Pei X F, Gupta T H, Badio B, Padgett W L, Daly J W
Laboratory of Bioorganic Chemistry, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, Maryland 20892, USA.
J Med Chem. 1998 Jun 4;41(12):2047-55. doi: 10.1021/jm9705115.
A series of tropane derivatives, related in structure to baogongteng A (1), an alkaloid from a Chinese herb, were synthesized. 6beta-Acetoxynortropane (5) had weak affinity (Ki 22 microM) for central (M1) muscarinic receptors in a [3H]quinuclidinyl benzilate binding assay but had extremely high affinity (Ki 2.6 nM) and selectivity for M2-muscarinic receptors expressed in CHO cells. It had 13-fold lower affinity for M4-receptors, 260-fold lower affinity for M3-receptors, and 8200-fold lower affinity for M1-receptors expressed in CHO cells. The 6beta-carbomethoxy analogue (14) of baogongteng A had only weak affinity for M2-muscarinic receptors, as did 6beta-carbomethoxynortropane (13) and 6beta-acetoxytropane (4). In transfected CHO cells, 6beta-acetoxynortropane (5) was an agonist at M2-receptors, based on a GTP-elicited decrease in affinity, and a full agonist with an IC50 of 11 nM at M4-receptors, based on inhibition of cyclic AMP accumulation, while being a full agonist at M1-receptors with an EC50 of 23 nM and a partial agonist at M3-receptors with an EC50 of 3.6 nM, based in both cases on stimulation of phosphoinositide breakdown. All of the 16 tropane derivatives had weak affinities for central alpha4beta2-nicotinic receptors with 6beta-carbomethoxynortropane (13) having the highest affinity, which was still 150-fold less than that of nicotine. 6beta-Acetoxynortropane (5) represents a potent muscarinic agonist with apparent selectivity toward M2-receptors.
合成了一系列与中国草药中的生物碱包公藤A(1)结构相关的托烷衍生物。在[3H]喹核醇基苯甲酸酯结合试验中,6β-乙酰氧基去甲托烷(5)对中枢(M1)毒蕈碱受体具有弱亲和力(Ki为22μM),但对CHO细胞中表达的M2-毒蕈碱受体具有极高的亲和力(Ki为2.6 nM)和选择性。它对CHO细胞中表达的M4受体的亲和力低13倍,对M3受体的亲和力低260倍,对M1受体的亲和力低8200倍。包公藤A的6β-羰甲氧基类似物(14)对M2-毒蕈碱受体只有弱亲和力,6β-羰甲氧基去甲托烷(13)和6β-乙酰氧基托烷(4)也是如此。在转染的CHO细胞中,基于GTP引起的亲和力降低,6β-乙酰氧基去甲托烷(5)是M2受体的激动剂;基于对环磷酸腺苷积累的抑制,它是M4受体的完全激动剂,IC50为11 nM;而基于两种情况下对磷酸肌醇分解的刺激,它是M1受体的完全激动剂,EC50为23 nM,是M3受体的部分激动剂,EC50为3.6 nM。所有16种托烷衍生物对中枢α4β2-烟碱受体的亲和力都很弱,其中6β-羰甲氧基去甲托烷(13)的亲和力最高,但仍比尼古丁低150倍。6β-乙酰氧基去甲托烷(5)是一种对M2受体具有明显选择性的强效毒蕈碱激动剂。