极化上皮-精子共培养系统揭示小鼠附睾奎叶素巯基氧化酶1分泌的刺激因素

Yu-Syuan Wei, W. Lin, Tse-En Wang, Wei-Yun Lee, Sheng-Hsiang Li, F. Lin, B. Nixon, P. Sipilä, P. Tsai
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引用次数: 2

摘要

精子通过翻译后修饰获得受精能力。这些膜表面的改变发生在附睾的各个节段。Quiescin巯基氧化酶,催化巯基氧化反应,参与二硫键的形成,这是精子成熟所必需的,在附睾的过渡和迁移。在本研究中,我们利用去势和无精子症转基因小鼠模型,发现quiescin巯基氧化酶1 (QSOX1)蛋白的表达和分泌与睾酮和精子细胞的存在呈正相关。二维体外上皮-精子共培养系统进一步证明了睾酮及其主要代谢物5α-二氢睾酮促进附睾QSOX1分泌的观点。我们还证明了未成熟的头精子,而不是成熟的尾精子细胞,在体外表现出极大的刺激QSOX1分泌的潜力,这表明精子成熟是小鼠附睾QSOX1分泌的关键调节因素。蛋白质组学分析从共培养上清中鉴定出582种分泌蛋白,其中258种是精子特异性的,154种是附睾上皮来源的。基因本体论分析表明,这些分泌的蛋白质具有促进精子膜组织、细胞活动和精子-卵子识别的功能。综上所述,我们的数据表明睾酮和精子成熟状态是小鼠附睾QSOX1蛋白表达和分泌的关键调节因子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Polarized epithelium-sperm co-culture system reveals stimulatory factors for the secretion of mouse epididymal quiescin sulfhydryl oxidase 1
Spermatozoa acquire fertilization ability through post-translational modifications. These membrane surface alterations occur in various segments of the epididymis. Quiescin sulfhydryl oxidases, which catalyze thiol-oxidation reactions, are involved in disulfide bond formation, which is essential for sperm maturation, upon transition and migration in the epididymis. Using castration and azoospermia transgenic mouse models, in the present study, we showed that quiescin sulfhydryl oxidase 1 (QSOX1) protein expression and secretion are positively correlated with the presence of testosterone and sperm cells. A two-dimensional in vitro epithelium-sperm co-culture system provided further evidence in support of the notion that both testosterone and its dominant metabolite, 5α-dihydrotestosterone, promote epididymal QSOX1 secretion. We also demonstrated that immature caput spermatozoa, but not mature cauda sperm cells, exhibited great potential to stimulate QSOX1 secretion in vitro, suggesting that sperm maturation is a key regulatory factor for mouse epididymal QSOX1 secretion. Proteomic analysis identified 582 secretory proteins from the co-culture supernatant, of which 258 were sperm-specific and 154 were of epididymal epithelium-origin. Gene Ontology analysis indicated that these secreted proteins exhibit functions known to facilitate sperm membrane organization, cellular activity, and sperm-egg recognition. Taken together, our data demonstrated that testosterone and sperm maturation status are key regulators of mouse epididymal QSOX1 protein expression and secretion.
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