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豚鼠绒毛膜和子宫的硫酸化作用:对雌酮和雌二醇的不同作用。

Sulfation by guinea pig chorion and uterus: differential action towards estrone and estradiol.

作者信息

Hobkirk R

机构信息

Department of Biochemistry, University of Western Ontario, London, Canada.

出版信息

J Steroid Biochem Mol Biol. 1996 Dec;59(5-6):479-84. doi: 10.1016/s0960-0760(96)00128-8.

Abstract

The activities of estrogen sulfotransferase, estrogen sulfatase and estradiol 17beta-dehydrogenase change considerably in the guinea pig uterine compartment during gestation. This study was undertaken to inquire if the chorion membrane could influence the pattern of estrogen resulting when substrates were applied to the fetal surface of the chorion while it was attached, late in gestation, to the uterine wall. This tissue system resulted in a differential handling of estrone and estradiol. Estrone was largely excluded from the tissue, remaining mainly in free steroidal form. Estradiol was considerably converted to its 3-sulfate which was mainly retained by the chorion. Parallel experiments with chorion and uterus separately failed to discriminate between the two substrates. Hydrolysis of estrone sulfate and estradiol 3-sulfate was similar in all three tissue systems. It appears that the interaction of chorion with uterus late in gestation causes a difference in tissue action towards the two steroid substrates of closely related structure. The results suggest a limitation in tissue uptake of estrone compared with estradiol, or a much greater sulfotransferase activity towards estradiol. Whole cytosols of late gestational chorion catalyzed sulfation of estradiol at about double the velocity of estrone. This may only partly account for the difference in the intact chorion-uterine tissue system.

摘要

在豚鼠妊娠期,子宫内硫酸雌二醇转移酶、硫酸酯酶和雌二醇17β-脱氢酶的活性会发生显著变化。本研究旨在探究当在妊娠晚期胎膜与子宫壁相连时,将底物应用于胎膜胎儿表面,胎膜是否会影响雌激素的生成模式。该组织系统对雌酮和雌二醇的处理方式不同。雌酮大部分被组织排除,主要以游离甾体形式存在。雌二醇大量转化为其3-硫酸盐,主要保留在胎膜中。分别对胎膜和子宫进行的平行实验未能区分这两种底物。在所有三种组织系统中,硫酸雌酮和硫酸雌二醇3-硫酸盐的水解情况相似。看来妊娠晚期胎膜与子宫的相互作用导致了组织对两种结构密切相关的甾体底物的作用存在差异。结果表明,与雌二醇相比,雌酮的组织摄取存在局限性,或者对雌二醇的硫酸转移酶活性要高得多。妊娠晚期胎膜的全细胞溶胶催化雌二醇硫酸化的速度约为雌酮的两倍。这可能只是部分解释了完整胎膜-子宫组织系统中的差异。

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