Activation of adenylate cyclase by the diterpene forskolin does not require the guanine nucleotide regulatory protein.

Активация аденилатциклазы дитерпеном форсколином не требует регуляторного белка, связывающего гуаниновые нуклеотиды
Kenneth B. Seamon, John W. Daly
1981-10-01

adenylate cyclasecyc-S49 murine lymphoma cellsforskolinguanine nucleotide-binding proteinmanganese-independent activation
Forskolin, a novel diterpene activator of adenylate cyclase in membranes and intact cells, activates the enzyme in membranes from mutant cyc-S49 murine lymphoma cells and the soluble enzyme from rat testes. Each of these enzymes consists only of the catalytic subunit and does not have a functional guanine nucleotide-binding protein. In both cases forskolin converts the manganese-dependent enzymes to a form which does not require manganese for activity. Forskolin can also stimulate a detergent-solubilized preparation of adenylate cyclase from rat cerebral cortex. Activation of adenylate cyclase by forskolin is therefore not dependent on a perturbation of membrane structure nor does it require a functional guanine nucleotide-binding subunit.
1
A functional guanine nucleotide-regulatory subunit and perturbation of membrane structure are not required for forskolin-mediated adenylate cyclase activation.
2
Forskolin activates adenylate cyclase in mutant cyc-S49 membranes and soluble rat testis enzyme preparations lacking a functional guanine nucleotide-binding protein.
3
Forskolin converts manganese-dependent adenylate cyclase into an enzymatic form that no longer requires manganese for activity.
4
Forskolin stimulates detergent-solubilized adenylate cyclase from rat cerebral cortex, demonstrating activation outside intact membrane structures.

Adenylate cyclase preparations lacking a functional guanine nucleotide-binding regulatory protein, including mutant cyc-S49 lymphoma-cell membranes and soluble or detergent-solubilized rat-tissue enzyme

Forskolin-induced activation of adenylate cyclase and its independence from the guanine nucleotide regulatory subunit, membrane perturbation, and manganese requirement

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1981-10-01
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Kenneth B. Seamon
John W. Daly
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