ADP-ribosylation signalling in genome stability
In plain English
AI plain-English summaryEvery time a cell’s DNA gets damaged—from sunlight, chemicals, or normal copying errors—a molecular tag called ADP-ribose gets slapped onto specific proteins to coordinate the repair. This project deciphers exactly how two newly discovered forms of that tag, attached to the amino acids serine and tyrosine, are added and removed by a set of enzymes (PARP/HPF1, ARH3, and PARG). Without this tagging system, cells accumulate broken DNA, which drives cancer and accelerates ageing. The problem is that the molecular machinery behind these particular tags remains poorly understood. The researchers will use biochemical and structural methods to map the precise mechanisms of tag synthesis and removal, then test which cellular processes—such as DNA repair, chromosome segregation, or cell division—depend on these specific tags, using cell biology and animal models. This is fundamental science: it will not produce a drug or diagnostic tomorrow. But because PARP inhibitors are already used to treat certain cancers, understanding the basic chemistry of ADP-ribosylation could eventually reveal new targets for therapies that prevent genome instability or improve the selectivity of existing treatments.
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