Espey L L, Tanaka N, Adams R F, Okamura H
Department of Biology, Trinity University, San Antonio, Texas 78212.
Am J Physiol. 1991 Feb;260(2 Pt 1):E163-9. doi: 10.1152/ajpendo.1991.260.2.E163.
Hydroxyeicosatetraenoic acid methyl esters (HETEs) are lipoxygenase products of arachidonic acid that are generated along with prostaglandins (PGs) during acute inflammatory reactions. Whereas it is well known that ovarian PG levels increase during the ovulatory process, little is known about ovarian HETEs. This report compares the ovarian changes in 5-, 12-, and 15-HETE with ovarian PGE and PGF, along with progesterone, 17 alpha-hydroxyprogesterone, 4-androstene-3,17-dione, testosterone, and 17 beta-estradiol. Ovulation was induced in immature Wistar rats by sequential treatment with pregnant mare's serum gonadotropin and human chorionic gonadotropin (hCG). Follicles began rupturing 10 h after hCG treatment. The greatest correlation was among 12-HETE, 15-HETE, and progesterone, which increased to peak levels at 10 h after hCG. In contrast, the ovarian levels of 5-HETE, 17 alpha-hydroxyprogesterone, testosterone, and 17 beta-estradiol all declined sharply beginning 4 h after hCG. 2 alpha,4 alpha,7-4,5-Epoxy-17-hydroxy-4,17-dimethyl-3-oxo-androstane-2- carbonitrile (epostane), a potent inhibitor of steroid synthesis and ovulation, sharply reduced the synthesis of all five steroids within 30 min after its injection at 3 h after hCG. Among the five eicosanoids, epostane mainly inhibited 15-HETE. The results suggest that 15-HETE, along with progesterone, may have an important role in ovulation.
羟基二十碳四烯酸甲酯(HETEs)是花生四烯酸的脂氧合酶产物,在急性炎症反应过程中与前列腺素(PGs)一起生成。虽然众所周知,在排卵过程中卵巢PG水平会升高,但关于卵巢HETEs的了解却很少。本报告比较了5-、12-和15-HETE与卵巢PGE和PGF以及孕酮、17α-羟基孕酮、4-雄烯-3,17-二酮、睾酮和17β-雌二醇的卵巢变化。通过依次用孕马血清促性腺激素和人绒毛膜促性腺激素(hCG)处理,诱导未成熟Wistar大鼠排卵。hCG处理后10小时卵泡开始破裂。12-HETE、15-HETE和孕酮之间的相关性最强,它们在hCG处理后第10小时升至峰值水平。相比之下,5-HETE、17α-羟基孕酮、睾酮和17β-雌二醇的卵巢水平在hCG处理后4小时开始均急剧下降。2α,4α,7-4,5-环氧-17-羟基-4,17-二甲基-3-氧代-雄甾烷-2-腈(依波斯坦)是一种有效的类固醇合成和排卵抑制剂,在hCG处理后3小时注射后30分钟内,它能急剧降低所有五种类固醇的合成。在这五种类花生酸中,依波斯坦主要抑制15-HETE。结果表明,15-HETE与孕酮一起可能在排卵中起重要作用。