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Assessment of the Synaptic Interface of Primary Human T Cells from Peripheral Blood and Lymphoid Tissue
Published on: July 30, 2018
Age-related tyrosine-specific protein phosphorylation defect in human T lymphocytes activated through CD3, CD4, CD8
R A Quadri1, O Plastre, M A Phelouzat
1Department of Geriatrics, University of Geneva, Switzerland.
Abstract:
Although transmembrane signaling defect has been recognized as one of the major functional alterations involved in immune senescence, its biochemical nature as well as its precise molecular localization are still unknown. The available data indicate that an early step in the signaling cascade may be affected during the aging process. Because protein tyrosine kinases (PTK) are ubiquitously implicated in the initiation of physiological signals, they appear as prime candidates for age-related changes. The present investigation examined the effect of age on the activity of PTK associated with CD3, CD4, CD8 or the IL-2 receptor (IL-2R) in human T lymphocytes. By comparison with cells derived from young individuals, anti-CD3-activated T lymphocytes from elderly donors were more susceptible to herbimycin A, a PTK inhibitor known to prevent signal transduction by the T cell antigen receptor. This increased sensitivity of cells from senescent organisms to PTK inhibitors is most likely related to a lesser PTK activity since a significant decrease in the tyrosine phosphorylation of particular endogenous substrates was observed as a consequence of either CD3, CD4, CD8 or IL-2R activation. However, no age-related difference in tyrosine phosphorylation could be demonstrated when T cells were activated by pervanadate, a pharmacological activator of PTK. These results suggest that the intrinsic activity of the enzymes is preserved and that the age-associated defect in PTK activation occurs as a consequence of an upstream biochemical alteration. The defect in PTK activation could be the primary cause for the dysfunction of various components of the signaling cascade observed during the course of aging.
Insights
Immune senescence impairs T lymphocyte signaling due to reduced protein tyrosine kinase (PTK) activity. This age-related defect in PTK activation, not intrinsic enzyme function, causes T cell dysfunction during aging.
Area of Science:
- Immunology
- Cellular Biology
- Gerontology
Background:
- Immune senescence involves transmembrane signaling defects, but their biochemical basis and molecular location remain unclear.
- Protein tyrosine kinases (PTKs) are crucial for initiating physiological signals and are potential candidates for age-related changes.
Purpose of the Study:
- To investigate the impact of aging on the activity of PTKs associated with CD3, CD4, CD8, and the IL-2 receptor (IL-2R) in human T lymphocytes.
Main Methods:
- Assessed PTK activity by measuring tyrosine phosphorylation of endogenous substrates in T lymphocytes from young and elderly donors.
- Utilized anti-CD3 activation and pervanadate (a PTK activator) to probe PTK function.
- Evaluated T cell susceptibility to herbimycin A, a PTK inhibitor.
Main Results:
- T lymphocytes from elderly donors showed increased sensitivity to herbimycin A, indicating reduced PTK activity.
- A significant decrease in tyrosine phosphorylation of substrates was observed upon CD3, CD4, CD8, or IL-2R activation in aged T cells.
- No age-related differences in tyrosine phosphorylation were found when PTKs were activated pharmacologically with pervanadate.
Conclusions:
- The intrinsic activity of PTKs appears preserved in aging.
- Age-associated defects in PTK activation stem from upstream biochemical alterations, not enzyme dysfunction.
- This impaired PTK activation is a likely cause of T cell signaling cascade dysfunction in immune senescence.
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