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D-aspartate affects NMDA receptor-extracellular signal-regulated kinase pathway and upregulates androgen receptor expression in the rat testis

机译:D-天冬氨酸影响NMDA受体 - 细胞外信号调节的激酶途径,并在大鼠睾丸中上调雄激素受体表达

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Previous studies have demonstrated that D-aspartic acid (D-Asp) has a role in regulating the release and synthesis of testosterone in rats. In this study, we investigated the molecular pathway by which this amino acid triggers its action in the rat testis. We found expression of N-Methyl-D-Aspartic Acid (NMDA) receptor messenger RNAs for NR1, NR2A, and NR2D receptor subunits. After D-Asp administration, NR1 and NR2A messenger RNA levels were significantly higher than those of controls, whereas NR2D levels remained unchanged. Expression of extracellular signal-regulated kinase (ERK) 1 protein was higher than that of ERK2 protein in the testis of both D-Asp-treated rats and controls. D.-Asp administration increased testis levels of both phosphorylated ERK (P-ERK) 1 and 2. Using immunohistochemical technique, NR1 and P-ERK 1 or 2 proteins were preferentially localized within the spermatogonia. Moreover, D-Asp administration increased both serum and testis testosterone levels but not estradiol levels. Finally, in D-Asp-treated rats, testicular androgen receptor protein levels were significantly increased, whereas both estrogen receptor a and P-450 aromatase levels were significantly decreased. Conclusively, our results, besides strengthening the evidence that D-Asp administration in rats induces testosterone synthesis, demonstrate for the first time that D-Asp (1) induces testicular NMDA receptor-ERK pathway, (2) upregulates androgen receptor expression, and (3) downregulates estrogen receptor expression
机译:以前的研究表明,D-天冬氨酸(D-ASP)具有调节大鼠睾酮的释放和合成的作用。在这项研究中,我们研究了该氨基酸在大鼠睾丸中触发其作用的分子途径。我们发现N-甲基-D-天冬氨酸(NMDA)受体信使RNA用于NR1,NR2A和NR2D受体亚基的表达。在D-ASP管理后,NR1和NR2A信使RNA水平显着高于对照组,而NR2D水平保持不变。细胞外信号调节激酶(ERK)1蛋白的表达高于D-ASP处理的大鼠和对照的睾丸中ERK2蛋白的表达。 D.-ASP给药增加磷酸化ERK(P-ERK)1和2.使用免疫组化技术,NR1和P-ERK 1或2个蛋白质优先局存在精子内。此外,D-ASP管理增加了血清和睾丸睾酮水平,但不是雌二醇水平。最后,在D-ASP处理的大鼠中,睾丸雄激素受体蛋白水平显着增加,而雌激素受体A和P-450芳族酸酶水平显着降低。尽快,我们的结果除了加强D-ASP给药在大鼠中诱导睾酮合成的证据,首次证明D-ASP(1)诱导睾丸NMDA受体-ERK途径,(2)上调雄激素受体表达,和( 3)下调雌激素受体表达

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