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首页> 外文期刊>BMC Biochemistry >EAAC1 is expressed in rat and human prostate epithelial cells;functions as a high-affinity L-aspartate transporter;and is regulated by prolactin and testosterone
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EAAC1 is expressed in rat and human prostate epithelial cells;functions as a high-affinity L-aspartate transporter;and is regulated by prolactin and testosterone

机译:EAAC1在大鼠和人类前列腺上皮细胞中表达;起高亲和力L-天冬氨酸转运蛋白的作用;并受催乳素和睾丸激素的调节

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Background:Prostate epithelial cells accumulate a high level of aspartate that is utilized as a substrate for their unique function of production and secretion of enormously high levels of citrate.In most mammalian cells aspartate is synthesized;and,therefore is a non-essential amino acid.In contrast,in citrate-producing prostate cells,aspartate is an essential amino acid that must be derived from circulation.The prostate intracellular/extracellular conditions present a 40:1 concentration gradient.Therefore,these cells must possess a plasma membrane-associated aspartate uptake transport process to achieve their functional activity.In earlier kinetic studies we identified the existence of a unique Na+-dependent high-affinity L- aspartate transport process in rat prostate secretory epithelial cells.The present report is concerned with the identification of this putative L-aspartate transporter in rat and human prostate cells.Results:The studies show for the first time that EAAC1 is expressed in normal rat prostate epithelial cells,in normal and hyperplastic human prostate glands,and inhuman malignant prostate cell lines.EAAC1 expression and high-affinity L-aspartate transport are correspondingly down-regulated by EAAC1 siRNA knock down.Exposure of prostate cells to physiological levels of prolactin or testosterone results in an up-regulation of EAAC1 expression and a corresponding increase in the high-affinity transport of L-aspartate into the cells.Conclusions:This study shows that EAAC1 functions as the high-affinity L- aspartate transporter that is responsible for the uptake and accumulation of aspartate in prostate cells.In other cells(predominantly excitable tissue cells),EAAC1 has been reported to function as a glutamate transporter rather than as an aspartate transporter.The regulation of EAAC1 expression and L-aspartate transport by testosterone and prolactin is consistent with their regulation of citrate production in prostate cells.The identification of EAAC1 asthe high-affinity L-aspartate transporter now permits studies to elucidate the mechanism of hormonal regulation of EAAC1 gene expression,and to investigate the mechanism by which the cellular environment effects the functioning of EAAC1 as an aspartate transporter or as a glutamate transporter.
机译:背景:前列腺上皮细胞积累高水平的天冬氨酸,被用作底物,以发挥其独特的生产和分泌高水平柠檬酸的功能。在大多数哺乳动物细胞中,天冬氨酸被合成;因此,氨基酸是非必需的相比之下,在产生柠檬酸盐的前列腺细胞中,天冬氨酸是必须从循环中衍生的必需氨基酸。前列腺细胞内/细胞外情况呈现40:1的浓度梯度。因此,这些细胞必须具有与质膜相关的天冬氨酸吸收转运过程以实现其功能活性。在较早的动力学研究中,我们确定了大鼠前列腺分泌上皮细胞中存在独特的Na +依赖性高亲和力L-天冬氨酸转运过程。本报告涉及该假定L的鉴定-大鼠和人前列腺细胞中的天冬氨酸转运蛋白。结果:研究首次表明EAAC1表达在正常大鼠前列腺上皮细胞,正常和增生性人类前列腺中以及在非人类恶性前列腺细胞系中均检测到.EAAC1 siRNA敲低相应地下调了EAAC1表达和高亲和力L-天冬氨酸转运。催乳素或睾丸激素水平的升高会导致EAAC1表达上调,并相应增加L-天冬氨酸向细胞的高亲和力转运。结论:这项研究表明EAAC1发挥了高亲和力L-天冬氨酸转运体的作用,在前列腺细胞中,天冬氨酸的摄取和积累是负责的。在其他细胞(主要是兴奋性组织细胞)中,据报道EAAC1起谷氨酸转运蛋白的作用,而不是天冬氨酸转运蛋白。睾丸激素和催乳激素的作用与其对前列腺细胞中柠檬酸盐产生的调节作用是一致的。 1作为高亲和力的L-天冬氨酸转运蛋白,现在允许研究阐明激素调节EAAC1基因表达的机制,并研究细胞环境影响EAAC1作为天冬氨酸转运蛋白或谷氨酸转运蛋白的功能的机制。

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