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无时间蛋白(tim)RNA循环的调控

Regulation of the cycling of timeless (tim) RNA.

作者信息

Wang G K, Ousley A, Darlington T K, Chen D, Chen Y, Fu W, Hickman L J, Kay S A, Sehgal A

机构信息

Department of Neuroscience and Center for Sleep and Respiratory Neurobiology, Howard Hughes Medical Institute, University of Pennsylvania Medical School, Philadelphia, Pennsylvania 19104, USA.

出版信息

J Neurobiol. 2001 Jun 5;47(3):161-75. doi: 10.1002/neu.1024.

Abstract

Circadian rhythms in Drosophila depend upon expression of the timeless (tim) and period (per) genes, which encode interacting components of the endogenous clock. These two clock genes show a robust circadian oscillation in transcription rate as well as RNA and protein levels. Transcriptional activation of both genes requires the basic helix-loop-helix (bHLH) PAS transcription factors dCLOCK (dCLK) and CYCLE (CYC), which bind E-box elements. We investigated the role of E-box elements in regulating behavioral rhythmicity and tim gene expression. We show that mutation of the upstream E-box in the tim gene prevents the rescue by tim cDNA sequences of the arrhythmic tim(01) phenotype. RNA encoded by this mutated tim transgene fails to cycle and is expressed at low levels. While a tim transgene carrying a wild-type E-box restores behavioral rhythms, tim RNA levels are intermediate to those of the mutant E-box transgenic lines and wild type, and do not display high amplitude cycling. On the other hand, high-amplitude RNA cycling was consistently obtained with a tim transgene that contains genomic, rather than cDNA, sequences. To identify additional sequences that may be required for tim cycling, we investigated the role of an E-box in the first intron of the tim gene through cell culture experiments. In these experiments, the presence of this intron did not have any effect on the activation of tim transcription by dCLK/CYC. As the upstream E-box was implicated in activation by dCLK/CYC in cell culture, we assayed sequences containing this E-box for association with proteins in fly head extracts. These studies provide the first biochemical evidence for an in vivo complex containing dCLK and CYC that binds the tim upstream sequence and is detected at all times of day. Together, these data highlight molecular mechanisms that are critical for behavioral rhythms.

摘要

果蝇的昼夜节律依赖于无时间性(tim)基因和周期(per)基因的表达,这两个基因编码内源性生物钟的相互作用成分。这两个生物钟基因在转录速率以及RNA和蛋白质水平上都表现出强烈的昼夜振荡。这两个基因的转录激活都需要结合E盒元件的碱性螺旋-环-螺旋(bHLH)PAS转录因子dCLOCK(dCLK)和CYCLE(CYC)。我们研究了E盒元件在调节行为节律性和tim基因表达中的作用。我们发现tim基因上游E盒的突变阻止了tim cDNA序列对无节律tim(01)表型的挽救。由这个突变的tim转基因编码的RNA不能循环,且表达水平很低。虽然携带野生型E盒的tim转基因恢复了行为节律,但tim RNA水平介于突变E盒转基因系和野生型之间,且不显示高振幅循环。另一方面,用包含基因组而非cDNA序列的tim转基因持续获得了高振幅RNA循环。为了鉴定tim循环可能需要的其他序列,我们通过细胞培养实验研究了tim基因第一个内含子中一个E盒的作用。在这些实验中,这个内含子的存在对dCLK/CYC激活tim转录没有任何影响。由于上游E盒在细胞培养中与dCLK/CYC的激活有关,我们检测了含有这个E盒的序列与果蝇头部提取物中蛋白质的结合情况。这些研究为体内存在一个包含dCLK和CYC的复合物提供了首个生化证据,该复合物结合tim上游序列,且在一天中的所有时间都能检测到。总之,这些数据突出了对行为节律至关重要的分子机制。

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