Niu Hongyu, Li Chao, Zhang Hexin, Liu Haokun, Shang Chunmei, Jia Yanni, Li Zuhui, Wang Aihua, Jin Yaping, Lin Pengfei
College of Veterinary Medicine, Northwest A&F University, Yangling, Shaanxi, China.
Key Laboratory of Animal Biotechnology, Ministry of Agriculture and Rural Affairs, Northwest A&F University, Yangling, Shaanxi, China.
FASEB J. 2024 May 15;38(9):e23650. doi: 10.1096/fj.202400130R.
The global challenge of male infertility is escalating, notably due to the decreased testosterone (T) synthesis in testicular Leydig cells under stress, underscoring the critical need for a more profound understanding of its regulatory mechanisms. CREBZF, a novel basic region-leucine zipper transcription factor, regulates testosterone synthesis in mouse Leydig cells in vitro; however, further validation through in vivo experiments is essential. Our study utilized Cyp17a1-Cre to knock out CREBZF in androgen-synthesis cells and explored the physiological roles of CREBZF in fertility, steroid hormone synthesis, and behaviors in adult male mice. Conditional knockout (cKO) CREBZF did not affect fertility and serum testosterone level in male mice. Primary Leydig cells isolated from CREBZF-cKO mice showed impaired testosterone secretion and decreased mRNA levels of Star, Cyp17a1, and Hsd3b1. Loss of CREBZF resulted in thickening of the adrenal cortex, especially X-zone, with elevated serum corticosterone and dehydroepiandrosterone levels and decreased serum dehydroepiandrosterone sulfate levels. Immunohistochemical staining revealed increased expression of StAR, Cyp11a1, and 17β-Hsd3 in the adrenal cortex of CREBZF-cKO mice, while the expression of AR was significantly reduced. Along with the histological changes and abnormal steroid levels in the adrenal gland, CREBZF-cKO mice showed higher anxiety-like behavior and impaired memory in the elevated plus maze and Barnes maze, respectively. In summary, CREBZF is dispensable for fertility, and CREBZF deficiency in Leydig cells promotes adrenal function in adult male mice. These results shed light on the requirement of CREBZF for fertility, adrenal steroid synthesis, and stress response in adult male mice, and contribute to understanding the crosstalk between testes and adrenal glands.
男性不育这一全球性挑战正在不断升级,尤其是由于应激状态下睾丸间质细胞中睾酮(T)合成减少,这凸显了更深入了解其调控机制的迫切需求。CREBZF是一种新型的碱性区域-亮氨酸拉链转录因子,在体外可调节小鼠睾丸间质细胞中的睾酮合成;然而,通过体内实验进行进一步验证至关重要。我们的研究利用Cyp17a1-Cre在雄激素合成细胞中敲除CREBZF,并探讨了CREBZF在成年雄性小鼠生育能力、类固醇激素合成及行为方面的生理作用。条件性敲除(cKO)CREBZF并不影响雄性小鼠的生育能力和血清睾酮水平。从CREBZF-cKO小鼠分离出的原代睾丸间质细胞显示睾酮分泌受损,且Star、Cyp17a1和Hsd3b1的mRNA水平降低。CREBZF缺失导致肾上腺皮质增厚,尤其是X区,血清皮质酮和脱氢表雄酮水平升高,血清硫酸脱氢表雄酮水平降低。免疫组织化学染色显示,CREBZF-cKO小鼠肾上腺皮质中StAR、Cyp11a1和17β-Hsd3的表达增加,而AR的表达显著降低。伴随着肾上腺的组织学变化和类固醇水平异常,CREBZF-cKO小鼠在高架十字迷宫和巴恩斯迷宫中分别表现出更高的焦虑样行为和记忆受损。总之,CREBZF对生育能力并非必不可少,睾丸间质细胞中CREBZF的缺乏会促进成年雄性小鼠的肾上腺功能。这些结果揭示了成年雄性小鼠生育、肾上腺类固醇合成及应激反应对CREBZF的需求,并有助于理解睾丸与肾上腺之间的相互作用。