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甾体和非甾体氨基磺酸酯作为类固醇硫酸酯酶的有效抑制剂。

Steroidal and nonsteroidal sulfamates as potent inhibitors of steroid sulfatase.

作者信息

Woo L W, Howarth N M, Purohit A, Hejaz H A, Reed M J, Potter B V

机构信息

Department of Medicinal Chemistry, School of Pharmacy and Pharmacology, University of Bath, Claverton Down, U.K.

出版信息

J Med Chem. 1998 Mar 26;41(7):1068-83. doi: 10.1021/jm970527v.

Abstract

Synthetic routes to potent steroidal and nonsteroidal sulfamate-based active site-directed inhibitors of the enzyme steroid sulfatase, a topical target in the treatment of postmenopausal women with hormone-dependent breast cancer, are described. Novel compounds were examined for estrone sulfatase (E1-STS) inhibition in intact MCF-7 breast cancer cells and placental microsomes. Reaction of the sodium salt of estrone with sulfamoyl chloride gave estrone 3-O-sulfamate (EMATE, 2) which inhibits E1-STS activity potently (> 99% at 0.1 microM in intact MCF-7 cells, IC50 = 65 pM) in a time- and concentration-dependent manner, suggesting that EMATE is an active site-directed inhibitor. EMATE is also active in vivo orally. 5,6,7,8-Tetrahydronaphthalene 2-O-sulfamate (7) and its N-methylated derivatives (8 and 9) were synthesized, and 7 inhibits the E1-STS activity in intact MCF-7 cells by 79% at 10 microM. 4-Methylcoumarin 7-O-sulfamate (COUMATE) and its derivatives (14, 16, and 18) were prepared to extend this series of nonsteroidal inhibitors, and COUMATE reduces the E1-STS activity in placental microsomes by > 90% at 10 microM. Although the orally active COUMATE is less potent than EMATE as an active site-directed inhibitor, it has the important advantage of being nonestrogenic. Analogues (20, 22, 24, 26, 27, 31, 33, 39, and 44) of COUMATE were synthesized to study its structure-activity relationships, and sulfamates of tetralones (46 and 48) and indanones (49, 51, and 53) were also prepared. While most of these compounds were found to inhibit E1-STS activity less effectively than COUMATE, one analogue, 3,4-dimethylcoumarin 3-O-sulfamate (24), was found to be some 12-fold more potent than COUMATE as an E1-STS inhibitor in intact MCF-7 cells (IC50 = 30 nM for 24, cf. 380 nM for COUMATE). Hence, highly potent sulfamate-based inhibitors of steroid sulfatase, such as EMATE, COUMATE, and 24, possess therapeutic potential and will allow the importance of estrogen formation in breast tumors via the E1-STS pathway to be assessed. A pharmacophore for active site-directed sulfatase inhibition is proposed.

摘要

本文描述了合成强效甾体和非甾体氨基磺酸酯类活性位点导向的类固醇硫酸酯酶抑制剂的路线,该酶是治疗激素依赖性乳腺癌的绝经后女性的局部靶点。研究了新型化合物对完整MCF-7乳腺癌细胞和胎盘微粒体中雌酮硫酸酯酶(E1-STS)的抑制作用。雌酮钠盐与氨甲酰氯反应生成雌酮3-O-氨基磺酸酯(EMATE,2),其能以时间和浓度依赖性方式有效抑制E1-STS活性(在完整MCF-7细胞中,0.1μM时抑制率>99%,IC50 = 65 pM),表明EMATE是一种活性位点导向抑制剂。EMATE口服给药在体内也具有活性。合成了5,6,7,8-四氢萘2-O-氨基磺酸酯(7)及其N-甲基化衍生物(8和9),7在10μM时可使完整MCF-7细胞中的E1-STS活性抑制79%。制备了4-甲基香豆素7-O-氨基磺酸酯(COUMATE)及其衍生物(14、16和18)以扩展这一系列非甾体抑制剂,COUMATE在10μM时可使胎盘微粒体中的E1-STS活性降低>90%。尽管口服活性的COUMATE作为活性位点导向抑制剂的效力不如EMATE,但其具有非雌激素性这一重要优势。合成了COUMATE的类似物(20、22、24、26、27、31、33、39和44)以研究其构效关系,还制备了四氢萘酮(46和48)和茚满酮(49、51和53)的氨基磺酸酯。虽然发现这些化合物中的大多数抑制E1-STS活性的效果不如COUMATE,但发现一种类似物3,4-二甲基香豆素3-O-氨基磺酸酯(24)作为完整MCF-7细胞中E1-STS抑制剂的效力比COUMATE高约12倍(24的IC50 = 30 nM,而COUMATE为380 nM)。因此,高效的基于氨基磺酸酯的类固醇硫酸酯酶抑制剂,如EMATE、COUMATE和24,具有治疗潜力,将有助于评估通过E1-STS途径在乳腺肿瘤中雌激素形成的重要性。提出了活性位点导向的硫酸酯酶抑制的药效团。

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