Structural Cell Biology of transport vesicle and organelle biogenesis.
In plain English
AI plain-English summaryEvery cell in your body must sort thousands of different proteins into the correct membrane-bound compartments, or risk poisoning itself or failing to communicate with neighbours. This project tackles a fundamental gap in cell biology: how cells select specific proteins for packaging into transport vesicles—the tiny bubbles that shuttle cargo between organelles—and how compartments called late endosomes and lysosomes assemble and fuse correctly. Without this sorting, cells cannot digest waste, recycle surface receptors, or mount immune responses. The researchers will combine X-ray crystallography and electron microscopy with experiments in living cells to visualise the molecular machinery—including clathrin, COPI, retromer, HOPS, and VARP complexes—as it captures cargo and builds vesicles. The work is fundamental science. It will not produce a drug or device tomorrow. But understanding these sorting mechanisms is essential for tackling diseases where protein trafficking goes wrong: lysosomal storage disorders, neurodegeneration, and certain cancers. Past fundamental discoveries about vesicle coats, for example, directly informed the development of drugs that block viral entry into cells. This project lays the molecular groundwork for similar future interventions.
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