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Updated: Aug 17, 2026

Isolation and Activation of Murine Lymphocytes
Published on: October 30, 2016
Functional expression of the P2Y14 receptor in murine T-lymphocytes
Michelle Scrivens1, John M Dickenson
1School of Biomedical and Natural Sciences, Nottingham Trent University.
Abstract:
Quantitative reverse transcriptase polymerase chain reaction (RT-PCR) analysis has previously shown that the P2Y(14) receptor is expressed in peripheral immune cells including lymphocytes. Although in transfected cells the P2Y(14) receptor couples to pertussis toxin-sensitive G(i/o) protein, the functional coupling of endogenously expressed P2Y(14) receptors to the inhibition of adenylyl cyclase activity has not been reported. Therefore, the primary aim of this study was to determine whether the P2Y(14) receptor is functionally expressed in murine spleen-derived T- and B-lymphocyte-enriched populations. RT-PCR analysis detected the expression of P2Y(14) receptor mRNA in whole spleen and isolated T- and B-lymphocytes. In T cells, UDP-glucose (EC(50) = 335 nM) induced a small but significant inhibition (circa 20%) of forskolin-stimulated cAMP accumulation, suggesting functional coupling of endogenously expressed P2Y(14) receptors to the inhibition of adenylyl cyclase activity. In contrast, the other putative P2Y(14) receptor agonists UDP-galactose, UDP-glucuronic acid and UDP-N-acetylglucosamine had no significant effect alone but behaved as partial agonists by blocking UDP-glucose responses. In B cells, UDP-glucose (100 microM) had no significant effect on forskolin-stimulated cAMP accumulation. Treatment of T cells with pertussis toxin (G(i/o) blocker) abolished the inhibitory effects of UDP-glucose on forskolin-stimulated cAMP accumulation. T-cell proliferation in response to anti-CD3 monoclonal antibody (1 microg ml(-1)) was significantly inhibited by UDP-glucose (59% inhibition; p[IC(50)] = 5.9 +/- 0.3), UDP-N-acetylglucosamine (37%; 6.1 +/- 0.3), UDP-galactose (56%; 8.2 +/- 0.2) and UDP-glucuronic acid (49%; 6.3 +/- 0.2). Interleukin-2- (5 ng ml(-1)) induced T-cell proliferation was also significantly inhibited by all four agonists. In summary, we have shown that the P2Y(14) receptor appears to be functionally expressed in murine spleen-derived T-lymphocytes. These observations suggest that UDP-glucose and related sugar nucleotides presumably via the P2Y(14) receptor may play an important role in modulating immune function.
Insights
The P2Y(14) receptor is functionally expressed in mouse T-lymphocytes, where UDP-glucose inhibits cAMP accumulation and T-cell proliferation. This suggests P2Y(14) receptor agonists modulate immune responses.
Area of Science:
- Immunology
- Molecular Pharmacology
- Cell Biology
Background:
- Quantitative reverse transcriptase polymerase chain reaction (RT-PCR) has shown P2Y(14) receptor expression in peripheral immune cells.
- The functional coupling of endogenously expressed P2Y(14) receptors to adenylyl cyclase inhibition remains unconfirmed.
Purpose of the Study:
- To determine if the P2Y(14) receptor is functionally expressed in murine spleen-derived T- and B-lymphocyte populations.
- To investigate the signaling pathways and functional consequences of P2Y(14) receptor activation in lymphocytes.
Main Methods:
- RT-PCR analysis of P2Y(14) receptor mRNA expression in spleen and isolated lymphocytes.
- Measurement of cyclic adenosine monophosphate (cAMP) accumulation in response to P2Y(14) receptor agonists and forskolin.
- Assessment of T-cell proliferation inhibition by P2Y(14) receptor agonists and pertussis toxin treatment.
Main Results:
- P2Y(14) receptor mRNA was detected in T- and B-lymphocytes.
- UDP-glucose significantly inhibited cAMP accumulation in T cells, indicating functional coupling to G(i/o) proteins.
- UDP-glucose and other sugar nucleotides inhibited T-cell proliferation and interleukin-2-induced proliferation.
Conclusions:
- The P2Y(14) receptor is functionally expressed in murine T-lymphocytes.
- Activation of the P2Y(14) receptor modulates T-cell function, including proliferation.
- Sugar nucleotides acting via the P2Y(14) receptor may play a role in regulating immune function.
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