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Cyp17a1 和 Cyp19a1 在斑马鱼睾丸中受雌激素的影响存在差异。

Cyp17a1 and Cyp19a1 in the zebrafish testis are differentially affected by oestradiol.

机构信息

INERIS, Direction des Risques Chroniques, Pôle VIVA, Unité d'écotoxicologie in vitro et in vivo, BP2, 60550 Verneuil-en-Halatte, France.

出版信息

J Endocrinol. 2013 Feb 25;216(3):375-88. doi: 10.1530/JOE-12-0509. Print 2013 Mar.

Abstract

Oestrogens can affect expression of genes encoding steroidogenic enzymes in fish gonads. However, little information is available on their effects at the protein level. In this context, we first analysed the expression of key steroidogenic enzyme genes and proteins in zebrafish testis, paying attention also to other cell types than Leydig cells. Gene expression was analysed by quantitative PCR on fluorescence-activated cell-sorting fractions coupled or not to differential plating, while protein synthesis was studied by immunohistochemistry using specific antibodies against zebrafish Cyp17a1, Cyp19a1a and Cyp19a1b. Furthermore, we have evaluated the effect of oestrogen treatment (17β-oestradiol (E(2)), 10 nM) on the localization of these enzymes after 7 and 14 days of in vivo exposure in order to study how oestrogen-mediated modulation of their expression is linked to oestrogen effects on spermatogenesis. The major outcomes of this study are that Leydig cells express Cyp17a1 and Cyp19a1a, while testicular germ cells express Cyp17a1 and both, Cyp19a1a and Cyp19a1b. As regards Cyp17a1, both protein and mRNA seem to be quantitatively dominating in Leydig cells. Moreover, E(2) exposure specifically affects only Leydig cell Cyp17a1 synthesis, preceding the disruption of spermatogenesis. The oestrogen-induced suppression of the androgen production capacity in Leydig cells is a major event in altering spermatogenesis, while germ cell steroidogenesis may have to be fuelled by precursors from Leydig cells. Further studies are needed to elucidate the functionality of steroidogenic enzymes in germ cells and their potential role in testicular physiology.

摘要

雌激素可影响鱼类性腺中编码类固醇生成酶的基因表达。然而,关于其在蛋白质水平的影响的信息很少。在这种情况下,我们首先分析了斑马鱼睾丸中关键类固醇生成酶基因和蛋白质的表达,同时也注意到了除莱迪希细胞以外的其他细胞类型。通过荧光激活细胞分选(FACS)的荧光定量 PCR 分析了基因表达,同时使用针对斑马鱼 Cyp17a1、Cyp19a1a 和 Cyp19a1b 的特异性抗体通过免疫组织化学研究了蛋白质合成。此外,我们评估了雌激素处理(17β-雌二醇(E2),10 nM)对体内暴露 7 和 14 天后这些酶定位的影响,以研究雌激素对生殖细胞生成的影响如何与雌激素对其表达的调节相关。这项研究的主要结果是,莱迪希细胞表达 Cyp17a1 和 Cyp19a1a,而睾丸生殖细胞表达 Cyp17a1 和 Cyp19a1a 和 Cyp19a1b。就 Cyp17a1 而言,蛋白质和 mRNA 似乎在数量上都在莱迪希细胞中占主导地位。此外,E2 暴露仅特异性地影响莱迪希细胞 Cyp17a1 的合成,随后破坏生殖细胞生成。雌激素对莱迪希细胞雄激素产生能力的抑制是改变生殖细胞生成的主要事件,而生殖细胞类固醇生成可能必须由莱迪希细胞的前体提供燃料。需要进一步的研究来阐明生殖细胞中类固醇生成酶的功能及其在睾丸生理学中的潜在作用。

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