Literature DB >> 18597743

Novel functions for Period 3 and Exo-rhodopsin in rhythmic transcription and melatonin biosynthesis within the zebrafish pineal organ.

Lain X Pierce1, Ramil R Noche, Olga Ponomareva, Christopher Chang, Jennifer O Liang.   

Abstract

Entrainment of circadian clocks to environmental cues such as photoperiod ensures that daily biological rhythms stay in synchronization with the Earth's rotation. The vertebrate pineal organ has a conserved role in circadian regulation as the primary source of the nocturnal hormone melatonin. In lower vertebrates, the pineal has an endogenous circadian clock as well as photoreceptive cells that regulate this clock. The zebrafish opsin protein Exo-rhodopsin (Exorh) is expressed in pineal photoreceptors and is a candidate to mediate the effects of environmental light on pineal rhythms and melatonin synthesis. We demonstrate that Exorh has an important role in regulating gene transcription within the pineal. In developing embryos that lack Exorh, expression of the exorh gene itself and of the melatonin synthesis gene serotonin N-acetyl transferase 2 (aanat2) are significantly reduced. This suggests that the Exorh protein at the cell membrane is part of a signaling pathway that positively regulates transcription of these genes, and ultimately melatonin production, in the pineal. Like many other opsin genes, exorh is expressed with a daily rhythm: mRNA levels are higher at night than during the day. We found that the transcription factor Orthodenticle homeobox 5 (Otx5) activates exorh transcription, while the putative circadian clock component Period 3 (Per3) represses expression during the day, thereby contributing to the rhythm of transcription. This work identifies novel roles for Exorh and Per3, and gives insight into potential interactions between the sensory and circadian systems within the pineal.

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Year:  2008        PMID: 18597743      PMCID: PMC2615473          DOI: 10.1016/j.brainres.2008.05.020

Source DB:  PubMed          Journal:  Brain Res        ISSN: 0006-8993            Impact factor:   3.252


  64 in total

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2.  Morphological, physiological, and biochemical changes in rhodopsin knockout mice.

Authors:  J Lem; N V Krasnoperova; P D Calvert; B Kosaras; D A Cameron; M Nicolò; C L Makino; R L Sidman
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4.  Deregulated expression of the PER1, PER2 and PER3 genes in breast cancers.

Authors:  Shou-Tung Chen; Kong-Bung Choo; Ming-Feng Hou; Kun-Tu Yeh; Shou-Jen Kuo; Jan-Gowth Chang
Journal:  Carcinogenesis       Date:  2005-03-24       Impact factor: 4.944

5.  Identification of novel clock-controlled genes by cDNA macroarray analysis in Chlamydomonas reinhardtii.

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6.  Functional development of the zebrafish pineal gland: light-induced expression of period2 is required for onset of the circadian clock.

Authors:  L Ziv; S Levkovitz; R Toyama; J Falcon; Y Gothilf
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9.  Starting the zebrafish pineal circadian clock with a single photic transition.

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  15 in total

1.  Effect of lighting conditions on zebrafish growth and development.

Authors:  Natalia Villamizar; Luisa María Vera; Nicholas Simon Foulkes; Francisco Javier Sánchez-Vázquez
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5.  Gene-expression signatures of Atlantic salmon's plastic life cycle.

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6.  Gonadotropin-releasing hormone-independent effects of recombinant vertebrate ancient long opsin in the goldfish Carassius auratus reveal alternative reproduction pathways.

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7.  Circadian rhythms in the pineal organ persist in zebrafish larvae that lack ventral brain.

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10.  ERK Signaling Regulates Light-Induced Gene Expression via D-Box Enhancers in a Differential, Wavelength-Dependent Manner.

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Journal:  PLoS One       Date:  2013-06-26       Impact factor: 3.240

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