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鸡松果体生物钟基因:BMAL2作为昼夜节律振荡双向调节因子的意义。

Chicken pineal clock genes: implication of BMAL2 as a bidirectional regulator in circadian clock oscillation.

作者信息

Okano T, Yamamoto K, Okano K, Hirota T, Kasahara T, Sasaki M, Takanaka Y, Fukada Y

机构信息

Department of Biophysics and Biochemistry, Graduate School of Science, University of Tokyo, Hongo 7-3-1, Bunkyo-Ku, Tokyo 113-0033, Japan.

出版信息

Genes Cells. 2001 Sep;6(9):825-36. doi: 10.1046/j.1365-2443.2001.00462.x.

Abstract

BACKGROUND

In a transcription/translation-based autoregulatory feedback loop of vertebrate circadian clock systems, a BMAL1-CLOCK heterodimer is a positive regulator for the transcription of the negative element gene Per. The chicken pineal gland represents a photosensitive clock tissue, but the pineal clock genes constituting the oscillator loop have been less well characterized.

RESULTS

We identified expression of the Per2, Bmal1, Bmal2 and Clock genes in the chicken pineal gland. Messenger RNA levels of these genes exhibited overt circadian rhythms in the pineal cells, both in vivo and in culture. In vitro functional analyses revealed the formation of cBMAL1-cCLOCK and cBMAL2-cCLOCK heteromers. Both of the cBMAL-cCLOCK heteromers activated E-box element-dependent transcription, which was negatively regulated by cPER2 in luciferase assays. Co-expression of cCLOCK, cBMAL1 and cBMAL2 co-operatively activated E-box element-dependent transcription, and a greater level of expression of cBMAL2 inhibited the activation. In the cultured pineal cells, an over-expression of either cBMAL1 or cBMAL2 disrupted the circadian rhythm of melatonin production.

CONCLUSION

The functional characterization of the chicken pineal clock molecules supports the key roles of BMAL1, BMAL2 and CLOCK which contribute to the E-box-dependent transcriptional regulation in the circadian clock system.

摘要

背景

在脊椎动物昼夜节律时钟系统基于转录/翻译的自动调节反馈回路中,BMAL1-CLOCK异二聚体是负调控元件基因Per转录的正调控因子。鸡松果体是一种感光时钟组织,但构成振荡器回路的松果体时钟基因的特征尚不明确。

结果

我们在鸡松果体中鉴定出了Per2、Bmal1、Bmal2和Clock基因的表达。这些基因的信使RNA水平在体内和体外培养的松果体细胞中均呈现明显的昼夜节律。体外功能分析揭示了cBMAL1-cCLOCK和cBMAL2-cCLOCK异源二聚体的形成。在荧光素酶检测中,这两种cBMAL-cCLOCK异源二聚体均激活了E-box元件依赖性转录,且cPER2对其具有负调控作用。cCLOCK、cBMAL1和cBMAL2的共表达协同激活了E-box元件依赖性转录,而更高水平的cBMAL2表达则抑制了这种激活。在培养的松果体细胞中,cBMAL1或cBMAL2的过表达均扰乱了褪黑素分泌的昼夜节律。

结论

鸡松果体时钟分子的功能特性支持了BMAL1、BMAL2和CLOCK在昼夜节律时钟系统中对E-box依赖性转录调控所起的关键作用。

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