Wt1在睾丸发育过程中负向调节β-连环蛋白信号通路。
Wt1 negatively regulates beta-catenin signaling during testis development.
作者信息
Chang Hao, Gao Fei, Guillou Florian, Taketo Makoto M, Huff Vicki, Behringer Richard R
机构信息
The University of Texas Graduate School of Biomedical Sciences at Houston, Houston, TX 77030, USA.
出版信息
Development. 2008 May;135(10):1875-85. doi: 10.1242/dev.018572. Epub 2008 Apr 9.
beta-Catenin, as an important effector of the canonical Wnt signaling pathway and as a regulator of cell adhesion, has been demonstrated to be involved in multiple developmental processes and tumorigenesis. beta-Catenin expression was found mainly on the Sertoli cell membrane starting from embryonic day 15.5 in the developing testes. However, its potential role in Sertoli cells during testis formation has not been examined. To determine the function of beta-catenin in Sertoli cells during testis formation, we either deleted beta-catenin or expressed a constitutively active form of beta-catenin in Sertoli cells. We found that deletion caused no detectable abnormalities. However, stabilization caused severe phenotypes, including testicular cord disruption, germ cell depletion and inhibition of Müllerian duct regression. beta-Catenin stabilization caused changes in Sertoli cell identity and misregulation of inter-Sertoli cell contacts. As Wt1 conditional knockout in Sertoli cells causes similar phenotypes to our stabilized beta-catenin mutants, we then investigated the relationship of Wt1 and beta-catenin in Sertoli cells and found Wt1 inhibits beta-catenin signaling in these cells during testis development. Wt1 deletion resulted in upregulation of beta-catenin expression in Sertoli cells both in vitro and in vivo. Our study indicates that Sertoli cell expression of beta-catenin is dispensable for testis development. However, the suppression of beta-catenin signaling in these cells is essential for proper testis formation and Wt1 is a negative regulator of beta-catenin signaling during this developmental process.
β-连环蛋白作为经典Wnt信号通路的重要效应分子以及细胞黏附的调节因子,已被证明参与多种发育过程和肿瘤发生。在发育中的睾丸中,从胚胎第15.5天开始,β-连环蛋白表达主要位于支持细胞膜上。然而,其在睾丸形成过程中对支持细胞的潜在作用尚未得到研究。为了确定β-连环蛋白在睾丸形成过程中对支持细胞的功能,我们在支持细胞中删除了β-连环蛋白或表达了一种组成型活性形式的β-连环蛋白。我们发现删除β-连环蛋白未引起可检测到的异常。然而,β-连环蛋白的稳定化导致了严重的表型,包括睾丸索破坏、生殖细胞耗竭和苗勒管退化抑制。β-连环蛋白的稳定化导致支持细胞身份改变以及支持细胞间接触的失调。由于支持细胞中Wt1条件性敲除导致与我们的稳定化β-连环蛋白突变体相似的表型,我们随后研究了支持细胞中Wt1与β-连环蛋白的关系,发现Wt1在睾丸发育过程中抑制这些细胞中的β-连环蛋白信号。Wt1的缺失导致支持细胞中β-连环蛋白表达在体外和体内均上调。我们的研究表明,支持细胞中β-连环蛋白的表达对于睾丸发育并非必需。然而,抑制这些细胞中的β-连环蛋白信号对于正常睾丸形成至关重要,并且Wt1是此发育过程中β-连环蛋白信号的负调节因子。
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