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首页> 外文期刊>The Journal of Steroid Biochemistry and Molecular Biology >Estrogen antagonism on T3 and growth hormone control of the liver microsomal low-affinity glucocorticoid binding site (LAGS).
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Estrogen antagonism on T3 and growth hormone control of the liver microsomal low-affinity glucocorticoid binding site (LAGS).

机译:T3的雌激素拮抗作用和肝微粒体低亲和力糖皮质激素结合位点(LAGS)的生长激素控制。

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摘要

Male rat liver microsomes contain a low-affinity glucocorticoid binding site (LAGS) capable of binding all natural glucocorticoids and progesterone with a Kd from 20 to 100 nM. The LAGS level is under endocrine control by T3, glucocorticoids and GH. These hormones act synergistically at physiological concentrations to increase the LAGS level. Since female rats show a LAGS level that is much lower than the males (0.15 vs 23 pmol/mg protein, respectively), here we investigated whether estradiol could decrease the LAGS in the male rat. Orchiectomized (OX) male rats showed a higher LAGS level than intact rats. This effect was reversed by implanting a Sylastic capsule containing testosterone. When the OX rats were implanted for 20 days with estrogen capsules that provided an estradiol level in serum of 40 pg/ml, their LAGS level decreased from 23 to 0.2 pmol/mg protein. This effect was not observed in intact male rats and can be partially reversed by testosterone implants into OX rats. Both hypophysectomized male rats and hypothyroid-orchiectomized male rats showed very low levels of LAGS. Administration of physiological doses of GH and/or T3 to these rats greatly increased their LAGS level (from 0.3 to 15 and 16 pmol/mg protein, respectively). Implantation of estrogen capsules to these rats two weeks prior to starting treatment completely inhibited the increase in the LAGS level in response to T3, and significantly decreased the response to hGH, and to a combination of hGH and T3. These results suggest that physiological estradiol levels can antagonize the LAGS induction by T3 and hGH in the male rat, and could be responsible for the low level of LAGS in the female rat. Moreover, estrogen capsules also inhibited the increase in the body and hepatic weights observed after hGH treatment, which suggests a powerful inhibitory effect of low estradiol levels on the male rat liver functions under regulation by T3 and/or GH.
机译:雄性大鼠肝微粒体包含一个低亲和力的糖皮质激素结合位点(LAGS),能够以20至100 nM的Kd结合所有天然糖皮质激素和孕酮。 LAGS水平受T3,糖皮质激素和GH的内分泌控制。这些激素在生理浓度下协同作用以增加LAGS水平。由于雌性大鼠的LAGS水平明显低于雄性大鼠(分别为0.15 vs 23 pmol / mg蛋白),因此在此我们研究了雌二醇是否可以降低雄性大鼠的LAGS。睾丸切除(OX)雄性大鼠的LAGS水平高于完整大鼠。通过植入包含睾丸激素的Sylastic胶囊可以逆转这种效果。当OX大鼠植入雌激素胶囊20​​天后,血清中雌二醇水平为40 pg / ml,它们的LAGS水平从23 pmol / mg蛋白质降低到0.2 pmol / mg。在完整的雄性大鼠中未观察到这种作用,而通过在OX大鼠中植入睾丸激素可以部分逆转这种作用。切除淋巴结切除的雄性大鼠和经甲状腺切除术切除的雄性大鼠均显示极低水平的LAGS。向这些大鼠施用生理剂量的GH和/或T3大大提高了它们的LAGS水平(分别从0.3 pM / mg和15 pmol / mg蛋白质)。在开始治疗前两周向这些大鼠植入雌激素胶囊完全抑制了对T3的反应中LAGS水平的升高,并显着降低了对hGH以及对hGH和T3的反应。这些结果表明生理雌二醇水平可以拮抗雄性大鼠中T3和hGH对LAGS的诱导作用,并且可能与雌性大鼠中LAGS的低水平有关。此外,雌激素胶囊还抑制了hGH治疗后观察到的人体和肝脏重量的增加,这表明在T3和/或GH的调节下,低雌二醇水平对雄性大鼠肝脏功能具有强大的抑制作用。

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