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Updated: Sep 21, 2026

Investigating Mast Cell Secretory Granules; from Biosynthesis to Exocytosis
Published on: January 26, 2015
Mast cells express novel CD8 molecules that selectively modulate mediator secretion
1Pulmonary Research Group, Department of Medicine, University of Alberta, Edmonton, Canada.
Insights
Rat peritoneal mast cells (PMC) express functional CD8 molecules, distinct from those on T lymphocytes. This CD8 expression on PMC can induce tumor necrosis factor-alpha and nitric oxide production, but not histamine release.
Area of Science:
- Immunology
- Cell Biology
- Mast Cell Research
Background:
- CD8 is a marker typically found on T lymphocytes and NK cells.
- Mast cells are immune cells involved in allergic reactions and inflammation.
- The presence and function of CD8 on mast cells are not well understood.
Purpose of the Study:
- To investigate the expression and function of CD8 on rat peritoneal mast cells (PMC).
- To determine if PMC CD8 molecules are similar to or distinct from those found on T lymphocytes.
- To explore the functional consequences of CD8 engagement on PMC.
Main Methods:
- Flow cytometry and confocal microscopy were used to detect CD8 expression on PMC.
- In situ reverse-transcription PCR confirmed CD8alpha mRNA transcripts in PMC.
- Functional assays measured TNF-alpha, nitric oxide, and histamine release upon CD8 antibody stimulation.
Main Results:
- Freshly isolated rat PMC express both CD8alpha and CD8beta chains.
- PMC CD8alpha appears distinct from T lymphocyte CD8alpha, as it does not bind the G28 antibody.
- Engagement of CD8 on PMC induced TNF-alpha and nitric oxide production in a dose-dependent manner, but not histamine secretion.
Conclusions:
- Rat peritoneal mast cells express functional CD8 molecules.
- The CD8 expressed on PMC may differ structurally from T cell CD8.
- CD8 signaling in PMC appears to be independent of Fc epsilonRI signaling pathways.
Abstract:
CD8, a marker largely restricted to subsets of T lymphocytes and NK cells, was detected on freshly isolated rat peritoneal mast cells (PMC). Using flow cytometry, Percoll-enriched rat PMC (> or = 98% purity) were positive for the hinge region of CD8alpha (67.5 +/- 9.5%; Ab OX8) and CD8beta (27.8 +/- 2.3%; Ab 341). CD8+ PMC consisted of two populations, CD8alpha+ (22.5%) and CD8alpha+ beta+ (15.9%). Interestingly, G28, an Ab that identifies the IgV-like region of CD8alpha on T lymphocytes, did not bind PMC, suggesting that PMC CD8alpha is distinct from that on T lymphocytes. Moreover, a similar pattern of Ab positivity for CD8 was observed on a rat mast cell line, RBL 2H3. The presence of CD8alpha immunoreactivity on rat PMC was further confirmed by confocal microscopy. In situ reverse-transcription PCR and reverse-transcription PCR analysis demonstrated that PMC contained mRNA transcripts encoding CD8alpha. In functional studies of CD8 on PMC, both TNF-alpha and nitric oxide production were induced by OX8 (CD8alpha) and 341 Ab (CD8beta) in a dose-dependent manner. However, neither OX8 nor 341 induced histamine secretion from PMC. Ag-induced secretion of TNF-alpha, nitric oxide, and histamine was not affected by OX8 or 341 Abs, suggesting that there are distinct signaling mechanisms mediated by CD8 and Fc epsilonRI. These results indicate that rat PMC express functional CD8 molecules that may be distinct from those of T lymphocytes. The difference suggests there is a ligand other than MHC class I for mast cell CD8.
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