Functional genomics and development of clinical genome editing strategies
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AI plain-English summaryBlood and bone marrow cells read their DNA like a complex instruction manual, and this lab is figuring out how to safely rewrite the faulty pages. Over 90% of disease-linked DNA variations do not change the protein a gene makes—they alter how the gene is switched on or off. The Davies lab uses its own techniques to map the physical 3D structure of DNA inside cells, which is key to understanding those control switches. They will apply this to identify the exact DNA sequences that govern gene activity in blood and bone marrow cells. The ultimate goal is to design safer genome editing strategies for bone marrow stem cells—cells that can be transplanted to cure blood disorders, immune diseases, and some cancers. This is fundamental science with a clear translational path: understanding the genome’s regulatory grammar is a prerequisite for editing it without causing unintended harm. If successful, the work could make stem-cell gene therapies more predictable and less risky, moving them from experimental treatments toward routine clinical options.
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