Androgens drive SLC1A5-dependent metabolic reprogramming in polycystic ovary syndrome

多囊卵巢 谷氨酰胺 卵巢 下调和上调 高雄激素血症 雄激素 雄激素过量 内分泌学 生物 内科学 医学 胰岛素抵抗 激素 生物化学 胰岛素 氨基酸 基因
作者
Yishu Wang,Jiaying Wu,Guangping Zhang,Yan Shi,Yicong Meng,Pingping Lv,Weiwei Huang,Yunfei Su,Zhiyang Zhou,Bo Wang,Xiaojun Chen,Chengliang Zhou,Jiexue Pan,Jin Li,Xiaotao Wang,Yanting Wu,Jian‐Zhong Sheng,Xin-Mei Liu,Yu Zhang,Guolian Ding
出处
期刊:Nature Communications [Springer Nature]
卷期号:16 (1): 7611-7611 被引量:1
标识
DOI:10.1038/s41467-025-62951-z
摘要

Polycystic ovary syndrome is the primary cause of female infertility. Growing evidence suggests that dysregulation of amino acid metabolism plays a significant role in the onset and progression. However, the underlying mechanism remains unclear. In this study, we conduct targeted metabolite profiling of human follicular fluid and granulosa cells. A significant increase in glutamine uptake is observed in patients with hyperandrogenic polycystic ovary syndrome, mediated by the upregulation of SLC1A5, a specific glutamine transporter. We find that androgen excess primarily activates SLC1A5 expression. Furthermore, SLC1A5 overexpression in female mice induces polycystic ovary syndrome-like phenotypes, including hyperandrogenism and abnormal follicle development. Additionally, the pharmacological blockade of SLC1A5 provides reproductive benefits to mice exhibiting polycystic ovary syndrome-like symptoms. Mechanistically, we show that elevated flux of Gln-derived α-ketoglutarate enhances HDAC5 expression and suppresses acetylation on histone 3 lysine residue 14 and lysine residue 56. The reduction in acetylation level is associated with the downregulation of several genes related to folliculogenesis, including CYP19A1, thereby exacerbating androgenic homeostasis imbalance. These findings indicate that androgen-induced aberrant glutamine uptake via SLC1A5 is crucial for the development and progression of polycystic ovary syndrome, suggesting pharmacological blockade of SLC1A5 as a potential therapeutic strategy.
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