Laurenza A, Khandelwal Y, De Souza N J, Rupp R H, Metzger H, Seamon K B
Mol Pharmacol. 1987 Jul;32(1):133-9.
Analogues of forskolin that are more soluble in water than forskolin have been synthesized and tested for their ability to interact with adenylate cyclase. These analogues are esterified with various heterocyclic amino acids at the 6 beta-hydroxyl position of forskolin or at the 6 beta-hydroxyl or 7 beta-hydroxyl position of 7-desacetyl forskolin. Analogues were tested for their ability to activate rat brain adenylate cyclase, activate detergent-solubilized rat brain adenylate cyclase, increase cyclic AMP in intact S49 wild-type cells, and inhibit the binding of 3H-forskolin to rat brain membranes. Forskolin activated rat brain adenylate cyclase with an EC50 of 4 microM and increased cyclic AMP in intact S49 cells with an EC50 of 5 microM. Analogues esterified at the 7 beta-hydroxyl position had EC50 values that ranged from 4 microM to 15 microM for activating adenylate cyclase in membranes and solubilized preparations, and for increasing cyclic AMP in S49 cells. Analogues esterified at the 6 beta-hydroxyl position with no acyl group at the 7 beta-hydroxyl position were generally less potent than the corresponding 7-acyl analogues with EC50 values that ranged from 30 microM to 100 microM. Interestingly, the diacyl analogues of forskolin containing an acetate group at the 7 beta-hydroxyl position and esterified with heterocyclic amino acids at the 6 beta-hydroxyl position were very potent at stimulating adenylate cyclase, with EC50 values that ranged from 1 microM to 25 microM. The 7-acyl analogues and the 6,7-diacyl analogues inhibited the binding of 3H-forskolin to rat brain membranes with IC50 values that ranged from 20 microM to 70 microM, while the 6-acyl analogues had much higher IC50 values that ranged from 100 nM to 375 nM. Aqueous solutions of forskolin were also produced by dissolving forskolin in solutions of hydroxypropyl-gamma-cyclodextrin. These aqueous solutions of forskolin were equipotent with alcoholic solutions of forskolin in stimulating adenylate cyclase. In conclusion, water-soluble derivatives of forskolin may be useful for increasing cyclic AMP in broken cell preparations or in intact cell preparations where the presence of organic solvents, which are necessary to solubilize forskolin, are detrimental. Alternatively, aqueous solutions of forskolin can be produced by dissolving forskolin in solutions of hydroxypropyl-gamma-cyclodextrin.
已合成了比福司可林在水中溶解度更高的福司可林类似物,并测试了它们与腺苷酸环化酶相互作用的能力。这些类似物在福司可林的6β-羟基位置或7-去乙酰基福司可林的6β-羟基或7β-羟基位置用各种杂环氨基酸进行酯化。测试了类似物激活大鼠脑腺苷酸环化酶、激活去污剂溶解的大鼠脑腺苷酸环化酶、增加完整S49野生型细胞中环状AMP以及抑制3H-福司可林与大鼠脑膜结合的能力。福司可林激活大鼠脑腺苷酸环化酶的EC50为4μM,增加完整S49细胞中环状AMP的EC50为5μM。在7β-羟基位置酯化的类似物激活膜和溶解制剂中腺苷酸环化酶以及增加S49细胞中环状AMP的EC50值范围为4μM至15μM。在6β-羟基位置酯化且7β-羟基位置无酰基的类似物通常比相应的7-酰基类似物效力低,其EC50值范围为30μM至100μM。有趣的是,在7β-羟基位置含有乙酸酯基团并在6β-羟基位置用杂环氨基酸酯化的福司可林二酰基类似物在刺激腺苷酸环化酶方面非常有效,其EC50值范围为1μM至25μM。7-酰基类似物和6,7-二酰基类似物抑制3H-福司可林与大鼠脑膜结合的IC50值范围为20μM至70μM,而6-酰基类似物的IC50值要高得多,范围为100 nM至375 nM。通过将福司可林溶解在羟丙基-γ-环糊精溶液中也制备了福司可林的水溶液。这些福司可林水溶液在刺激腺苷酸环化酶方面与福司可林醇溶液等效。总之,福司可林的水溶性衍生物可用于在破碎细胞制剂或完整细胞制剂中增加环状AMP,在这些制剂中,溶解福司可林所需的有机溶剂的存在是有害的。或者,福司可林的水溶液可通过将福司可林溶解在羟丙基-γ-环糊精溶液中制备。