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Estrogen-Mediated Regulation of Mitochondrial Gene Expression

机译:雌激素介导的线粒体基因表达调控

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摘要

Estrogens, in particular 17β-estradiol, are well-known regulators of essential cellular functions; however, discrepancies remain over the mechanisms by which they act on mitochondria. Here we propose a novel mechanism for the direct regulation of mitochondrial gene expression by estrogen under metabolic stress. We show that in serum-depleted medium, estrogen stimulates a rapid relocation of estrogen receptor-α to mitochondria, in which it elicits a cellular response, resulting in an increase in mitochondrial RNA abundance. Mitochondrial RNA levels are regulated through the association of estrogen receptor-α with 17β-hydroxysteroid dehydrogenase 10, a multifunctional protein involved in steroid metabolism that is also a core subunit of the mitochondrial ribonuclease P complex responsible for the cleavage of mitochondrial polycistronic transcripts. Processing of mitochondrial transcripts affects mitochondrial gene expression by controlling the levels of mature RNAs available for translation. This work provides the first mechanism linking RNA processing and estrogen activation in mitochondrial gene expression and underscores the coordinated response between the nucleus and mitochondria in response to stress.
机译:雌激素,尤其是17β-雌二醇是众所周知的细胞基本功能调节剂。但是,在作用于线粒体的机制上仍存在差异。在这里,我们提出了一种新机制,可以在代谢应激下直接调节雌激素对线粒体基因表达的调控。我们显示,在血清贫乏的培养基中,雌激素刺激雌激素受体α迅速迁移至线粒体,从而引起细胞反应,从而增加线粒体RNA的丰度。线粒体RNA水平通过雌激素受体-α与17β-羟基类固醇脱氢酶10的关联来调节,17β-羟基类固醇脱氢酶10是参与类固醇代谢的多功能蛋白,它也是线粒体核糖核酸酶P复合体的核心亚基,负责线粒体多顺反子转录物的裂解。线粒体转录物的加工通过控制可用于翻译的成熟RNA的水平来影响线粒体基因表达。这项工作提供了在线粒体基因表达中将RNA加工与雌激素激活联系起来的第一个机制,并强调了核与线粒体之间在应激反应中的协调反应。

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