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雌激素相关受体对于睾丸线粒体动态平衡和精子活力至关重要:基于果蝇的研究。

Estrogen-related receptor is critical for testicular mitochondrial homeostasis and sperm motility: a Drosophila-based study.

机构信息

Embryotoxicology Laboratory, Environmental Toxicology Group, CSIR-Indian Institute of Toxicology Research (CSIR-IITR), Lucknow, Uttar Pradesh, India; Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, Uttar Pradesh, India.

Embryotoxicology Laboratory, Environmental Toxicology Group, CSIR-Indian Institute of Toxicology Research (CSIR-IITR), Lucknow, Uttar Pradesh, India; Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, Uttar Pradesh, India.

出版信息

F S Sci. 2022 Aug;3(3):217-227. doi: 10.1016/j.xfss.2022.02.003. Epub 2022 Feb 14.

Abstract

OBJECTIVE

To study the role of estrogen-related receptors (ERRs) in testicular function, with particular emphasis on mitochondrial homeostasis, testicular steroidogenesis, and sperm motility using Drosophila as a model.

DESIGN

Experimental study.

SETTING

Academic research laboratory.

ANIMAL(S): Wild-type and transgenic strains of Drosophila melanogaster.

INTERVENTION(S): Using a ribonucleic acid interference-based approach, ERR was knocked down specifically in the testes to generate Drosophila males with reduced ERR levels in their testes. Genetically matched sibling males without the knockdown formed the controls.

MAIN OUTCOME MEASURE(S): Analysis of the testicular mitochondrial structure and function in relation to energy production, steroidogenesis, and sperm motility in Drosophila.

RESULT(S): Depletion of ERR affects mitochondrial homeostasis (biogenesis, fission, fusion, mitophagy, and transport) and oxidative respiration in the testes. Consequently, ERR knockdown testes have significantly reduced mitochondrial size, mass, and depleted adenosine triphosphate levels resulting in testicular oxidative stress. Further, Halloween genes, associated with steroidogenesis in Drosophila, are misregulated in ERR knockdown testes, and knockdown of some of the steroidogenic genes in a testis-specific manner results in significantly reduced fertility. In addition, sperm from ERR knockdown testes have significantly reduced levels of glucose transporter, Na+K+ ATPase, Dynein heavy chain, and adenosine triphosphate-5α synthase essential for sperm function. Corroborating this, sperm from ERR knockdown males are significantly less motile compared with control.

CONCLUSION(S): The ERR is crucial for meeting the cellular energy requirements of the testes and the generation of normal motile sperm and hormone synthesis/secretion in the testes. To our knowledge, this is the first report implicating ERR in these ultimate functions of the testes. These findings can potentially contribute to the etiologic understanding of asthenozoospermia or infertility at large in men.

摘要

目的

以果蝇为模型,研究雌激素相关受体(ERRs)在睾丸功能中的作用,特别是在线粒体稳态、睾丸类固醇生成和精子运动中。

设计

实验研究。

地点

学术研究实验室。

动物

黑腹果蝇的野生型和转基因品系。

干预

使用基于核糖核酸干扰的方法,特异性敲低睾丸中的 ERR,以产生睾丸中 ERR 水平降低的果蝇雄性。具有相同遗传背景但未进行敲低的雄性果蝇作为对照。

主要观察指标

分析果蝇睾丸中线粒体的结构和功能与能量产生、类固醇生成和精子运动的关系。

结果

ERR 耗竭会影响睾丸中的线粒体稳态(生物发生、分裂、融合、自噬和运输)和氧化呼吸。因此,ERR 敲低睾丸的线粒体体积、质量和三磷酸腺苷水平明显降低,导致睾丸氧化应激。此外,与果蝇类固醇生成相关的万圣节基因在 ERR 敲低睾丸中失调,以睾丸特异性方式敲低一些类固醇生成基因会导致生育力显著降低。此外,ERR 敲低睾丸中的精子葡萄糖转运蛋白、Na+K+ATP 酶、动力蛋白重链和三磷酸腺苷-5α合酶的水平明显降低,这些酶对于精子功能至关重要。与此相符的是,ERR 敲低雄性的精子活力明显低于对照组。

结论

ERR 对于满足睾丸的细胞能量需求以及产生正常运动的精子和激素合成/分泌至关重要。据我们所知,这是 ERR 首次被牵连到睾丸的这些最终功能中。这些发现可能有助于从病因学上理解男性特发性少精子症或不育症。

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