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本文引用的文献

1
Clockwork Orange is a transcriptional repressor and a new Drosophila circadian pacemaker component.《发条橙》是一种转录抑制因子,也是果蝇新的昼夜节律起搏器组件。 (注:这里原文中 “Clockwork Orange” 作为专业术语,在医学语境下可能是特定的基因、蛋白之类的名称,直接按字面翻译了,但从一般语义看这个词很像电影名,感觉该原文在医学专业内容上可能存在信息不严谨的情况。)
Genes Dev. 2007 Jul 1;21(13):1675-86. doi: 10.1101/gad.1552607. Epub 2007 Jun 19.
2
Clockwork orange encodes a transcriptional repressor important for circadian-clock amplitude in Drosophila.《发条橙》编码一种对果蝇昼夜节律振幅很重要的转录抑制因子。
Curr Biol. 2007 Jun 19;17(12):1082-9. doi: 10.1016/j.cub.2007.05.039. Epub 2007 Jun 7.
3
Biological function of unannotated transcription during the early development of Drosophila melanogaster.黑腹果蝇早期发育过程中未注释转录的生物学功能。
Nat Genet. 2006 Oct;38(10):1151-8. doi: 10.1038/ng1875. Epub 2006 Sep 3.
4
Reevaluation of Drosophila melanogaster's neuronal circadian pacemakers reveals new neuronal classes.对黑腹果蝇神经昼夜节律起搏器的重新评估揭示了新的神经元类别。
J Comp Neurol. 2006 Sep 10;498(2):180-93. doi: 10.1002/cne.21021.
5
Drosophila CLOCK is constitutively expressed in circadian oscillator and non-oscillator cells.果蝇生物钟基因(Drosophila CLOCK)在昼夜节律振荡器细胞和非振荡器细胞中持续表达。
J Biol Rhythms. 2006 Apr;21(2):93-103. doi: 10.1177/0748730405283697.
6
PER-dependent rhythms in CLK phosphorylation and E-box binding regulate circadian transcription.CLK磷酸化和E-box结合中依赖PER的节律调节昼夜节律转录。
Genes Dev. 2006 Mar 15;20(6):723-33. doi: 10.1101/gad.1404406.
7
The UCSC Genome Browser Database: update 2006.加州大学圣克鲁兹分校基因组浏览器数据库:2006年更新
Nucleic Acids Res. 2006 Jan 1;34(Database issue):D590-8. doi: 10.1093/nar/gkj144.
8
The circadian timekeeping system of Drosophila.果蝇的昼夜节律计时系统。
Curr Biol. 2005 Sep 6;15(17):R714-22. doi: 10.1016/j.cub.2005.08.019.
9
TileMap: create chromosomal map of tiling array hybridizations.TileMap:创建平铺阵列杂交的染色体图谱。
Bioinformatics. 2005 Sep 15;21(18):3629-36. doi: 10.1093/bioinformatics/bti593. Epub 2005 Jul 26.
10
dsCheck: highly sensitive off-target search software for double-stranded RNA-mediated RNA interference.dsCheck:用于双链RNA介导的RNA干扰的高灵敏度脱靶搜索软件。
Nucleic Acids Res. 2005 Jul 1;33(Web Server issue):W589-91. doi: 10.1093/nar/gki419.

一种功能基因组学策略揭示了“发条橙”是果蝇生物钟中的一种转录调节因子。

A functional genomics strategy reveals clockwork orange as a transcriptional regulator in the Drosophila circadian clock.

作者信息

Matsumoto Akira, Ukai-Tadenuma Maki, Yamada Rikuhiro G, Houl Jerry, Uno Kenichiro D, Kasukawa Takeya, Dauwalder Brigitte, Itoh Taichi Q, Takahashi Kuniaki, Ueda Ryu, Hardin Paul E, Tanimura Teiichi, Ueda Hiroki R

机构信息

Laboratory for Systems Biology, Center for Developmental Biology, RIKEN, Kobe, Hyogo, Japan.

出版信息

Genes Dev. 2007 Jul 1;21(13):1687-700. doi: 10.1101/gad.1552207. Epub 2007 Jun 19.

DOI:10.1101/gad.1552207
PMID:17578908
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1899476/
Abstract

The Drosophila circadian clock consists of integrated autoregulatory feedback loops, making the clock difficult to elucidate without comprehensively identifying the network components in vivo. Previous studies have adopted genome-wide screening for clock-controlled genes using high-density oligonucleotide arrays that identified hundreds of clock-controlled genes. In an attempt to identify the core clock genes among these candidates, we applied genome-wide functional screening using an RNA interference (RNAi) system in vivo. Here we report the identification of novel clock gene candidates including clockwork orange (cwo), a transcriptional repressor belonging to the basic helix-loop-helix ORANGE family. cwo is rhythmically expressed and directly regulated by CLK-CYC through canonical E-box sequences. A genome-wide search for its target genes using the Drosophila genome tiling array revealed that cwo forms its own negative feedback loop and directly suppresses the expression of other clock genes through the E-box sequence. Furthermore, this negative transcriptional feedback loop contributes to sustaining a high-amplitude circadian oscillation in vivo. Based on these results, we propose that the competition between cyclic CLK-CYC activity and the adjustable threshold imposed by CWO keeps E-box-mediated transcription within the controllable range of its activity, thereby rendering a Drosophila circadian clock capable of generating high-amplitude oscillation.

摘要

果蝇生物钟由整合的自动调节反馈回路组成,这使得在未全面鉴定体内网络组件的情况下很难阐明生物钟机制。以往的研究采用高密度寡核苷酸阵列对生物钟调控基因进行全基因组筛选,鉴定出了数百个生物钟调控基因。为了在这些候选基因中鉴定核心生物钟基因,我们在体内应用RNA干扰(RNAi)系统进行全基因组功能筛选。在此,我们报告了包括“发条橙”(cwo)在内的新型生物钟基因候选物的鉴定,cwo是一种属于碱性螺旋-环-螺旋橙家族的转录抑制因子。cwo有节律地表达,并通过典型的E-box序列受CLK-CYC直接调控。利用果蝇基因组平铺阵列对其靶基因进行全基因组搜索发现,cwo形成了自身的负反馈回路,并通过E-box序列直接抑制其他生物钟基因的表达。此外,这种负转录反馈回路有助于在体内维持高振幅的昼夜节律振荡。基于这些结果,我们提出,循环的CLK-CYC活性与CWO施加的可调阈值之间的竞争使E-box介导的转录保持在其活性的可控范围内,从而使果蝇生物钟能够产生高振幅振荡。