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Otx5调控斑马鱼松果体复合体中呈现昼夜节律性表达的基因。

Otx5 regulates genes that show circadian expression in the zebrafish pineal complex.

作者信息

Gamse Joshua T, Shen Yu-Chi, Thisse Christine, Thisse Bernard, Raymond Pamela A, Halpern Marnie E, Liang Jennifer O

机构信息

Department of Embryology, Carnegie Institution of Washington, Baltimore, Maryland, 21210 USA.

出版信息

Nat Genet. 2002 Jan;30(1):117-21. doi: 10.1038/ng793. Epub 2001 Dec 20.

Abstract

The photoneuroendocrine system translates environmental light conditions into the circadian production of endocrine and neuroendocrine signals. Central to this process is the pineal organ, which has a conserved role in the cyclical synthesis and release of melatonin to influence sleep patterns and seasonal reproduction. In lower vertebrates, the pineal organ contains photoreceptors whose activity entrains an endogenous circadian clock and regulates transcription in pinealocytes. In mammals, pineal function is influenced by retinal photoreceptors that project to the suprachiasmatic nucleus-the site of the endogenous circadian clock. A multisynaptic pathway then relays information about circadian rhythmicity and photoperiod to the pineal organ. The gene cone rod homeobox (crx), a member of the orthodenticle homeobox (otx) family, is thought to regulate pineal circadian activity. In the mouse, targeted inactivation of Crx causes a reduction in pineal gene expression and attenuated entrainment to light/dark cycles. Here we show that crx and otx5 orthologs are expressed in both the pineal organ and the asymmetrically positioned parapineal of larval zebrafish. Circadian gene expression is unaffected by a reduction in Crx expression but is inhibited specifically by depletion of Otx5. Our results indicate that Otx5 rather than Crx regulates genes that show circadian expression in the zebrafish pineal complex.

摘要

光神经内分泌系统将环境光条件转化为内分泌和神经内分泌信号的昼夜节律性产生。这一过程的核心是松果体器官,它在褪黑素的周期性合成和释放中具有保守作用,以影响睡眠模式和季节性繁殖。在低等脊椎动物中,松果体器官含有光感受器,其活动带动内源性生物钟并调节松果体细胞中的转录。在哺乳动物中,松果体功能受投射到视交叉上核(内源性生物钟的位点)的视网膜光感受器影响。然后,一条多突触通路将有关昼夜节律性和光周期的信息传递到松果体器官。视锥视杆同源框基因(crx)是正齿同源框(otx)家族的成员,被认为可调节松果体的昼夜活动。在小鼠中,Crx的靶向失活导致松果体基因表达减少,并减弱了对明暗周期的同步化。我们在此表明,crx和otx5直系同源基因在幼体斑马鱼的松果体器官和不对称定位的副松果体中均有表达。昼夜节律基因表达不受Crx表达减少的影响,但会被Otx5的缺失特异性抑制。我们的结果表明,在斑马鱼松果体复合体中,是Otx5而非Crx调节呈现昼夜节律表达的基因。

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