Mitochondria: Target organelles for estrogen action.

Małgorzata Chmielewska, Izabela Skibińska, Małgorzata Kotwicka
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引用次数: 9

Abstract

Estrogens belong to a group of sex hormones, which have been shown to act in multidirectional way. Estrogenic effects are mediated by two types of intracellular receptors: estrogen receptor 1 (ESR1) and estrogen receptor 2 (ESR2). There are two basic mechanisms of estrogen action: 1) classical-genomic, in which the ligand-receptor complex acts as a transcriptional factor and 2) a nongenomic one, which is still not fully understood, but has been seen to lead to distinct biological effects, depending on tissue and ligand type. It is postulated that nongenomic effects may be associated with membrane signaling and the presence of classical nuclear receptors within the cell membrane. Estrogens act in a multidirectional way also within cell organelles. It is assumed that there is a mechanism which manages the migration of ESR into the mitochondrial membrane, wherein the exogenous estrogen affect the morphology of mitochondria. Estrogen, through its receptor, can directly modulate mitochondrial gene expression. Moreover, by regulating the level of reactive oxygen species, estrogens affect the biology of mitochondria. The considerations presented in this paper indicate the pleiotropic effects of estrogens, which represent a multidirectional pathway of signal transduction.

线粒体:雌激素作用的靶细胞器。
雌激素属于一组性激素,已被证明具有多向作用。雌激素效应由两种细胞内受体介导:雌激素受体1 (ESR1)和雌激素受体2 (ESR2)。雌激素的作用有两种基本机制:1)经典基因组机制,其中配体-受体复合物作为转录因子;2)非基因组机制,仍未完全了解,但已被认为会导致不同的生物效应,这取决于组织和配体类型。据推测,非基因组效应可能与膜信号传导和细胞膜内经典核受体的存在有关。雌激素在细胞器内也有多向作用。我们假设有一种机制管理ESR向线粒体膜的迁移,其中外源雌激素影响线粒体的形态。雌激素通过受体直接调节线粒体基因的表达。此外,通过调节活性氧的水平,雌激素影响线粒体的生物学。本文所提出的考虑表明雌激素的多效性,它代表了信号转导的多向途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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