Ethynylestradiol feminizes gene expression partly in testis developing as ovotestis and disrupts asymmetric Müllerian duct development by eliminating asymmetric gene expression in Japanese quail embryos.

IF 3.4 3区 医学 Q2 TOXICOLOGY Toxicological Sciences Pub Date : 2024-05-28 DOI:10.1093/toxsci/kfae033
Natsuko Abe, Akari Sakiyama, Maho Suzuki, Tin-Tin Win-Shwe, Takehiro Suzuki, Takaharu Kawashima, Shinji Tsukahara
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Abstract

In avian embryos, xenoestrogens induce abnormalities in reproductive organs, particularly the testes and Müllerian ducts (MDs). However, the molecular mechanisms remain poorly understood. We investigated the effects of ethynylestradiol (EE2) exposure on gene expression associated with reproductive organ development in Japanese quail embryos. Reverse transcription quantitative polymerase chain reaction (RT-qPCR) analysis revealed that the left testis containing ovary-like tissues following EE2 exposure highly expressed the genes for steroidogenic enzymes (P450scc, P45017α, lyase, and 3β-HSD) and estrogen receptor-β, compared to the right testis. No asymmetry was found in these gene expression without EE2. EE2 induced hypertrophy in female MDs and suppressed atrophy in male MDs on both sides. RNA sequencing analysis of female MDs showed 1,366 differentially expressed genes between developing left MD and atrophied right MD in the absence of EE2, and these genes were enriched in Gene Ontology terms related to organogenesis, including cell proliferation, migration and differentiation, and angiogenesis. However, EE2 reduced asymmetrically expressed genes to 21. RT-qPCR analysis indicated that genes promoting cell cycle progression and oncogenesis were more highly expressed in the left MD than in the right MD, but EE2 eliminated such asymmetric gene expression by increasing levels on the right side. EE2-exposed males showed overexpression of these genes in both MDs. This study reveals part of the molecular basis of xenoestrogen-induced abnormalities in avian reproductive organs, where EE2 may partly feminize gene expression in the left testis, developing as the ovotestis, and induce bilateral MD malformation by canceling asymmetric gene expression underlying MD development.

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乙炔雌二醇通过消除日本鹌鹑胚胎中的不对称基因表达,使发育为卵巢的睾丸中的部分基因表达女性化,并破坏不对称的缪勒管发育。
在禽类胚胎中,异雌激素会诱发生殖器官异常,尤其是睾丸和穆勒氏管(MDs)。然而,人们对其分子机制仍然知之甚少。我们研究了乙炔雌二醇(EE2)暴露对日本鹌鹑胚胎生殖器官发育相关基因表达的影响。反转录定量聚合酶链反应(RT-qPCR)分析表明,与右侧睾丸相比,暴露于 EE2 后含有卵巢样组织的左侧睾丸高表达类固醇生成酶(P450scc、P45017α、裂解酶和 3β-HSD)和雌激素受体-β的基因。在没有 EE2 的情况下,这些基因的表达没有发现不对称性。EE2可诱导雌性MD肥大,抑制两侧雄性MD萎缩。雌性MD的RNA测序分析表明,在没有EE2的情况下,发育中的左侧MD和萎缩的右侧MD之间有1366个基因表达不同,这些基因富集在与器官生成有关的基因本体术语中,包括细胞增殖、迁移和分化以及血管生成。然而,EE2 将不对称表达的基因减少到 21 个。RT-qPCR分析表明,促进细胞周期进展和肿瘤发生的基因在左侧MD中的表达高于右侧MD,但EE2通过增加右侧的表达水平消除了这种不对称基因表达。暴露于 EE2 的男性在两个 MD 中都显示出这些基因的过度表达。这项研究揭示了异雌激素诱导禽类生殖器官异常的部分分子基础,即EE2可能使左侧睾丸的基因表达部分女性化,发育成卵巢,并通过消除MD发育过程中的非对称基因表达,诱导双侧MD畸形。
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来源期刊
Toxicological Sciences
Toxicological Sciences 医学-毒理学
CiteScore
7.70
自引率
7.90%
发文量
118
审稿时长
1.5 months
期刊介绍: The mission of Toxicological Sciences, the official journal of the Society of Toxicology, is to publish a broad spectrum of impactful research in the field of toxicology. The primary focus of Toxicological Sciences is on original research articles. The journal also provides expert insight via contemporary and systematic reviews, as well as forum articles and editorial content that addresses important topics in the field. The scope of Toxicological Sciences is focused on a broad spectrum of impactful toxicological research that will advance the multidisciplinary field of toxicology ranging from basic research to model development and application, and decision making. Submissions will include diverse technologies and approaches including, but not limited to: bioinformatics and computational biology, biochemistry, exposure science, histopathology, mass spectrometry, molecular biology, population-based sciences, tissue and cell-based systems, and whole-animal studies. Integrative approaches that combine realistic exposure scenarios with impactful analyses that move the field forward are encouraged.
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