Understanding the CD28-CTLA-4 pathway: a thermostat for T cell immunity
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AI plain-English summaryThe body's immune system relies on a molecular thermostat—a set of interacting proteins that dial T cell activity up or down, and when it breaks, the result is either crippled infection defences or the body attacking itself. This project tackles a fundamental gap in immunology: how the CD28, CTLA-4, and PD-1 pathways work together as an integrated control system. Scientists know the individual parts—the receptors CD28 and CTLA-4, their ligands CD80 and CD86, and the PD-1 pathway—but not how their different binding strengths, speeds, and competition for partners collectively tune immune responses. Without this understanding, efforts to manipulate these pathways therapeutically remain partly guesswork. The research is fundamental science, not applied drug development. It will measure the biophysical properties of these molecular interactions, test how natural and engineered changes alter T cell behaviour in cells and animals, and build mathematical models that predict system-level outcomes. If successful, it could reveal why certain immune checkpoint inhibitors work in some patients but not others, and provide a rational framework for designing more precise immunotherapies—for cancer, autoimmune disease, or transplant rejection. Past fundamental work on this same pathway directly enabled today's blockbuster cancer immunotherapies.
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