RNA metabolism in developing neurons
In plain English
AI plain-English summaryA single molecule of RNA can carry two conflicting instructions, and scientists want to know how a developing nerve cell decides which one to follow. Neurons must build different proteins in different parts of the cell—at the tip of a growing axon, for instance, versus the cell body. Most research has focused on how genes are switched on and off, but errors in the later steps of RNA processing and delivery are known to cause severe neurological disorders. This project investigates how the 3’ untranslated region (3’UTR) of an RNA molecule—a stretch of genetic material that does not code for protein—governs whether that RNA is spliced, exported from the nucleus, or sent to a specific location. The team has already mapped which 3’UTRs appear in different compartments of sympathetic neurons and will now test whether these regions can generate a new class of regulatory RNAs that guide development. This is fundamental science. It will not produce a drug or a diagnostic tomorrow. But understanding how a single mRNA can have two fates—and how the 3’UTR controls that choice—could eventually explain why certain mutations in non-coding RNA cause developmental brain disorders, and point toward entirely new targets for intervention.
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