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卡罗来纳安乐蜥和雅罗鞭尾蜥松果体及大脑中褪黑素脱乙酰酶活性

Melatonin deacetylase activity in the pineal gland and brain of the lizards Anolis carolinensis and Sceloporus jarrovi.

作者信息

Grace M S, Besharse J C

机构信息

Department of Anatomy and Cell Biology, University of Kansas Medical Center, Kansas City 66160-7400.

出版信息

Neuroscience. 1994 Sep;62(2):615-23. doi: 10.1016/0306-4522(94)90393-x.

Abstract

Melatonin modulates a variety of rhythmic processes in vertebrates, and is synthesized in both the retina and pineal gland. We have shown previously that retinal melatonin is deacetylated generating 5-methoxytryptamine, which is then deaminated by monoamine oxidase, producing 5-methoxyindoleacetic acid and 5-methoxytryptophol. This process occurs within the eyes of a variety of vertebrates including the iguanid lizard Anolis carolinensis. To determine whether melatonin deacetylase activity also occurs in the pineal organ or in other parts of the lizard brain, pineals and brains of Anolis carolinensis and Sceloporus jarrovi were cultured in the presence of [3H-methoxy]-melatonin. High-performance liquid chromatography of the resulting culture media and tissues revealed the generation of radiolabeled 5-methoxytryptamine and 5-methoxyindoleacetic acid. These two methoxyindoles were the only radiolabeled metabolites detectable, and together accounted for all melatonin lost. Both the loss of melatonin and the production of melatonin metabolites were inhibited by inclusion of 100 microM eserine, an inhibitor of the melatonin deacetylase. Pargyline, a monoamine oxidase inhibitor, reduced the production of 5-methoxyindoleacetic acid and increased the production of 5-methoxytryptamine relative to control incubations. Similar effects of eserine and pargyline were seen in eyecup, brain and pineal gland, but the specific activity of melatonin deacetylation in cultured pineal glands was much greater than in either brains or eyecups. These results indicate that pineal glands of both Anolis carolinensis and Sceloporus jarrovi can rapidly catabolize melatonin by a mechanism very similar to that in the eye, that the melatonin deacetylation pathway exists elsewhere in the iguanid brain, and also extend our previous observations of ocular melatonin deacetylation to an additional species.

摘要

褪黑素调节脊椎动物的多种节律过程,在视网膜和松果体中均有合成。我们之前已经表明,视网膜中的褪黑素会发生脱乙酰化生成5-甲氧基色胺,然后5-甲氧基色胺会被单胺氧化酶脱氨基,生成5-甲氧基吲哚乙酸和5-甲氧基色醇。这一过程发生在包括变色蜥(Anolis carolinensis)在内的多种脊椎动物的眼睛中。为了确定褪黑素脱乙酰酶活性是否也存在于松果体器官或蜥蜴大脑的其他部位,将变色蜥和强棱蜥(Sceloporus jarrovi)的松果体和大脑在[3H-甲氧基]-褪黑素存在的情况下进行培养。对所得培养基和组织进行高效液相色谱分析,结果显示生成了放射性标记的5-甲氧基色胺和5-甲氧基吲哚乙酸。这两种甲氧基吲哚是仅可检测到的放射性标记代谢物,它们共同构成了所有损失的褪黑素。加入100微摩尔的毒扁豆碱(一种褪黑素脱乙酰酶抑制剂)可抑制褪黑素的损失以及褪黑素代谢物的生成。相对于对照孵育,单胺氧化酶抑制剂帕吉林减少了5-甲氧基吲哚乙酸的生成,并增加了5-甲氧基色胺的生成。在眼杯、大脑和松果体中观察到了毒扁豆碱和帕吉林的类似作用,但培养的松果体中褪黑素脱乙酰化的比活性远高于大脑或眼杯。这些结果表明,变色蜥和强棱蜥的松果体都可以通过一种与眼睛中非常相似的机制快速分解代谢褪黑素,褪黑素脱乙酰化途径存在于鬣蜥科蜥蜴大脑的其他部位,并且还将我们之前关于眼部褪黑素脱乙酰化的观察扩展到了另一个物种。

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