Structure-activity relationships for activation of adenylate cyclase by the diterpene forskolin and its derivatives
Структурно-функциональные взаимосвязи при активации аденилатциклазы дитерпеном форсколином и его производными
1983-03-01
SCID: 54.1/er3s3xyt
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adenylate cyclase activationcyclic AMP generationditerpene derivativesforskolinstructure-activity relationships
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Abstract (AI)
Forskolin (7 beta-acetoxy-8,13-epoxy-1 alpha, 6 beta, 9 alpha-trihydroxylabd-14-en-11-one), a diterpene from the Indian plant Coleus forskohlii, activates cyclic AMP generating systems in a number of mammalian tissues in a rapid and reversible fashion. Derivatives of forskolin have been tested for their ability to stimulate membrane adenylate cyclase from rat brain and rabbit heart, as well as cyclic AMP generation in guinea pig brain vesicular preparations, a model system for intact cells. Derivatives at the 6 beta- and 7 beta-hydroxy functions retain activity, but none have greater activity than that of forskolin. Reduction of the 11-keto function affords an active 11 beta-hydroxy derivative. Reduction of the 14,15-vinyl (alpha) substituent reduces activity, while epoxidation abolishes activity. Derivatization or lack of the 1 alpha- and 9 alpha-hydroxy functions results in a marked reduction in activity, emphasizing the importance of the alpha aspect of the molecule. However, the 1 alpha, 6 beta-di-O-acetyl derivative does retain activity. None of the inactive derivatives, which include the 14,15-epoxy, the 1,9-dideoxy, and the 1,6-diketo derivatives, antagonize the stimulatory effects of forskolin.
Key Findings
1
Derivatives modifying the 6β- and 7β-hydroxy groups retain activity, but none surpass forskolin’s stimulatory potency.
2
Forskolin rapidly and reversibly activates adenylate cyclase in mammalian membrane systems and stimulates cyclic AMP generation in intact-cell model preparations.
3
Inactive derivatives, including 14,15-epoxy, 1,9-dideoxy, and 1,6-diketo compounds, do not antagonize forskolin’s stimulatory effects.
4
Modification or removal of the 1α- and 9α-hydroxy groups markedly reduces activity, highlighting the importance of these α-oriented functions; nevertheless, the 1α,6β-di-O-acetyl derivative remains active.
5
Reduction of the 11-keto group preserves activity as an active 11β-hydroxy derivative, whereas reducing or epoxidizing the 14,15-vinyl substituent decreases or abolishes activity.
Research Object
Forskolin and its derivatives in mammalian cyclic AMP-generating systems, including membrane adenylate cyclase from rat brain and rabbit heart and guinea pig brain vesicular preparations
Research Subject
Structure–activity relationships governing the ability of forskolin derivatives to stimulate adenylate cyclase and cyclic AMP generation
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1983-03-01
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