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2-Fluoroadenosine 3':5'-monophosphate. A metabolite of 2-fluoroadenosine in mouse cytotoxic lymphocytes
Abstract:
2-Fluoroadenosine (F-Ado) is a potent inhibitor of lymphocyte-mediated cytolysis studied in vitro. The inhibition of cytolysis by F-Ado was potentiated markedly by an inhibiotr (Ro 20-1724) of adenosine 3':5'-monophosphate (cAMP) phosphodiesterase and, unlike the inhibition caused by adenosine, was irreversible when the cytotoxic lymphocytes were incubated with F-Ado and were then washed free of exogenous nucleoside. Incubation of cytotoxic lymphocytes with F-Ado resulted in the rapid, dose-dependent formation of 2-fluoroadenosine 5'-triphosphate (F-ATP); the build-up of F-ATP within these cells was accompanied by a reciprocal depletion of ATP. Once formed intracellularly, the F-ATP was not diminished during a subsequent 30-min incubation of the cells in F-Ado-free medium. 2-Fluoroadenosine 3':5'-monophosphate (F-cAMP), a novel compound, was synthesized chemically. This cAMP analogue was found to be highly cross-reactive in a radioimmunoassay specific for cAMP and to be equipotent to cAMP in its ability to activate a crude preparation of protein kinase derived from rat brain. A column chromatographic procedure was devised whereby F-cAMP and cAMP could be purified simultaneously from tissue extracts. Treatment of cytotoxic lymphocytes with F-Ado resulted in the formation of presumptive F-cAMP in amounts greater than that of cAMP, as determined by the concentration of F-Ado added to the medium and was not observed when the lymphocytes were incubated with either adenosine or 2-chloroadenosine, two agents which caused large increases in cAMP. The simultaneous presence of Ro 20-1724 enhances greatly the formation of F-cAMP from F-Ado without affecting the pool size of F-ATP. Removal of exogenous F-Ado from cells previously incubated with this drug and subsequent incubation of these cells in drug-free medium did not result in a substantial reduction in intracellular F-Ado (via prior incubation with F-Ado); 2'-deoxyadenosine was also effective in this capacity, while 9-beta-D-arabinofulanosyladenine was without effect. The level of cAMP was elevated transiently, in a dose-dependent manner, by F-Ado, and returned to control value after removal of exogenous F-Ado from the cells. Ro 20-1724 enhanced greatly this transient elevation of cAMP caused by F-Ado.
Insights
2-Fluoroadenosine (F-Ado) irreversibly inhibits lymphocyte cytolysis by forming F-ATP and F-cAMP. Ro 20-1724 potentiates these effects, highlighting F-Ado
Area of Science:
- Immunology
- Biochemistry
- Cell Biology
Background:
- 2-Fluoroadenosine (F-Ado) is an in vitro inhibitor of lymphocyte-mediated cytolysis.
- Adenosine 3':5'-monophosphate (cAMP) plays a role in cellular signaling pathways.
- Phosphodiesterase inhibitors modulate intracellular cAMP levels.
Purpose of the Study:
- To investigate the mechanism of F-Ado-induced inhibition of lymphocyte cytolysis.
- To explore the role of cAMP in F-Ado's cytotoxic effects.
- To characterize the intracellular metabolites of F-Ado.
Main Methods:
- In vitro studies using cytotoxic lymphocytes.
- Incubation with F-Ado and Ro 20-1724 (a phosphodiesterase inhibitor).
- Measurement of intracellular F-ATP, ATP, and cAMP levels using biochemical assays and radioimmunoassay.
- Synthesis and characterization of 2-fluoroadenosine 3':5'-monophosphate (F-cAMP).
Main Results:
- F-Ado treatment led to irreversible inhibition of cytolysis and intracellular formation of 2-fluoroadenosine 5'-triphosphate (F-ATP), with a reciprocal decrease in ATP.
- A novel cAMP analogue, F-cAMP, was synthesized and found to be biologically active.
- F-Ado induced the formation of F-cAMP in lymphocytes, an effect potentiated by Ro 20-1724.
- F-Ado also caused a transient, dose-dependent increase in cellular cAMP levels, further enhanced by Ro 20-1724.
Conclusions:
- F-Ado's irreversible inhibition of lymphocyte cytolysis is mediated by intracellular conversion to F-ATP and F-cAMP.
- The potentiation of F-Ado's effects by Ro 20-1724 suggests a significant role for cAMP modulation in its mechanism of action.
- F-Ado represents a promising agent for modulating lymphocyte function, with potential therapeutic implications.