Discovering how CpG islands control transcription to regulate gene expression
In plain English
AI plain-English summaryEvery cell in the human body carries the same DNA, yet a skin cell and a nerve cell behave completely differently—because each one switches on a different set of genes. This project aims to crack the code of how those switches work. The problem is that we do not fully understand how CpG islands—short stretches of DNA near many genes—help decide whether a gene is turned on or off. Researchers know these islands guide the formation of specialised chromatin states (the packaging of DNA inside cells), but the precise mechanism by which those states control gene activity remains a central mystery in fundamental biology. This is curiosity-driven fundamental science. If successful, it will produce a quantitative, predictive model of how gene promoters function—a framework that could eventually help explain what goes wrong when gene regulation breaks down in diseases such as cancer or developmental disorders. Past discoveries in gene regulation have led to technologies like mRNA vaccines and targeted cancer therapies; this work lays similar groundwork for future applications that are not yet foreseeable.
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