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Mitochondrial Aconitase Gene Expression Is Regulated by Testosterone and Prolactin in Prostate Epithelial Cells

机译:前列腺上皮细胞中的睾丸激素和催乳素调节线粒体乌头酸酶基因的表达

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摘要

BACKGROUNDm-aconitase catalyzes the first step leading to the oxidation of citrate via the Krebs cycle. It is a constituitive enzyme in virtually all mammalian cells, found in excess, and is considered to be a regulatory or regulated enzyme. In contrast to these general relationships, prostate secretory epithelial cells possess a uniquely limiting mitochondrial (m-) aconitase which minimizes the oxidation of citrate. This permits the unique prostate function of accumulating and secreting extraordinarily high levels of citrate. Previous animal studies demonstrated that testosterone and prolactin regulate the level of m-aconitase specifically in citrate-producing prostate cells. The present studies were conducted to determine if testosterone and prolactin regulated the expression of the m-aconitase gene in prostate cells, and to determine the effect of the hormones on human prostate cells.
机译:背景技术α-α-辅酶催化经由克雷布斯循环导致柠檬酸盐氧化的第一步。它实际上是所有哺乳动物细胞中的一种组成型酶,被发现过量,被认为是一种调节或调节酶。与这些一般关系相反,前列腺分泌上皮细胞具有独特的限制线粒体(m-)乌头酸酶,可最大程度地减少柠檬酸盐的氧化。这允许积累和分泌异常高水平柠檬酸盐的独特前列腺功能。先前的动物研究表明,睾丸激素和催乳激素可在产生柠檬酸盐的前列腺细胞中特异性调节m- aconitase的水平。进行本研究以确定睾丸激素和催乳素是否调节前列腺细胞中m-aconitase基因的表达,并确定激素对人前列腺细胞的作用。

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