Exploring Allostery at the Atypical Chemokine Receptor 3 (ACKR3)
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AI plain-English summaryA drug target called ACKR3 sits on the surface of cells and controls how they move, but the standard approach to blocking it with drugs often fails because the body’s own signalling molecules swamp the binding site. This matters because ACKR3 is implicated in inflammatory diseases, metastatic cancers, and neurodegenerative disorders. The problem is that the usual drug-binding spot—the orthosteric site—is constantly occupied by high concentrations of the natural chemokine, especially in diseased tissue. The researchers are instead targeting a separate, unexplored pocket inside the cell, using a synthetic antibody fragment called CID24 as a starting point. They will combine computational modelling, chemical synthesis, and pharmacological assays to design new intracellular allosteric ligands (IALs) that bind this hidden site. If successful, this work is primarily fundamental science. It will clarify how ACKR3 works at a molecular level and provide tools to study its biology. Deeper understanding of this receptor could eventually underpin new therapeutic strategies for conditions where cell migration goes wrong—such as cancer metastasis or chronic inflammation—but the immediate goal is to map the receptor’s inner workings, not to produce a drug.
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