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雌激素在大脑中的非基因组作用:生理意义及细胞机制

Nongenomic actions of estrogen in the brain: physiological significance and cellular mechanisms.

作者信息

Wong M, Thompson T L, Moss R L

机构信息

Department of Physiology, The University of Texas Southwestern Medical Center at Dallas, 75235-9040, USA.

出版信息

Crit Rev Neurobiol. 1996;10(2):189-203. doi: 10.1615/critrevneurobiol.v10.i2.30.

Abstract

Estrogen regulates neuroendocrine, reproductive, and behavioral functions of the brain by utilizing a number of diverse cellular mechanisms. In the classical genomic mechanism of steroids, estrogen induces relatively long-term actions on neurons by activating specific intracellular receptors that modulate transcription and protein synthesis. In addition, estrogen can also exert very rapid effects in the brain that cannot be attributed to genomic mechanisms. These nongenomic actions of estrogen influence a variety of neuronal properties, including electrical excitability, synaptic functioning, and morphological features, and are involved in many of the physiological functions and clinical effects of estrogen in the brain. Recently the specific cellular and molecular mechanisms underlying the nongenomic actions of estrogen have begun to be elucidated. Estrogen may utilize direct membrane mechanisms, such as activation of ligand-gated ion channels and G-protein-coupled second messenger systems and regulation of neurotransmitter transporters. Additionally the membrane and genomic actions of estrogen have the potential to interact, producing synergistic effects and dependence between the two types of mechanisms. The combination of nongenomic and genomic mechanisms endows estrogen with considerable diversity, range, and power in regulating neural function.

摘要

雌激素通过多种不同的细胞机制调节大脑的神经内分泌、生殖和行为功能。在类固醇的经典基因组机制中,雌激素通过激活特定的细胞内受体来调节转录和蛋白质合成,从而对神经元产生相对长期的作用。此外,雌激素还能在大脑中产生非常快速的效应,而这些效应不能归因于基因组机制。雌激素的这些非基因组作用影响多种神经元特性,包括电兴奋性、突触功能和形态特征,并参与了雌激素在大脑中的许多生理功能和临床效应。最近,雌激素非基因组作用背后的特定细胞和分子机制已开始得到阐明。雌激素可能利用直接的膜机制,如激活配体门控离子通道和G蛋白偶联的第二信使系统以及调节神经递质转运体。此外,雌激素的膜作用和基因组作用有可能相互作用,在两种机制之间产生协同效应和依赖性。非基因组和基因组机制的结合赋予了雌激素在调节神经功能方面相当大的多样性、范围和能力。

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