gene circuits. Past fundamental work on transcription has already underpinned tools like CRISPR and mRNA vaccines.
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