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大鼠松果体芳基烷基胺-N-乙酰基转移酶和羟基吲哚-O-甲基转移酶基因表达的光周期调控及其对褪黑素合成的影响。

Photoperiodic control of the rat pineal arylalkylamine-N-acetyltransferase and hydroxyindole-O-methyltransferase gene expression and its effect on melatonin synthesis.

作者信息

Ribelayga C, Garidou M L, Malan A, Gauer F, Calgari C, Pévet P, Simonneaux V

机构信息

UMR-CNRS 7518, Université Louis Pasteur, Strasbourg, France.

出版信息

J Biol Rhythms. 1999 Apr;14(2):105-15. doi: 10.1177/074873099129000489.

DOI:10.1177/074873099129000489
PMID:10194646
Abstract

Photoperiodic changes of pineal melatonin (MEL) profile are accompanied by parallel changes of arylalkylamine-N-acetyltransferase (AA-NAT) activity. In the present study, the authors investigated, for the first time, whether two other important variables of pineal metabolism, AA-NAT and hydroxyindole-O-methyltransferase (HIOMT) gene expression, also may be affected by the photoperiod. Evening rises in AA-NAT and HIOMT mRNA and in circulating MEL occurred concomitantly with an increased delay from dark onset as scotophase shortened. On the opposite, the morning declines of all three variables occurred with different kinetics but were locked to light onset. These observations demonstrate that the daily rhythms in AA-NAT and HIOMT gene expression are modulated by the photoperiod and bring further evidence in favor of nor adrenaline as the possible link between the endogenous clock and MEL. Interestingly, the duration of the nocturnal peak in HIOMT mRNA was positively correlated with HIOMT activity. In conclusion, this study adds two important links to the chain of mechanisms involved in the photoperiodic control of pineal metabolism. First, photoperiodic modulation of the MEL rhythm primarily results from changes in the AA-NAT gene expression. Second, the photoperiodic regulation of HIOMT activity occurs at the transcriptional level.

摘要

松果体褪黑素(MEL)水平的光周期变化伴随着芳基烷基胺 - N - 乙酰基转移酶(AA - NAT)活性的平行变化。在本研究中,作者首次研究了松果体代谢的另外两个重要变量,即AA - NAT和羟基吲哚 - O - 甲基转移酶(HIOMT)基因表达是否也可能受光周期影响。随着暗期缩短,AA - NAT和HIOMT mRNA以及循环MEL的夜间升高与黑暗开始后延迟增加同时发生。相反,这三个变量的早晨下降以不同的动力学发生,但与光照开始同步。这些观察结果表明,AA - NAT和HIOMT基因表达的每日节律受光周期调节,并进一步证明去甲肾上腺素可能是内源性时钟与MEL之间的联系。有趣的是,HIOMT mRNA夜间峰值的持续时间与HIOMT活性呈正相关。总之,本研究为松果体代谢光周期控制所涉及的机制链增加了两个重要环节。第一,MEL节律的光周期调节主要源于AA - NAT基因表达的变化。第二,HIOMT活性的光周期调节发生在转录水平。

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