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Estrogens regulate humans and rabbit epididymal contractility through the RhoA/Rho-kinase pathway.

机译:雌激素通过RhoA / Rho激酶途径调节人和兔子的附睾收缩力。

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INTRODUCTION: We have previously demonstrated that oxytocin (OT) and endothelin-1 (ET-1) peripherally regulate epididymal motility in an estrogen-dependent way. Because RhoA/Rho-kinase (ROCK) pathway is a contractile effector downstream to both OT and ET-1 receptors, we hypothesized an estrogenic modulation of OT- and ET-1-induced contraction through the up-regulation of RhoA/ROCK signaling. AIM: To evaluate the effect of changing endocrine milieu on RhoA/ROCK pathway in the epididymis. METHODS: We induced a pharmacological hypogonadotropic hypogonadism in rabbits and replaced hypogonadal animals with different sex steroids (testosterone, T, or estradiol valerate, [E(2v)]). Effects of estrogen deprivation were also evaluated in rabbits chronically treated with the P450-aromatase inhibitor letrozole. An "in vitro" model of human epididymal smooth muscle cells was established and stimulated with sex hormones (72 hours). Protein and mRNA expression and functional activity of RhoA/ROCK signaling were studied by quantitative reverse transcriptase-polymerase chain reaction, immunohistochemistry, western blot analysis, cell migration and by "in vitro" contractility studies using the ROCK inhibitor Y-27632. MAIN OUTCOME MEASURES: Effects of sex steroids on expression and functional activation of RhoA/ROCK signaling in rabbit epididymis and human epididymal smooth muscle cells. RESULTS: The relaxant effect of Y-27632 on ET-1-pre-contracted epididymal strips was significantly reduced in hypogonadal rabbits, as well as in letrozole-treated animals. T supplementation normalized T plasma levels, but not Y-27632 epididymal strip sensitivity. E(2)v not only completely restored Y-27632 responsiveness but even amplified it, indicating an estrogenic up-regulation of RhoA/ROCK pathway. Accordingly, ROCK1 protein and gene expressions were strongly induced by E(2)v but not by T. The estrogen-induced up-regulation of RhoA/ROCK signaling was confirmed in human epididymal smooth muscle cells. CONCLUSIONS: Our results suggest that estrogens regulate epididymal motility by increasing RhoA/ROCK signaling, and therefore calcium sensitivity, which tunes up responsiveness to contractile factors.
机译:引言:我们先前已经证明催产素(OT)和内皮素1(ET-1)以雌激素依赖性的方式从外围调节附睾运动。因为RhoA / Rho激酶(ROCK)通路是OT和ET-1受体下游的收缩效应子,所以我们假设RhoA / ROCK信号的上调可能是雌激素调节OT和ET-1诱导的收缩。目的:评估改变内分泌环境对附睾中RhoA / ROCK途径的影响。方法:我们在家兔中诱发了药理性腺功能减退性腺功能减退症,并用不同的性类固醇(睾丸激素,T或戊酸雌二醇,[E(2v)])替代了性腺功能减退的动物。还评估了用P450-芳香化酶抑制剂来曲唑长期治疗的兔子的雌激素剥夺作用。建立了人类附睾平滑肌细胞的“体外”模型,并用性激素刺激(72小时)。通过定量逆转录酶-聚合酶链反应,免疫组织化学,蛋白质印迹分析,细胞迁移以及使用ROCK抑制剂Y-27632进行的“体外”收缩性研究,研究了RhoA / ROCK信号的蛋白质和mRNA表达以及功能活性。主要观察指标:性类固醇对兔附睾和人附睾平滑肌细胞中RhoA / ROCK信号表达和功能激活的影响。结果:在性腺机能减退的兔子以及来曲唑治疗的动物中,Y-27632对ET-1预收缩附睾带的松弛作用显着降低。 T补充使T血浆水平正常化,但Y-27632附睾剥离敏感性不正常。 E(2)v不仅可以完全恢复Y-27632的反应性,甚至可以放大它,表明RhoA / ROCK途径的雌激素上调。因此,ROCK1蛋白和基因表达是由E(2)v强烈诱导的,而不是由T强烈诱导的。在人类附睾平滑肌细胞中证实了雌激素诱导的RhoA / ROCK信号的上调。结论:我们的结果表明,雌激素通过增加RhoA / ROCK信号传导从而调节附睾运动性,从而增加钙敏感性,从而调节对收缩因子的反应性。

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