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Foxl2通过与启动子结合以及与ad4结合蛋白/类固醇生成因子1相互作用,以雌性特异性方式上调芳香化酶基因转录。

Foxl2 up-regulates aromatase gene transcription in a female-specific manner by binding to the promoter as well as interacting with ad4 binding protein/steroidogenic factor 1.

作者信息

Wang De-Shou, Kobayashi Tohru, Zhou Lin-Yan, Paul-Prasanth Bindhu, Ijiri Shigeho, Sakai Fumie, Okubo Kataaki, Morohashi Ken-ichirou, Nagahama Yoshitaka

机构信息

Laboratory of Reproductive Biology, Department of Developmental Biology, National Institute for Basic Biology, Okazaki 444-8585, Japan.

出版信息

Mol Endocrinol. 2007 Mar;21(3):712-25. doi: 10.1210/me.2006-0248. Epub 2006 Dec 27.

Abstract

Increasing evidence suggests the crucial role of estrogen in ovarian differentiation of nonmammalian vertebrates including fish. The present study has investigated the plausible role of Foxl2 in ovarian differentiation through transcriptional regulation of aromatase gene, using monosex fry of tilapia. Foxl2 expression is sexually dimorphic, like Cyp19a1, colocalizing with Cyp19a1 and Ad4BP/SF-1 in the stromal cells and interstitial cells in gonads of normal XX and sex-reversed XY fish, before the occurrence of morphological sex differentiation. Under in vitro conditions, Foxl2 binds to the sequence ACAAATA in the promoter region of the Cyp19a1 gene directly through its forkhead domain and activates the transcription of Cyp19a1 with its C terminus. Foxl2 can also interact through the forkhead domain with the ligand-binding domain of Ad4BP/SF-1 to form a heterodimer and enhance the Ad4BP/SF-1 mediated Cyp19a1 transcription. Disruption of endogenous Foxl2 in XX tilapia by overexpression of its dominant negative mutant (M3) induces varying degrees of testicular development with occasional sex reversal from ovary to testis. Such fish display reduced expression of Cyp19a1 as well as a drop in the serum levels of 17beta-estradiol and 11-ketotestosterone. Although the XY fish with wild-type tilapia Foxl2 (tFoxl2) overexpression never exhibited a complete sex reversal, there were significant structural changes, such as tissue degeneration, somatic cell proliferation, and induction of aromatase, with increased serum levels of 17beta-estradiol and 11-ketotestosterone. Altogether, these results suggest that Foxl2 plays a decisive role in the ovarian differentiation of the Nile tilapia by regulating aromatase expression and possibly the entire steroidogenic pathway.

摘要

越来越多的证据表明,雌激素在包括鱼类在内的非哺乳动物脊椎动物的卵巢分化中起着关键作用。本研究利用罗非鱼单性鱼苗,通过对芳香化酶基因的转录调控,研究了Foxl2在卵巢分化中的可能作用。Foxl2的表达具有性别二态性,与Cyp19a1一样,在正常XX和性逆转XY鱼性腺的基质细胞和间质细胞中,在形态学性别分化发生之前,与Cyp19a1和Ad4BP/SF-1共定位。在体外条件下,Foxl2通过其叉头结构域直接与Cyp19a1基因启动子区域的ACAAATA序列结合,并通过其C末端激活Cyp19a1的转录。Foxl2还可以通过叉头结构域与Ad4BP/SF-1的配体结合结构域相互作用,形成异二聚体,并增强Ad4BP/SF-1介导的Cyp19a1转录。通过过表达其显性负突变体(M3)破坏XX罗非鱼体内的内源性Foxl2,会诱导不同程度的睾丸发育,偶尔会出现从卵巢到睾丸的性逆转。这些鱼表现出Cyp19a1表达降低,以及血清17β-雌二醇和11-酮睾酮水平下降。虽然过表达野生型罗非鱼Foxl2(tFoxl2)的XY鱼从未表现出完全的性逆转,但出现了显著的结构变化,如组织退化、体细胞增殖和芳香化酶的诱导,同时血清17β-雌二醇和11-酮睾酮水平升高。总之,这些结果表明,Foxl2通过调节芳香化酶表达以及可能的整个类固醇生成途径,在尼罗罗非鱼的卵巢分化中起决定性作用。

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