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松果体褪黑素的合成在 Period1 缺陷小鼠中发生改变。

Pineal melatonin synthesis is altered in Period1 deficient mice.

机构信息

Dr. Senckenbergische Anatomie, Institut für Anatomie II, Goethe-Universität, Theodor-Stern-Kai 7, D-60590 Frankfurt/Main, Germany.

出版信息

Neuroscience. 2010 Dec 1;171(2):398-406. doi: 10.1016/j.neuroscience.2010.09.009. Epub 2010 Sep 16.

Abstract

Melatonin is an important endocrine signal for darkness in mammals. Transcriptional activation of the arylalkylamine-N-acetyltransferase gene encoding for the penultimate enzyme in melatonin synthesis drives the daily rhythm of the hormone in the pineal gland of rodents. Rhythmic arylalkylamine-N-acetyltransferase expression is controlled by the cAMP-signal transduction pathway and involves the activation of β-adrenergic receptors and the inducible cAMP early repressor. In addition, the rat arylalkylamine-N-acetyltransferase promoter contains an E-box element which can interact with clock proteins. Moreover, the pineal gland of mice shows a circadian rhythm in clock proteins such as the transcriptional repressor Period1, which has been shown to control rhythmic gene expression in a variety of tissues. However, the role of Period1 in the regulation of pineal melatonin synthesis is still unknown. Therefore, circadian rhythms in arylalkylamine-N-acetyltransferase, β-adrenergic receptor, and inducible cAMP early repressor mRNA levels (real time PCR), arylalkylamine-N-acetyltransferase enzyme activity (radiometric assay) and melatonin concentration radio immuno assay (RIA) were analyzed in the pineal gland of mice with a targeted deletion of the Period1 gene (Per1-/-) and the corresponding wildtype. In Per1-/- the amplitude in arylalkylamine-N-acetyltransferase expression was significantly elevated as compared to wildtype. In contrast, β-adrenergic receptor and inducible cAMP early repressor mRNA levels were not affected by the Period1-deficiency. This indicates that the molecular clockwork alters the amplitude of arylalkylamine-N-acetyltransferase expression. In vitro, pineal glands of Per1-/- mice showed a day night difference in arylalkylamine-N-acetyltransferase expression with high levels at night. This suggests that a deficient in Period1 elicits similar effects as the activation of the cAMP-signal transduction pathway in wildtype mice.

摘要

褪黑素是哺乳动物黑暗环境中的重要内分泌信号。芳香族烷基胺-N-乙酰转移酶基因的转录激活编码了褪黑素合成的倒数第二酶,驱动了啮齿动物松果体中激素的日常节律。节律性芳香族烷基胺-N-乙酰转移酶的表达受 cAMP 信号转导途径的控制,并涉及β-肾上腺素能受体的激活和诱导型 cAMP 早期阻遏物。此外,大鼠芳香族烷基胺-N-乙酰转移酶启动子含有一个可以与时钟蛋白相互作用的 E 盒元件。此外,小鼠的松果体中存在时钟蛋白的昼夜节律,如转录抑制剂 Period1,它已被证明可以控制各种组织中的节律基因表达。然而,Period1 在调节松果体褪黑素合成中的作用仍不清楚。因此,对靶向敲除 Period1 基因(Per1-/-)和相应野生型小鼠松果体中的芳香族烷基胺-N-乙酰转移酶、β-肾上腺素能受体和诱导型 cAMP 早期阻遏物 mRNA 水平(实时 PCR)、芳香族烷基胺-N-乙酰转移酶酶活性(放射性测定)和褪黑素浓度放射免疫分析(RIA)进行了分析。在 Per1-/-中,与野生型相比,芳香族烷基胺-N-乙酰转移酶表达的振幅显著升高。相比之下,β-肾上腺素能受体和诱导型 cAMP 早期阻遏物的 mRNA 水平不受 Period1 缺陷的影响。这表明分子钟改变了芳香族烷基胺-N-乙酰转移酶表达的振幅。在体外,Per1-/-小鼠的松果体中表现出芳香族烷基胺-N-乙酰转移酶表达的昼夜差异,夜间水平较高。这表明 Period1 缺乏会引起与野生型小鼠 cAMP 信号转导途径激活相似的效应。

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