Adhesion GPCRs in the neural and vascular systems: from complex structures to cellular functions
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AI plain-English summaryA protein called Latrophilin3 is clumping together with two other receptors to form large molecular assemblies, and researchers want to know what these structures do in the developing brain and blood vessels. Adhesion GPCRs are a family of proteins that sit on cell surfaces and help cells communicate, but exactly how they work has remained unclear. This project focuses on Latrophilin3, which the team has already shown can form "super-complexes" with two unrelated receptors. The researchers will use structural biology, biophysical analysis, and mouse models to answer basic questions: why do these proteins multimerise, which complexes form in the developing cortex, and what roles do similar receptors play in endothelial cells lining blood vessels. This is fundamental science. It will not produce a drug or a device. But adhesion GPCRs are broadly expressed in the neural and vascular systems, and their dysfunction has been linked to developmental disorders and vascular disease. Understanding their basic architecture and signalling mechanisms could eventually point toward new ways to intervene in conditions where cell communication goes wrong. Past work on GPCRs—a related receptor family—has already led to roughly a third of all modern prescription drugs, so mapping this less-understood subclass is a logical next step.
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