Investigating the role of the Dnmt3a R882H mutation in subverting normal haematopoiesis and in malignant transformation
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AI plain-English summaryA single letter change in a DNA-modifying enzyme—swapping one amino acid for another at position 882—drives a tenth of all acute myeloid leukaemia cases and is the most common mutation found in pre-cancerous blood cells. This matters because doctors currently have no way to stop that mutation from pushing healthy blood stem cells toward leukaemia. The mutation disables the enzyme’s normal job of adding chemical tags to DNA, but the research team suspects it also does something else entirely: it may hijack the enzyme’s ability to directly switch genes on and off, independent of those chemical tags. If confirmed, that would explain why current drugs targeting the tagging mechanism fail in these patients. The project will map this hidden gene-control function, test whether it disrupts a key tumour-suppressor pathway involving TP53, and then screen for drugs that block the rogue activity. Success would identify the first targeted treatments for the roughly 20% of AML patients carrying this mutation—people who today have no therapy tailored to their cancer’s specific driver.
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