Structure and Mechanism of Key Nonsense-Mediated mRNA Decay Factor Complexes
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AI plain-English summaryCells have a quality-control system that destroys faulty genetic messages before they can produce harmful proteins, and this project will map the molecular machinery that decides which messages to keep and which to trash. The problem is that when this surveillance system—called nonsense-mediated mRNA decay (NMD)—fails, truncated proteins can build up and cause disease, including certain intellectual disabilities and cancers. Scientists know the key players, such as the protein UPF3B, but not how they actually work together to spot a premature stop signal. The researcher recently discovered that UPF3B delays translation termination by grabbing onto the ribosome and other factors, a finding that puts this protein at the centre of the decision. This project will use a combination of cross-linking mass spectrometry in living cells, electron cryo-microscopy, and other structural methods to build near-atomic models of the NMD complexes. The work is fundamental science—it will not produce a drug tomorrow. But understanding the precise mechanics of this surveillance step is a prerequisite for designing therapies that could correct NMD failures in genetic disorders. Similar fundamental work on mRNA surveillance has already opened paths toward treatments for spinal muscular atrophy and other splicing diseases.
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