Norethindrone suppress the germ cell development via androgen receptor resulting in male bias

雄激素受体 性别分化 生殖细胞 生物 对接(动物) 转录因子 内科学 内分泌学 激素 基因 遗传学 医学 前列腺癌 癌症 护理部
作者
Xiao-Bing Long,Wen Shi,Chong-Rui Yao,Siying Li,Jin-Ge Zhang,Zhijie Lu,Dongdong Ma,Yu-Xia Jiang,Guang‐Guo Ying
出处
期刊:Aquatic Toxicology [Elsevier]
卷期号:261: 106604-106604 被引量:4
标识
DOI:10.1016/j.aquatox.2023.106604
摘要

Progestins are widely used and detected in surface waters, and can affect gonad development and sexual differentiation in fish. However, the toxicological mechanisms of sexual differentiation induced by progestins are not well understood. Here, we investigated the effects of norethindrone (NET) and androgen receptor (AR) antagonist flutamide (FLU) on gonadal differentiation in zebrafish from 21 dpf (days post-fertilization) to 49 dpf. The results showed that NET caused male bias, while FLU resulted in female bias at 49 dpf. The NET and FLU mixtures significantly decreased the percentage of males compared to the NET single exposure. Molecular docking analysis showed that FLU and NET had similar docking pocket and docking posture with AR resulting in competitively forming the hydrogen bond with Thr334 of AR. These results suggested that binding to AR was the molecular initiating event of sex differentiation induced by NET. Moreover, NET strongly decreased transcription of biomarker genes (dnd1, ddx4, dazl, piwil1 and nanos1) involved in germ cell development, while FLU significantly increased transcription of these target genes. There was an increase in the number of juvenile oocytes, which was consistent with the female bias in the combined groups. The bliss independence model analysis further showed that NET and FLU had antagonistic effect on transcription and histology during gonadal differentiation. Thus, NET suppressed the germ cell development via AR, resulting in male bias. Understanding the molecular initiation of sex differentiation in progestins is essential to provide a comprehensive biological basis for ecological risk assessment.
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