Literature DB >> 28675567

A modulatory role of the Rax homeobox gene in mature pineal gland function: Investigating the photoneuroendocrine circadian system of a Rax conditional knockout mouse.

Kristian Rohde1, Tenna Bering1,2, Takahisa Furukawa3, Martin Fredensborg Rath1.   

Abstract

The retinal and anterior neural fold homeobox gene (Rax) controls development of the eye and the forebrain. Postnatal expression of Rax in the brain is restricted to the pineal gland, a forebrain structure devoted to melatonin synthesis. The role of Rax in pineal function is unknown. In order to investigate the role of Rax in pineal function while circumventing forebrain abnormalities of the global Rax knockout, we generated an eye and pineal-specific Rax conditional knockout mouse. Deletion of Rax in the pineal gland did not affect morphology of the gland, suggesting that Rax is not essential for pineal gland development. In contrast, deletion of Rax in the eye generated an anophthalmic phenotype. In addition to the loss of central visual pathways, the suprachiasmatic nucleus of the hypothalamus housing the circadian clock was absent, indicating that the retinohypothalamic tract is required for the nucleus to develop. Telemetric analyses confirmed the lack of a functional circadian clock. Arylalkylamine N-acetyltransferase (Aanat) transcripts, encoding the melatonin rhythm-generating enzyme, were undetectable in the pineal gland of the Rax conditional knockout under normal conditions, whereas the paired box 6 homeobox gene, known to regulate pineal development, was up-regulated. By injecting isoproterenol, which mimics a nocturnal situation in the pineal gland, we were able to induce pineal expression of Aanat in the Rax conditional knockout mouse, but Aanat transcript levels were significantly lower than those of Rax-proficient mice. Our data suggest that Rax controls pineal gene expression and via Aanat may modulate melatonin synthesis.
© 2017 International Society for Neurochemistry.

Entities:  

Keywords:  Rax; circadian; homeobox; photoneuroendocrine system; pineal gland; suprachiasmatic nucleus

Mesh:

Substances:

Year:  2017        PMID: 28675567     DOI: 10.1111/jnc.14120

Source DB:  PubMed          Journal:  J Neurochem        ISSN: 0022-3042            Impact factor:   5.372


  5 in total

1.  Circadian regulation and molecular role of the Bsx homeobox gene in the adult pineal gland.

Authors:  Mikkel B Carstensen; Henrik Hertz; Tenna Bering; Morten Møller; Kristian Rohde; David C Klein; Steven L Coon; Martin F Rath
Journal:  J Pineal Res       Date:  2019-12-30       Impact factor: 12.081

2.  The Lhx4 homeobox transcript in the rat pineal gland: Adrenergic regulation and impact on transcripts encoding melatonin-synthesizing enzymes.

Authors:  Henrik Hertz; Mikkel B Carstensen; Tenna Bering; Kristian Rohde; Morten Møller; Agnete M Granau; Steven L Coon; David C Klein; Martin F Rath
Journal:  J Pineal Res       Date:  2019-11-11       Impact factor: 12.081

3.  Genetic ablation of the Bsx homeodomain transcription factor in zebrafish: Impact on mature pineal gland morphology and circadian behavior.

Authors:  Mikkel Bloss Carstensen; Adar Medvetzky; Alon Weinberger; Wolfgang Driever; Yoav Gothilf; Martin Fredensborg Rath
Journal:  J Pineal Res       Date:  2022-03-31       Impact factor: 12.081

4.  PABPC1-induced stabilization of BDNF-AS inhibits malignant progression of glioblastoma cells through STAU1-mediated decay.

Authors:  Rui Su; Jun Ma; Jian Zheng; Xiaobai Liu; Yunhui Liu; Xuelei Ruan; Shuyuan Shen; Chunqing Yang; Di Wang; Heng Cai; Zhen Li; Yixue Xue
Journal:  Cell Death Dis       Date:  2020-02-03       Impact factor: 8.469

Review 5.  Pineal Gland from the Cell Culture to Animal Models: A Review.

Authors:  Alekhya Peruri; Alexandra Morgan; Alida D'Souza; Bridget Mellon; Carey W Hung; Gabriella Kayal; Haejung Shin; Kim Nguyen; Malek Zahed; Mason Yount; Reilly Ellis; Taylor Wynne; Virginia Fritz; Zachary Simmons; Kelly C S Roballo
Journal:  Life (Basel)       Date:  2022-07-15
  5 in total

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