Mechanisms and consequences of T cell antigen receptor signalling for normal immune homeostasis and the development of autoimmune disease
In plain English
AI plain-English summaryEvery time the immune system fights an infection or turns against the body’s own tissues, a molecular switch inside T cells—the Lck and Fyn kinases and the PTPN22 phosphatase—determines whether the response starts, sustains, or stops. Researchers know these signals go wrong in autoimmune diseases such as rheumatoid arthritis and type 1 diabetes, but they do not understand exactly how or why. This project will use genetically altered mice to track T cell behaviour in living animals after an immune challenge, then pair those observations with lab experiments on the biochemical reactions that control activation. The work directly addresses a gap: genome-wide studies have flagged PTPN22 as the strongest common risk gene for autoimmunity, yet its precise role in tipping T cells from normal defence into self-attack remains unclear. If the team can pinpoint whether disease arises from over-activation, a failure to shut down a normal response, or a breakdown in external regulation, that distinction could guide drug development toward more targeted therapies. This is fundamental science—it will not produce a treatment tomorrow—but understanding the molecular choreography of T cell signalling has, in the past, led directly to checkpoint inhibitors for cancer and biologics for arthritis.
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