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雌二醇通过膜受体降低大鼠新纹状体神经元中的钙电流。

Estradiol reduces calcium currents in rat neostriatal neurons via a membrane receptor.

作者信息

Mermelstein P G, Becker J B, Surmeier D J

机构信息

Neuroscience Program, University of Michigan, Ann Arbor 48104, USA.

出版信息

J Neurosci. 1996 Jan 15;16(2):595-604. doi: 10.1523/JNEUROSCI.16-02-00595.1996.

Abstract

Until recently, steroid hormones were believed to act only on cells containing intracellular receptors. However, recent evidence suggests that steroids have specific and rapid effects at the cellular membrane. Using whole-cell patch-clamp techniques, 17 beta-estradiol was found to reduce Ba2+ entry reversibly via Ca2+ channels in acutely dissociated and cultured neostriatal neurons. The effects were sex-specific, i.e., the reduction of Ba2+ currents was greater in neurons taken from female rats. 17 beta-Estradiol primarily targeted L-type currents, and their inhibition was detected reliably within seconds of administration. The maximum reduction by 17 beta-estradiol occurred at picomolar concentrations. 17 beta-Estradiol conjugated to bovine serum albumin also reduced Ba2+ currents, suggesting that the effect occurs at the membrane surface. Dialysis with GTP gamma S prevented reversal of the modulation, suggesting that 17 beta-estradiol acts via G-protein activation. 17 alpha-Estradiol also reduced Ba2+ currents but was significantly less effective than 17 beta-estradiol. Estriol and 4-hydroxyestradiol were found to reduce Ba2+ currents with similar efficacy to 17 beta-estradiol, whereas estrone and 2-methoxyestriol were less effective. Tamoxifen also reduced Ba2+ currents but did not occlude the effect of 17 beta-estradiol. These results suggest that at physiological concentrations, 17 beta-estradiol can have immediate actions on neostriatal neurons via nongenomic signaling pathways.

摘要

直到最近,类固醇激素还被认为仅作用于含有细胞内受体的细胞。然而,最近的证据表明,类固醇在细胞膜上具有特异性和快速的作用。使用全细胞膜片钳技术,发现在急性分离和培养的新纹状体神经元中,17β-雌二醇可通过Ca2+通道可逆地减少Ba2+内流。这些作用具有性别特异性,即从雌性大鼠分离的神经元中Ba2+电流的减少更为明显。17β-雌二醇主要作用于L型电流,给药后数秒内就能可靠地检测到其对L型电流的抑制作用。17β-雌二醇在皮摩尔浓度时产生最大程度的减少。与牛血清白蛋白结合的17β-雌二醇也能减少Ba2+电流,这表明该作用发生在膜表面。用GTPγS进行透析可防止这种调节作用的逆转,这表明17β-雌二醇通过G蛋白激活发挥作用。17α-雌二醇也能减少Ba2+电流,但效果明显不如17β-雌二醇。发现雌三醇和4-羟基雌二醇减少Ba2+电流的效果与17β-雌二醇相似,而雌酮和2-甲氧基雌三醇的效果则较差。他莫昔芬也能减少Ba2+电流,但并不阻断17β-雌二醇的作用。这些结果表明,在生理浓度下,17β-雌二醇可通过非基因组信号通路对新纹状体神经元产生即时作用。

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