Takigawa Y, Homma H, Lee J A, Fukushima T, Santa T, Iwatsubo T, Imai K
Graduate School of Pharmaceutical Sciences, University of Tokyo, Japan.
Biochem Biophys Res Commun. 1998 Jul 30;248(3):641-7. doi: 10.1006/bbrc.1998.8971.
Significant amounts of D-aspartate (Asp) are found in mammalian tissues and D-Asp is presumed to play some significant, but as yet undefined physiological role. However, it is not known whether D-Asp is synthesized in mammals. In this study, we addressed this issue in cultured rat pinealocytes, parenchymal cells of the pineal gland, which contain significant amounts of D-Asp. Biosynthesis of D-Asp was found to be minimal to non-existent in cultured rat pinealocytes. We then investigated the mechanism of uptake of D-Asp into these cells and its consequent effect on cell function. D-Asp was efficiently taken up into cells, in a time- and dose-dependent manner. Interestingly, the L-Asp levels in the cells and media decreased concomitantly with the uptake of D-Asp. This decrease was not due to D-Asp cytotoxicity, since the cellular levels of othernted. D-Serine and D-alanine were not taken up efficiently into the cells and the cellular levels of L-serine and L-alanine were unchanged. Also, immunocytochemical staining with anti-D-Asp antibody showed that D-Asp, which had been taken up into the cells, was dispersed throughout the cytoplasm. In response to norepinephrine stimulation, pinealocytes, which had been pretreated with D-Asp released D-Asp as well as L-Asp. In these cells, norepinephrine-induced secretion of melatonin, a pineal hormone, was suppressed. The mechanism of this suppression is discussed here.
在哺乳动物组织中发现了大量的D-天冬氨酸(Asp),并且推测D-天冬氨酸发挥着某种重要但尚未明确的生理作用。然而,目前尚不清楚D-天冬氨酸是否在哺乳动物体内合成。在本研究中,我们在培养的大鼠松果体细胞(松果体实质细胞,其中含有大量的D-天冬氨酸)中探讨了这个问题。结果发现,在培养的大鼠松果体细胞中,D-天冬氨酸的生物合成极少甚至不存在。然后,我们研究了D-天冬氨酸进入这些细胞的摄取机制及其对细胞功能的后续影响。D-天冬氨酸以时间和剂量依赖性方式有效地被细胞摄取。有趣的是,细胞和培养基中的L-天冬氨酸水平随着D-天冬氨酸的摄取而同时下降。这种下降并非由于D-天冬氨酸的细胞毒性,因为其他相关物质的细胞水平并未改变。D-丝氨酸和D-丙氨酸没有有效地被细胞摄取,并且L-丝氨酸和L-丙氨酸的细胞水平没有变化。此外,用抗D-天冬氨酸抗体进行免疫细胞化学染色显示,已被细胞摄取的D-天冬氨酸分散在整个细胞质中。在用D-天冬氨酸预处理过的松果体细胞中,对去甲肾上腺素刺激的反应是释放D-天冬氨酸以及L-天冬氨酸。在这些细胞中,去甲肾上腺素诱导的褪黑素(一种松果体激素)分泌受到抑制。本文讨论了这种抑制的机制。