Forskolin: unique diterpene activator of adenylate cyclase in membranes and in intact cells.
Форсколин: уникальный дитерпеновый активатор аденилатциклазы в мембранах и интактных клетках
1981-06-01
SCID: 54.1/nqdczx2t
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GTP potentiationadenylate cyclasecyclic AMPforskolinrat cerebral cortex
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Abstract (AI)
The diterpene, forskolin [half-maximal effective concentration (EC50), 5-10 microM] activates adenylate cyclase [ATP pyrophosphate-lyase (cyclizing), EC 4.6.1.1] in rat cerebral cortical membranes in a rapid and reversible manner. Activation is not dependent on exogenous guanyl nucleotides and is not inhibited by guanosine 5'-O-(2-thiodiphosphate) when assayed with adenosine 5'-[beta, gamma-imido]triphosphate as substrate. GTP and GDP potentiate responses to forskolin. The activations of adenylate cyclase by forskolin and guanosine 5'-[beta, gamma-imido]triphosphate p[NH]ppG are not additive, whereas activations by forskolin and fluoride are additive or partially additive. The responses of adenylate cyclase to forskolin or fluoride are not inhibited by manganese ions, whereas the response to p[NH]ppG is completely blocked. Activation of adenylate cyclase by forskolin is considerably greater than the activation by fluoride in membranes from rat cerebellum, striatum, heart, and liver, while being about equal or less than the activation by fluoride in other tissues. Forskolin (EC50, 25 microM) causes a rapid and readily reversible 35-fold elevation of cyclic AMP in rat cerebral cortical slices that is not blocked by a variety of neurotransmitter antagonists. Low concentrations of forskolin (1 microM) augment the response of cyclic AMP-generating systems in brain slices to norepinephrine, isoproterenol, histamine, adenosine, prostaglandin E2, and vasoactive intestinal peptide. Forskolin would appear to activate adenylate cyclase through a unique mechanism involving both direct activation of the enzyme and facilitation or potentiation of the modulation of enzyme activity by receptors or the guanyl nucleotide-binding subunit, or both.
Key Findings
1
Forskolin activation is not inhibited by GDPβS and is nonadditive with p[NH]ppG, indicating interaction with guanyl nucleotide-mediated enzyme regulation.
2
Forskolin and fluoride responses are additive or partially additive and resistant to manganese inhibition, distinguishing forskolin’s mechanism from p[NH]ppG activation.
3
Forskolin produces tissue-dependent adenylate cyclase activation, exceeding fluoride stimulation in rat cerebellum, striatum, heart, and liver membranes.
4
Forskolin rapidly and reversibly activates adenylate cyclase in rat cortical membranes, with an EC50 of 5–10 μM, independently of exogenous guanyl nucleotides.
5
In intact cortical slices, forskolin rapidly and reversibly raises cyclic AMP 35-fold and potentiates responses to multiple neurotransmitters and hormones without blockade by neurotransmitter antagonists.
6
The findings support a unique mechanism involving direct adenylate cyclase activation together with facilitation of receptor- or guanyl nucleotide subunit-mediated regulation.
Research Object
Adenylate cyclase and cyclic AMP-generating systems in rat cerebral cortical membranes and intact brain slices, as well as in membranes from other rat tissues
Research Subject
Forskolin-induced activation and modulation of adenylate cyclase, including its direct mechanism, interactions with guanyl nucleotides and receptors, tissue dependence, and potentiation of cyclic AMP responses
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1981-06-01
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