首页> 外文期刊>Journal of Medicinal Chemistry >Synthesis and biological activity of the superestrogen (E)-17-oximino-3-O-sulfamoyl-1,3,5(10)-estratriene: x-ray crystal structure of (E)-17-oximino-3-hydroxy-1,3,5(10)-estratriene.
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Synthesis and biological activity of the superestrogen (E)-17-oximino-3-O-sulfamoyl-1,3,5(10)-estratriene: x-ray crystal structure of (E)-17-oximino-3-hydroxy-1,3,5(10)-estratriene.

机译:(E)-17-肟基-3-O-氨磺酰基-1,3,5(10)-雌三烯的合成及生物活性:(E)-17-肟基-3-羟基-的X射线晶体结构1,3,5(10)-雌三烯。

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Steroid sulfatases regulate the formation of estrogenic steroids which can support the growth of endocrine-dependent breast tumors. Therefore, the development of potent steroid sulfatase inhibitors could have considerable therapeutic potential. Several such inhibitors have now been developed including estrone 3-O-sulfamate (EMATE, 1), which shows potent active site-directed inhibition. However, EMATE was subsequently shown to be also a potent estrogen. In an attempt to reduce the estrogenicity while retaining the potent sulfatase inhibitory properties associated with this type of molecule, (E)-17-oximino-3-O-sulfamoyl-1,3,5(10)-estratriene (5) (estrone oxime 3-O-sulfamate, OMATE) was synthesized. The X-ray crystal structure of (E)-17-oximino-3-hydroxy-1,3,5(10)-estratriene (4) (estrone oxime) demonstrated the presence of only one geometrical isomer [anti-isomer, (E)]. OMATE potently inhibited estrone sulfatase (E1-STS) activity and was similar to EMATE (>99% inhibition at 0.1 microM in MCF-7 breast cancer cells). It was also evaluated in vivo for its estrogenicity and ability to inhibit sulfatase activity. While it was equipotent with EMATE in vivo as a sulfatase inhibitor, it surprisingly had a stimulatory effect on uterine growth in ovariectomized rats about 1.5-fold greater than that of EMATE. Thus, OMATE possesses potential as a superestrogen and modification at C-17 is identified as a useful route for enhancement of estrogenicity in sulfamate-based estrogens.
机译:类固醇硫酸盐调节雌激素类固醇的形成,可支持内分泌依赖性乳腺肿瘤的生长。因此,开发有效的甾族硫酸酯酶抑制剂可能具有相当大的治疗潜力。现在已经开发了几种这样的抑制剂,包括雌酮3-O-氨基磺酸酯(EMATE,1),它显示出有效的活性定点抑制作用。但是,随后证明EMATE也是有效的雌激素。为了降低雌激素性,同时保留与此类分子相关的强硫酸酯酶抑制特性,(E)-17-肟基-3-O-氨磺酰基-1,3,5(10)-雌三烯(5)(雌酮合成了肟3-O-氨基磺酸盐(OMATE)。 (E)-17-oximino-3-hydroxy-1,3,5(10)-雌三烯(4)(雌酮肟)的X射线晶体结构证明仅存在一种几何异构体[反异构体,( E)]。 OMATE有效抑制雌酮硫酸酯酶(E1-STS)活性,与EMATE相似(MCF-7乳腺癌细胞在0.1 microM时抑制率> 99%)。还对其体内的雌激素性和抑制硫酸酯酶活性的能力进行了评估。尽管它与EMATE在体内具有硫酸酯酶抑制剂的作用相当,但令人惊讶的是,它对去卵巢大鼠的子宫生长具有刺激作用,是EMATE的1.5倍。因此,OMATE具有作为超雌激素的潜力,C-17处的修饰被认为是增强基于氨基磺酸盐的雌激素中雌激素性的有用途径。

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