Transposable element-gene chimeric transcripts in neural tissues: functional impacts on gene expression and behaviour and their regulatory control across model systems
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AI plain-English summaryHalf of the human genome is made of mobile DNA sequences that were once dismissed as junk, and this project will investigate how these "jumping genes" alter the activity of brain cells. Transposable elements can insert themselves into genes, creating hybrid RNA molecules that may disrupt normal neural function. Their activation is increasingly linked to Alzheimer’s disease, ALS, and schizophrenia, yet the molecular rules governing this process in the brain remain unknown. The researchers will compare two very different organisms—fruit flies and parasitic nematodes—to identify which regulatory mechanisms are universal and which are specific to particular species. This is fundamental science: it will not produce a treatment or diagnostic tomorrow. But understanding how transposable elements reshape gene expression in neurons could eventually reveal why certain individuals are more vulnerable to neurodegenerative disorders, and point toward molecular targets for intervention. Past discoveries about mobile DNA have already transformed our understanding of genome evolution and genetic diversity; this work extends that inquiry into the poorly charted territory of the nervous system.
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