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January 7, 1994Science196 citations

Location of cAMP-Dependent Protein Kinase Type I with the TCR-CD3 Complex

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BSBjørn Steen SkålheggKTKjetil TaskénVHVidar Hansson

Key Points

  • This research examines how cAMP-dependent protein kinase type I influences T cell replication through interactions with the TCR-CD3 complex.
  • Performed immunocytochemistry and immunoprecipitation to study molecular interactions.
  • Observed the localization and activity of regulatory subunit I alpha and kinase activity during T cell activation.
  • Stimulated T cells with cAMP to assess kinase activity release and its effects.
  • cAKI interacts with the TCR-CD3 complex, influencing T cell replication kinetics.
  • Regulatory subunit I alpha translocates to the TCR-CD3 complex during activation, while subunit II alpha does not.
  • Stimulation with cAMP leads to phosphorylation that uncouples TCR-CD3 from intracellular signaling systems.

Abstract

Selective activation of cyclic adenosine 3',5'-monophosphate (cAMP)-dependent protein kinase type I (cAKI), but not type II, is sufficient to mediate inhibition of T cell replication induced through the antigen-specific T cell receptor-CD3 (TCR-CD3) complex. Immunocytochemistry and immunoprecipitation studies of the molecular mechanism by which cAKI inhibits TCR-CD3-dependent T cell replication demonstrated that regulatory subunit I alpha, along with its associated kinase activity, translocated to and interacted with the TCR-CD3 complex during T cell activation and capping. Regulatory subunit II alpha did not. When stimulated by cAMP, the cAKI localized to the TCR-CD3 complex may release kinase activity that, through phosphorylation, might uncouple the TCR-CD3 complex from intracellular signaling systems.

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Cite This Study

Skålhegg et al. (1994) studied this question.

synapsesocial.com/papers/6a2086bbef8fed83a3a5dfcdhttps://doi.org/10.1126/science.8272870
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