Mechanisms and Regulation of RNAP transcription
In plain English
AI plain-English summaryEvery living cell depends on a single molecular machine—RNA polymerase (RNAP)—to read its genes and produce the proteins that keep it alive. This project aims to understand exactly how RNAP works, what controls it, and how viruses can hijack it. The problem is that while we know RNAP is central to gene expression, the detailed mechanics of how it starts, continues, and stops reading DNA remain poorly understood. We also know little about the proteins and RNA molecules that regulate it, or how viruses can shut it down entirely during infection. This is fundamental science. The researchers will use a combination of bespoke biochemical assays, structural biology, and genome-wide mapping to characterise RNAP’s molecular partners in living cells. They will also study how archaeal chromatin—a simpler version of human chromatin—affects RNAP movement, and how viral proteins can act as global transcription inhibitors, much like antibiotics. If successful, this work will reveal the basic operating principles of a machine that sits at the heart of all life. Deeper understanding of RNAP regulation could eventually inform the design of new antimicrobials or antiviral strategies, but the immediate goal is to answer a foundational question: how does a cell decide which genes to read, and when to stop?
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