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在小鼠性别分化过程中,睾丸特异性SOX9激活的建立需要高糖代谢。

Establishment of testis-specific SOX9 activation requires high-glucose metabolism in mouse sex differentiation.

作者信息

Matoba Shogo, Hiramatsu Ryuji, Kanai-Azuma Masami, Tsunekawa Naoki, Harikae Kyoko, Kawakami Hayato, Kurohmaru Masamichi, Kanai Yoshiakira

机构信息

Department of Veterinary Anatomy, The University of Tokyo, Yayoi 1-1-1, Bunkyo-ku, Tokyo 113-8657, Japan.

出版信息

Dev Biol. 2008 Dec 1;324(1):76-87. doi: 10.1016/j.ydbio.2008.09.004. Epub 2008 Sep 18.

Abstract

In mouse sex differentiation, SRY promotes Sertoli cell differentiation via SOX9 action, resulting in testis formation. SRY/SOX9 also initiates various testis-specific morphogenic events including glycogenesis in pre-Sertoli cells, suggesting the importance of glucose storage for certain SRY/SOX9-downstream events in gonadal sex determination. However, it remains unclear which cell types and what molecular/cellular events require sex-dimorphic high-energy metabolic rate. Here we show that the establishment of SOX9 activation itself is a metabolically active process with sex-dimorphic high-energy requirements in gonadal sex differentiation. The glucose-deprivation and metabolic rescue experiments using genital ridge cultures of the XY/XX-wildtype and XX/Sry transgenic embryos demonstrated that, among the various somatic cell types, pre-Sertoli cells are the most sensitive to glucose starvation despite the differences between XX/Sry and XY genotypes. Moreover, our data showed that, in developing pre-Sertoli cells, the high-glucose metabolic state is required for the establishment of SOX9 expression through an ECM (extracellular matrix)-mediated feed-forward pathway. In contrast, the expression of SRY, SF1/Ad4Bp, GATA4 and WT1, as well as initiation of early SOX9 expression, is properly maintained in the glucose-deprived condition. Therefore, our results imply the metabolic importance of the high-glucose condition for the establishment of SOX9 activation in testis differentiation.

摘要

在小鼠性别分化过程中,SRY通过SOX9的作用促进支持细胞分化,从而导致睾丸形成。SRY/SOX9还启动了各种睾丸特异性形态发生事件,包括前支持细胞中的糖原生成,这表明葡萄糖储存对于性腺性别决定中某些SRY/SOX9下游事件具有重要意义。然而,尚不清楚哪些细胞类型以及哪些分子/细胞事件需要性别二态性的高能量代谢率。在这里,我们表明SOX9激活本身的建立是一个代谢活跃的过程,在性腺性别分化中具有性别二态性的高能量需求。使用XY/XX野生型和XX/Sry转基因胚胎的生殖嵴培养物进行的葡萄糖剥夺和代谢拯救实验表明,在各种体细胞类型中,尽管XX/Sry和XY基因型存在差异,但前支持细胞对葡萄糖饥饿最为敏感。此外,我们的数据表明,在发育中的前支持细胞中,高葡萄糖代谢状态是通过细胞外基质(ECM)介导的前馈途径建立SOX9表达所必需的。相比之下,SRY、SF1/Ad4Bp、GATA4和WT1的表达以及早期SOX9表达的启动在葡萄糖剥夺条件下能够正常维持。因此,我们的结果暗示了高葡萄糖条件在睾丸分化中建立SOX9激活的代谢重要性。

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