Structure and molecular function of the DREAM complex in gene expression programs of cellular quiescence.
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AI plain-English summaryEvery living cell has a molecular brake that forces it into a state of suspended animation, and researchers want to see exactly what that brake looks like for the first time. The DREAM complex is a cluster of eight proteins that shuts down the genes driving cell division, pushing cells into a reversible hibernation called quiescence. This state is essential for tissue repair, but it also lets cancer cells hide from chemotherapy. No one has yet seen the full atomic structure of the human DREAM complex—how it grabs DNA and silences genes. This project will use cryo-electron microscopy to reconstruct that structure, then test how mutations in the complex alter its behaviour in ovarian cancer cells. If successful, this work will reveal the precise molecular mechanism behind quiescence. Because the DREAM pathway is known to be faulty in ovarian carcinoma, where it helps tumour cells resist treatment, a clear structural map could guide the design of drugs that force those dormant cells back into the cell cycle, making them vulnerable to existing therapies. This is fundamental science—understanding a core biological machine—but with a direct line to a drug target in a hard-to-treat cancer.
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