T细胞受体
抗原
生物物理学
血浆蛋白结合
突变
功能(生物学)
细胞生物学
化学
生物
T细胞
物理
遗传学
基因
免疫系统
作者
Darren B. McAffee,Mark K. O’Dair,Jenny Lin,Shalini T. Low-Nam,Kiera B. Wilhelm,Sungi Kim,Shumpei Morita,Jay T. Groves
标识
DOI:10.1038/s41467-022-35093-9
摘要
Abstract LAT assembly into a two-dimensional protein condensate is a prominent feature of antigen discrimination by T cells. Here, we use single-molecule imaging techniques to resolve the spatial position and temporal duration of each pMHC:TCR molecular binding event while simultaneously monitoring LAT condensation at the membrane. An individual binding event is sufficient to trigger a LAT condensate, which is self-limiting, and neither its size nor lifetime is correlated with the duration of the originating pMHC:TCR binding event. Only the probability of the LAT condensate forming is related to the pMHC:TCR binding dwell time. LAT condenses abruptly, but after an extended delay from the originating binding event. A LAT mutation that facilitates phosphorylation at the PLC-γ1 recruitment site shortens the delay time to LAT condensation and alters T cell antigen specificity. These results identify a function for the LAT protein condensation phase transition in setting antigen discrimination thresholds in T cells.
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