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首页> 外文期刊>Advances in Andrology >Functional Importance of 1α,25(OH)2-Vitamin D3and the Identification of Its Nongenomic and Genomic Signaling Pathways in the Testis
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Functional Importance of 1α,25(OH)2-Vitamin D3and the Identification of Its Nongenomic and Genomic Signaling Pathways in the Testis

机译:1α,25(OH)2-维生素D3的功能重要性及其在睾丸中的非基因组和基因组信号传导途径的鉴定

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The 1α,25(OH)2-vitamin D3(1,25-D3) is known by its classic effects on Ca2+metabolism and regulation of cellular proliferation and differentiation. The hormone 1,25-D3acts in the testis through nongenomic and genomic events being implicated in the success of spermatogenesis in rats and in human being. The aim of this review was to highlight the effect and intracellular pathways of 1,25-D3to modulate the spermatogenesis. The pivotal role of 1,25-D3in male reproduction is reinforced by the presence of VDR and 1α-hydroxylase in reproductive tract. Also, the marked expression of VDR and the VD metabolizing enzymes in human testis, ejaculatory tract, and mature spermatozoa implicates the 1,25-D3in spermatogenesis and maturation of human spermatozoa. Among genomic events, 1,25-D3influences the expression of calcium binding protein and stimulates aromatase gene expression through a nongenomic activation of the membrane-bound VDR receptor involving the PKA pathway in the testis. Also, 1,25-D3stimulates amino acid transport and exocytosis in testis by nongenomic events coupled to ionic currents triggered at plasma membrane. All together, the demonstration that 1,25-D3regulates both Sertoli cell and sperm function may be useful for the study and development of new therapeutic strategies for the male reproductive disorders.
机译:1α,25(OH)2-维生素D3(1,25-D3)以其对Ca2 +代谢和调节细胞增殖与分化的经典作用而闻名。 1,25-D3激素通过非基因组和基因组事件在睾丸中起作用,与大鼠和人类的精子发生成功有关。这篇综述的目的是强调1,25-D3调节精子发生的作用和细胞内途径。 VDR和1α-羟化酶在生殖道中的存在增强了1,25-D3在男性生殖中的关键作用。同样,VDR和VD代谢酶在人的睾丸,射精道和成熟精子中的明显表达也暗示了1,25-D3在人精子的生精和成熟中。在基因组事件中,1,25-D3通过涉及睾丸中PKA途径的膜结合VDR受体的非基因组激活,影响钙结合蛋白的表达并刺激芳香化酶基因表达。同样,1,25-D3通过与质膜触发的离子电流耦合的非基因组事件刺激睾丸中的氨基酸转运和胞吐作用。总而言之,证明1,25-D3同时调节支持细胞和精子功能可能对研究和开发男性生殖疾病的新治疗策略很有用。

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