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绵羊生物钟中的转录反馈环。

Transcriptional feedback loops in the ovine circadian clock.

作者信息

Dardente Hugues, Fustin Jean-Michel, Hazlerigg David G

机构信息

School of Biological Sciences, Tillydrone Avenue, Aberdeen University, Scotland, UK.

出版信息

Comp Biochem Physiol A Mol Integr Physiol. 2009 Aug;153(4):391-8. doi: 10.1016/j.cbpa.2009.03.016. Epub 2009 Mar 31.

Abstract

In mammals circadian time measurement depends on interlocked feedback loops involving clock genes and their protein products. The model of the mammalian circadian clock mostly rests on findings in the mouse. In comparison, little information is available in diurnal non-rodent species. In this respect, the sheep constitutes an excellent animal model. We cloned ovine clock components and proximal gene promoters and tested in-vitro, in NIH3T3 and COS7 cells, salient molecular characteristics of the circadian clock. We show that transcriptional features of the ovine circadian clock recapitulate those described for the mouse. These include (1) coordinated phasing of expression of Rev-erb alpha, Per1, Cry1 and Bmal1 as assessed by real-time luciferase assays, (2) CLOCK/BMAL1 transactivation at the Per1 and Rev-erb alpha promoters, (3) repression of CLOCK/BMAL1 by CRY1-2 and CIPC, (4) a role for REV-ERB alpha in inhibiting Bmal1 and Rev-erb alpha transcription. DEC1 has bidirectional transcriptional effects, repressor or activator, according to the promoter. We further show that some phosphorylation events affecting clock proteins appear conserved within the ovine clock. Taken together, these data are consistent with a broad conservation of transcriptional and post-translational mechanisms in the circadian clock of diurnal and nocturnal mammals.

摘要

在哺乳动物中,昼夜节律时间测量依赖于涉及生物钟基因及其蛋白质产物的连锁反馈环。哺乳动物生物钟模型大多基于小鼠的研究结果。相比之下,关于昼行性非啮齿动物物种的信息较少。在这方面,绵羊是一种优秀的动物模型。我们克隆了绵羊生物钟组件和近端基因启动子,并在NIH3T3和COS7细胞中进行体外测试,研究生物钟的显著分子特征。我们发现,绵羊生物钟的转录特征与小鼠的相似。这些特征包括:(1)通过实时荧光素酶测定评估,Rev-erbα、Per1、Cry1和Bmal1的表达呈现协调的相位;(2)CLOCK/BMAL1在Per1和Rev-erbα启动子处的反式激活;(3)CRY1-2和CIPC对CLOCK/BMAL1的抑制作用;(4)REV-ERBα在抑制Bmal1和Rev-erbα转录中的作用。DEC1根据启动子具有双向转录作用,即作为阻遏物或激活物。我们还进一步表明,一些影响生物钟蛋白的磷酸化事件在绵羊生物钟中似乎是保守的。综上所述,这些数据表明昼夜哺乳动物生物钟的转录和翻译后机制具有广泛的保守性。

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