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Cloning, expression and characterization of three types of 17β-hydroxysteroid dehydrogenases from the Nile tilapia, Oreochromis niloticus

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JOURNAL OF MOLECULAR ENDOCRINOLOGY
卷 35, 期 1, 页码 103-116

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BIOSCIENTIFICA LTD
DOI: 10.1677/jme.1.01801

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In order to elucidate the roles of 17 beta-HSDs in fish gonadal steroidogenesis, three types of 17 beta-HSDs (17 beta-HSD1, 17 beta-HSD8 and putative 17 beta-HSD12) were cloned and characterized from the Nile tilapia, Oreochromis niloticus. The cloned cDNAs of 17 beta-HSD type 1, 8 and 12 were 1504, 1006 and 1930 bp long, with open reading frames encoding proteins of 289, 256 and 314 aminoacids, respectively. Tissue distribution pattern analyzed by RT-PCR and Northern blot showed that 17 beta-HSD1 was dominantly expressed in the ovary, while the putative 17 beta-HSD12, one of the two duplicates found in fish, is a male specific enzyme and expressed exclusively in testis (detected by RT-PCR only). On the other hand, 17 beta-HSD8 was expressed in the brain, gill, heart, liver, intestine, gonad, kidney and muscle of both male and female. Enzymatic assays of the three types of 17 beta-HSDs were performed using recombinant proteins expressed in E. coli or HEK 293 cells. Tilapia 17 beta-HSD1 expressed in E coli had the preference for NADP(H) as cofactor and could catalyze the inter-conversion between estrone and estradiol efficiently as well as the inter-conversion between androstenedione and testosterone, but less efficiently. Tilapia 17 beta-HSDB recombinant protein expressed in HEK 293 cells could catalyze the conversion of testosterone to androstenedione, as well as the inter-conversion between estrone and estradiol. However, the putative 17 beta-HSD12 expressed in E coli or in HEK 293 cells showed no conversion to any of the four substrates tested in this study. Based on enzyme characterization and tissue distribution, it is plausible to attribute crucial roles to 17 beta-HSDs in the gonadal steroidogenesis of teleosts.

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