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Estrogen Suppresses Retinaldehyde Dehydrogenase 1 Expression in the Anterior Pituitary Glands of Female Rats

机译:雌激素抑制雌性大鼠垂体前腺中的视黄醛脱氢酶1表达。

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摘要

Retinoic acid (RA) plays a critical role in cell growth and tissue development. RA is also a regulating factor of pituitary function. RA is synthesized from retinoids through oxidation processes. The oxidation of retinal to RA is catalyzed by the retinaldehyde dehydrogenases (RALDHs), including RALDH1, RALDH2 and RALDH3. Recently, we demonstrated that RALDH1 is expressed in the anterior pituitary glands of adult male rats. However, the expression of RALDH1 in the female pituitary gland and the regulation of RALDH1 expression have not been determined. Therefore, we examined the expression of RALDH1 mRNA in the pituitary glands of adult female rats. By in situ hybridization with digoxigenin-labeled cRNA probes and quantitative real-time PCR analysis, we found that the expression level of RALDH1 was significantly lower in estrus as compared to proestrus, metestrus and diestrus. RALDH1 mRNA levels increased after ovariectomy and decreased remarkably after a 1-week treatment with 17β-estradiol implants. Estradiol (0.01-100 μg per rat) dose-dependently decreased the expression of RALDH1 in the pituitary glands after 24 hours of subcutaneous administration. These results clearly show that RALDH1 mRNA expression is suppressed by estrogen. We speculate that the generation of RA is regulated by estrogen and that RA plays a role in the estrus cycle through paracrine and/or autocrine mechanisms in the anterior pituitary gland of female rats.
机译:维甲酸(RA)在细胞生长和组织发育中起关键作用。 RA也是垂体功能的调节因子。 RA是由类维生素A通过氧化过程合成的。视网膜向RA的氧化是由包括RALDH1,RALDH2和RALDH3在内的视黄醛脱氢酶(RALDHs)催化的。最近,我们证明了RALDH1在成年雄性大鼠的垂体前叶腺中表达。但是,尚未确定雌性垂体中RALDH1的表达及其调控。因此,我们检查了成年雌性大鼠垂体中RALDH1 mRNA的表达。通过用洋地黄毒苷标记的cRNA探针进行原位杂交并进行实时定量PCR分析,我们发现发情期RALDH1的表达水平明显低于发情期,睾丸和发情期。卵巢切除后,RALDH1 mRNA水平升高,用17β-雌二醇植入物治疗1周后,RALDH1 mRNA水平显着降低。皮下注射24小时后,雌二醇(每只大鼠0.01-100μg)剂量依赖性地降低了垂体腺中RALDH1的表达。这些结果清楚地表明,RALDH1 mRNA表达被雌激素抑制。我们推测RA的产生受雌激素调节,并且RA通过雌性大鼠垂体前叶的旁分泌和/或自分泌机制在发情周期中发挥作用。

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