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Star1 基因突变揭示了 11-酮睾酮和糖皮质激素对雄性尼罗罗非鱼(Oreochromis niloticus)生殖的必要性。

Star1 gene mutation reveals the essentiality of 11-ketotestosterone and glucocorticoids for male fertility in Nile Tilapia (Oreochromis niloticus).

机构信息

Fisheries Engineering Institute, Chinese Academy of Fishery Sciences, Beijing, PR China; Key Laboratory of Freshwater Fish Reproduction and Development (Ministry of Education), Key Laboratory of Aquatic Science of Chongqing, School of Life Science, Southwest University, Chongqing 400715, PR China.

Key Laboratory of Freshwater Fish Reproduction and Development (Ministry of Education), Key Laboratory of Aquatic Science of Chongqing, School of Life Science, Southwest University, Chongqing 400715, PR China.

出版信息

Comp Biochem Physiol B Biochem Mol Biol. 2024 Aug-Sep;273:110985. doi: 10.1016/j.cbpb.2024.110985. Epub 2024 May 8.

Abstract

Steroidogenic acute regulatory protein (Star) plays an essential role in the biosynthesis of corticosteroids and sex steroids by mediating the transport of cholesterol from the outer to the inner membrane of mitochondria. Two duplicated Star genes, namely star1 and star2, have been identified in non-mammalian vertebrates. To investigate the roles of star genes in fish steriodogenesis, we generated two mutation lines of star1 and star1/star2 in Nile tilapia (Oreochromis niloticus). Previous studies revealed that deficiency of star2 gene caused delayed spermatogenesis, sperm apoptosis and sterility in male tilapia. Our present data revealed that mutation of star genes impaired male fertility. Disordered seminiferous lobules and spermatic duct obstruction were found in the testis of both types of mutants. Moreover, significant decline in semen volume, sperm abnormality and impaired fertility were also detected in star1 and star1/star2 males. In star1 male fish, lipid accumulation, up-regulation of steroidogenic enzymes, and significant decline of androgens were found. Additionally, hyperplasic interrenal cells, elevated steroidogenic gene expression level and decline of serum glucocorticoids were detected in star1 mutants. Intriguingly, either 11-KT or cortisol supplementation successfully rescued the impaired fertility of the star1 mutants. Taken together, these results further indicate that Star1 might play critical roles in the production of both 11-KT and glucocorticoids, which are indispensable for the maintenance of male fertility in fish.

摘要

类固醇急性调节蛋白(Star)在甾醇类激素和性激素的生物合成中起着至关重要的作用,它介导胆固醇从线粒体的外膜向内膜的转运。在非哺乳动物的脊椎动物中,已经鉴定出两种复制的 Star 基因,即 star1 和 star2。为了研究 star 基因在鱼类甾醇生成中的作用,我们在尼罗罗非鱼(Oreochromis niloticus)中生成了两种 star1 和 star1/star2 突变系。先前的研究表明,star2 基因的缺失导致雄性罗非鱼的精子发生延迟、精子凋亡和不育。我们目前的数据表明,star 基因的突变会损害雄性的生育能力。在两种突变体的睾丸中都发现了曲细精管的紊乱和精管阻塞。此外,还检测到 star1 和 star1/star2 雄鱼的精液量、精子畸形和生育能力显著下降。在 star1 雄鱼中,发现了脂质积累、类固醇生成酶的上调以及雄激素的显著下降。此外,在 star1 突变体中还检测到了增生的肾上腺细胞、类固醇生成基因表达水平的升高和血清糖皮质激素的下降。有趣的是,11-KT 或皮质醇的补充成功挽救了 star1 突变体受损的生育能力。总之,这些结果进一步表明 Star1 可能在 11-KT 和糖皮质激素的产生中发挥关键作用,这对于鱼类雄性生育力的维持是必不可少的。

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