Department of Anatomy and Cell Biology, Justus-Liebig-University of Giessen, Aulweg 123, 35385, Giessen, Germany.
Department of Obstetrics and Gynecology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.
Cell Mol Life Sci. 2021 Apr;78(7):3621-3635. doi: 10.1007/s00018-021-03757-2. Epub 2021 Jan 28.
Galectin 3 is a multifunctional lectin implicated in cellular proliferation, differentiation, adhesion, and apoptosis. This lectin is broadly expressed in testicular somatic cells and germ cells, and is upregulated during testicular development. Since the role of galectin 3 in testicular function remains elusive, we aimed to characterize the role of galectin 3 in testicular physiology. We found that galectin 3 transgenic mice (Lgals3) exhibited significantly decreased testicular weight in adulthood compared to controls. The transgenic mice also exhibited a delay to the first wave of spermatogenesis, a decrease in the number of germ cells at postnatal day 5 (P5) and P15, and defective Sertoli cell maturation. Mechanistically, we found that Insulin-like-3 (a Leydig cell marker) and enzymes involved in steroid biosynthesis were significantly upregulated in adult Lgals3 testes. These observations were accompanied by increased serum testosterone levels. To determine the underlying causes of the testicular atrophy, we monitored cellular apoptosis. Indeed, adult Lgals3 testicular cells exhibited an elevated apoptosis rate that is likely driven by downregulated Bcl-2 and upregulated Bax and Bak expression, molecules responsible for live/death cell balance. Moreover, the percentage of testicular macrophages within CD45 cells was decreased in Lgals3 mice. These data suggest that galectin 3 regulates spermatogenesis initiation and Sertoli cell maturation in part, by preventing germ cells from undergoing apoptosis and regulating testosterone biosynthesis. Going forward, understanding the role of galectin 3 in testicular physiology will add important insights into the factors governing the development of germ cells and steroidogenesis and delineate novel biomarkers of testicular function.
半乳糖凝集素 3 是一种多功能凝集素,参与细胞增殖、分化、黏附和凋亡。这种凝集素在睾丸体细胞和生殖细胞中广泛表达,并在睾丸发育过程中上调。由于半乳糖凝集素 3 在睾丸功能中的作用仍不清楚,我们旨在研究半乳糖凝集素 3 在睾丸生理学中的作用。我们发现,半乳糖凝集素 3 转基因小鼠(Lgals3)与对照组相比,成年后睾丸重量明显下降。转基因小鼠还表现出第一次精子发生延迟,出生后第 5 天(P5)和第 15 天生殖细胞数量减少,以及支持细胞成熟缺陷。从机制上讲,我们发现胰岛素样-3(一种间质细胞标志物)和参与类固醇生物合成的酶在成年 Lgals3 睾丸中显著上调。这些观察结果伴随着血清睾酮水平的升高。为了确定睾丸萎缩的根本原因,我们监测了细胞凋亡。事实上,成年 Lgals3 睾丸细胞表现出较高的凋亡率,这可能是由 Bcl-2 下调和 Bax 和 Bak 表达上调驱动的,Bax 和 Bak 表达上调是细胞生死平衡的分子。此外,Lgals3 小鼠睾丸内 CD45 细胞中的巨噬细胞百分比降低。这些数据表明,半乳糖凝集素 3 通过防止生殖细胞凋亡和调节睾酮生物合成,部分调节精子发生起始和支持细胞成熟。展望未来,对半乳糖凝集素 3 在睾丸生理学中的作用的研究将为控制生殖细胞发育和类固醇生成的因素提供重要的见解,并描绘睾丸功能的新的生物标志物。