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鲈鱼(Dicentrarchus labrax L.)在整个发育过程和繁殖季节中性激素结合球蛋白的表达

Sex hormone-binding globulin expression in sea bass (Dicentrarchus labrax L.) throughout development and the reproductive season.

作者信息

Miguel-Queralt Solange, Blázquez Mercedes, Piferrer Francesc, Hammond Geoffrey L

机构信息

Department of Obstetrics & Gynaecology, University of British Columbia and Child and Family Research Institute, Vancouver, Canada.

出版信息

Mol Cell Endocrinol. 2007 Sep 30;276(1-2):55-62. doi: 10.1016/j.mce.2007.06.009. Epub 2007 Jul 19.

Abstract

Sex hormone-binding globulin (SHBG) transports androgens and estrogens in the blood of vertebrate species, including fish, and regulates the bioavailability and metabolic clearance of these steroids. Liver is the major site of plasma SHBG synthesis, while an SHBG homologue, known as the androgen-binding protein, is produced in testes. When shbg gene expression was examined throughout European sea bass (Dicentrarchus labrax L.) development, SHBG mRNA was clearly detectable at 7 days post-fertilization and persisted throughout embryonic development. In male and female sea bass, the liver is the principal site of shbg gene expression, as determined by SHBG mRNA analyses. Immunoreactive SHBG is present in the liver and villous stroma of the intestine in both sexes. It is also present in the interstitial space between testicular lobules, and the connective tissue surrounding the ovary in the non-reproductive season and around post-vitellogenic oocytes. Plasma SHBG levels were measured over a 10-month period as male sea bass undergo sexual maturation. Immature females of the same age were also studied over the same time interval. The mean+/-S.E.M. plasma SHBG levels in 2-year-old males and females are lower (80+/-15nM and 82+/-16nM, respectively) during the winter reproductive season (December-March) than the spring (April-June) months (144+/-32nM and 193+/-18nM, respectively). In both sexes, plasma SHBG levels start to decline 1-2 months before the reproductive season, coincident with a period of rapid weight gain, while increases after the reproductive season are not accompanied by significant changes in body weight. In addition, plasma SHBG in triploid (sterile) and diploid (fertile) male sea bass do not differ during the first spawning season. These data suggest that the decrease in plasma SHBG levels during sexual maturation in sea bass is related to nutritional or metabolic effects in relation to water temperatures and food intake, rather than changes in gonadal sex steroid production.

摘要

性激素结合球蛋白(SHBG)在包括鱼类在内的脊椎动物血液中运输雄激素和雌激素,并调节这些类固醇的生物利用度和代谢清除率。肝脏是血浆SHBG合成的主要部位,而一种称为雄激素结合蛋白的SHBG同源物则在睾丸中产生。在对欧洲海鲈(Dicentrarchus labrax L.)整个发育过程中的shbg基因表达进行检测时,在受精后7天即可清楚地检测到SHBG mRNA,并且在整个胚胎发育过程中持续存在。通过SHBG mRNA分析确定,在雄性和雌性海鲈中,肝脏是shbg基因表达的主要部位。免疫反应性SHBG存在于两性的肝脏和肠绒毛基质中。它也存在于睾丸小叶之间的间隙空间以及非繁殖季节卵巢周围的结缔组织中以及卵黄生成后卵母细胞周围。在雄性海鲈性成熟的10个月期间测量血浆SHBG水平。同时也在相同时间间隔内研究了相同年龄的未成熟雌性。在冬季繁殖季节(12月至3月),2岁雄性和雌性的平均±标准误血浆SHBG水平低于春季(4月至6月)月份(分别为80±15nM和82±16nM)(分别为144±32nM和193±18nM)。在两性中,血浆SHBG水平在繁殖季节前1-2个月开始下降,这与体重快速增加的时期一致,而繁殖季节后的增加并未伴随着体重的显著变化。此外,三倍体(不育)和二倍体(可育)雄性海鲈在第一个产卵季节的血浆SHBG没有差异。这些数据表明,海鲈性成熟期间血浆SHBG水平的降低与水温、食物摄入量相关的营养或代谢影响有关,而不是性腺性类固醇产生的变化。

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