Related Experiment Videos
Activation of type I protein kinase A during receptor-mediated human T lymphocyte activation
1Department of Internal Medicine, Bowman Gray School of Medicine, Wake Forest University, Winston-Salem, NC 27157, USA.
Abstract:
The experiments reported herein have characterized the signaling pathway leading to stimulation of type I protein kinase A isozyme (PKA-I) activity during the early events of Ag receptor-mediated T cell activation. Inhibitor studies demonstrated that receptor-initiated activation of nonreceptor protein tyrosine kinases, phosphorylation and activation of phospholipase C-gamma 1, and activation of protein kinase C occur temporally and precede PKA-I activation. Bypass of both the TCR/CD3 complex and IL-1R and direct activation of protein kinase C by a phorbol ester can also activate PKA-I. To confirm that PKA-I activation via the TCR/CD3 complex and IL-1R requires antecedent protein tyrosine kinase-catalyzed phosphorylation of phospholipase C-gamma 1, we used wild-type and CD45-deficient (mutant J45.01) Jurkat T cell lines. Unlike wild-type Jurkat T cells, the absence of CD45 tyrosine phosphatase resulted in the failure of receptor-mediated activation of PKA-I activity and of IL-2 mRNA transcription in the mutant J45.01 Jurkat cell line. In conclusion, our data support the concept that a signal derived from ligand binding to both the TCR/CD3 complex and IL-1R receptor mediates rapid activation of the PKA-I isozyme in primary T lymphocytes by sequential activation of an intracellular pathway comprised of CD45 phosphatase/protein tyrosine kinase/polyphosphoinositide/Ca2+/protein kinase C pathway rather than via the conventional surface receptor/stimulatory G protein system.
Insights
This study reveals the T cell activation pathway, identifying sequential signaling events that activate protein kinase A type I (PKA-I). CD45 phosphatase is crucial for this PKA-I activation, impacting T cell signaling.
Area of Science:
- Immunology
- Cell Signaling
- Biochemistry
Background:
- T cell activation involves complex signaling cascades.
- Protein kinase A type I (PKA-I) plays a role in early T cell activation events.
- The precise pathway for PKA-I stimulation via antigen receptor (Ag) signaling requires further elucidation.
Purpose of the Study:
- To characterize the signaling pathway leading to PKA-I activity stimulation during Ag receptor-mediated T cell activation.
- To determine the role of specific kinases and phosphatases in this pathway.
- To investigate the necessity of CD45 tyrosine phosphatase in receptor-mediated PKA-I activation.
Main Methods:
- Utilized inhibitor studies to dissect the signaling cascade.
- Employed wild-type and CD45-deficient Jurkat T cell lines (mutant J45.01).
- Assessed PKA-I activity and IL-2 mRNA transcription.
Main Results:
- Receptor-initiated activation of protein tyrosine kinases, phospholipase C-gamma 1, and protein kinase C precede PKA-I activation.
- Direct activation of protein kinase C can also activate PKA-I.
- CD45 deficiency abrogated receptor-mediated PKA-I activation and IL-2 transcription.
Conclusions:
- TCR/CD3 and IL-1R signaling activates PKA-I through an intracellular pathway involving CD45 phosphatase, protein tyrosine kinase, polyphosphoinositide, Ca2+, and protein kinase C.
- This pathway is distinct from the conventional surface receptor/stimulatory G protein system.
- CD45 tyrosine phosphatase is essential for the rapid activation of PKA-I in T lymphocytes.