Photic stimulation of the suprachiasmatic nucleus via the non-visual optic system. A gene expression study in the blind Crx (-/-) mouse

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Standard

Photic stimulation of the suprachiasmatic nucleus via the non-visual optic system. A gene expression study in the blind Crx (-/-) mouse. / Rovsing, Louise; Møller, Morten.

In: Cell and Tissue Research, Vol. 358, No. 1, 28.05.2014, p. 239-48.

Research output: Contribution to journalJournal articleResearchpeer-review

Harvard

Rovsing, L & Møller, M 2014, 'Photic stimulation of the suprachiasmatic nucleus via the non-visual optic system. A gene expression study in the blind Crx (-/-) mouse', Cell and Tissue Research, vol. 358, no. 1, pp. 239-48. https://doi.org/10.1007/s00441-014-1910-0

APA

Rovsing, L., & Møller, M. (2014). Photic stimulation of the suprachiasmatic nucleus via the non-visual optic system. A gene expression study in the blind Crx (-/-) mouse. Cell and Tissue Research, 358(1), 239-48. https://doi.org/10.1007/s00441-014-1910-0

Vancouver

Rovsing L, Møller M. Photic stimulation of the suprachiasmatic nucleus via the non-visual optic system. A gene expression study in the blind Crx (-/-) mouse. Cell and Tissue Research. 2014 May 28;358(1):239-48. https://doi.org/10.1007/s00441-014-1910-0

Author

Rovsing, Louise ; Møller, Morten. / Photic stimulation of the suprachiasmatic nucleus via the non-visual optic system. A gene expression study in the blind Crx (-/-) mouse. In: Cell and Tissue Research. 2014 ; Vol. 358, No. 1. pp. 239-48.

Bibtex

@article{aababa8911014970ae7510b312b4ade6,
title = "Photic stimulation of the suprachiasmatic nucleus via the non-visual optic system. A gene expression study in the blind Crx (-/-) mouse",
abstract = "The visual system of vertebrates consists of an image-forming and a non-image-forming optic system; the image-forming optic system involves the classic photoreceptors, the rods and cones, whereas the non-image-forming optic system involves the melanopsin-containing retinal ganglion cells. Both optic systems make direct neuroanatomical connections to the suprachiasmatic nucleus (SCN) in the hypothalamus in which the biological clock of vertebrates is located. The rhythmic output from SCN neurons is entrained by light via the retina and the retinohypothalamic tract. The response of exposure to light during the subjective night is an immediate expression of several early response genes in the SCN. We show, by quantitative real-time polymerase chain reaction, that the amount of melanopsin mRNA in the retinal ganglion cells is preserved in the blind Crx (-/-) mouse with degenerated classic photoreceptors. At zeitgeber time 16, the Crx (-/-) and wild-type mice were exposed to 1 h of light. This resulted in a strong up-regulation of the immediate early genes Nr4a1, Erg, and Rrad in the SCN of both genotypes. Light stimulation during the subjective night resulted in a strong up-regulation of c-fos in both genotypes with a significantly higher up-regulation in the blind Crx (-/-) mouse. Expression of Grp and Vip, the genes for two classic peptides located in the SCN, was not influenced by light stimulation. The data strongly indicate the involvement of the melanopsin-based non-visual optic system in the regulation of immediate early genes in the SCN.",
author = "Louise Rovsing and Morten M{\o}ller",
year = "2014",
month = may,
day = "28",
doi = "10.1007/s00441-014-1910-0",
language = "English",
volume = "358",
pages = "239--48",
journal = "Cell and Tissue Research",
issn = "0302-766X",
publisher = "Springer",
number = "1",

}

RIS

TY - JOUR

T1 - Photic stimulation of the suprachiasmatic nucleus via the non-visual optic system. A gene expression study in the blind Crx (-/-) mouse

AU - Rovsing, Louise

AU - Møller, Morten

PY - 2014/5/28

Y1 - 2014/5/28

N2 - The visual system of vertebrates consists of an image-forming and a non-image-forming optic system; the image-forming optic system involves the classic photoreceptors, the rods and cones, whereas the non-image-forming optic system involves the melanopsin-containing retinal ganglion cells. Both optic systems make direct neuroanatomical connections to the suprachiasmatic nucleus (SCN) in the hypothalamus in which the biological clock of vertebrates is located. The rhythmic output from SCN neurons is entrained by light via the retina and the retinohypothalamic tract. The response of exposure to light during the subjective night is an immediate expression of several early response genes in the SCN. We show, by quantitative real-time polymerase chain reaction, that the amount of melanopsin mRNA in the retinal ganglion cells is preserved in the blind Crx (-/-) mouse with degenerated classic photoreceptors. At zeitgeber time 16, the Crx (-/-) and wild-type mice were exposed to 1 h of light. This resulted in a strong up-regulation of the immediate early genes Nr4a1, Erg, and Rrad in the SCN of both genotypes. Light stimulation during the subjective night resulted in a strong up-regulation of c-fos in both genotypes with a significantly higher up-regulation in the blind Crx (-/-) mouse. Expression of Grp and Vip, the genes for two classic peptides located in the SCN, was not influenced by light stimulation. The data strongly indicate the involvement of the melanopsin-based non-visual optic system in the regulation of immediate early genes in the SCN.

AB - The visual system of vertebrates consists of an image-forming and a non-image-forming optic system; the image-forming optic system involves the classic photoreceptors, the rods and cones, whereas the non-image-forming optic system involves the melanopsin-containing retinal ganglion cells. Both optic systems make direct neuroanatomical connections to the suprachiasmatic nucleus (SCN) in the hypothalamus in which the biological clock of vertebrates is located. The rhythmic output from SCN neurons is entrained by light via the retina and the retinohypothalamic tract. The response of exposure to light during the subjective night is an immediate expression of several early response genes in the SCN. We show, by quantitative real-time polymerase chain reaction, that the amount of melanopsin mRNA in the retinal ganglion cells is preserved in the blind Crx (-/-) mouse with degenerated classic photoreceptors. At zeitgeber time 16, the Crx (-/-) and wild-type mice were exposed to 1 h of light. This resulted in a strong up-regulation of the immediate early genes Nr4a1, Erg, and Rrad in the SCN of both genotypes. Light stimulation during the subjective night resulted in a strong up-regulation of c-fos in both genotypes with a significantly higher up-regulation in the blind Crx (-/-) mouse. Expression of Grp and Vip, the genes for two classic peptides located in the SCN, was not influenced by light stimulation. The data strongly indicate the involvement of the melanopsin-based non-visual optic system in the regulation of immediate early genes in the SCN.

U2 - 10.1007/s00441-014-1910-0

DO - 10.1007/s00441-014-1910-0

M3 - Journal article

C2 - 24865246

VL - 358

SP - 239

EP - 248

JO - Cell and Tissue Research

JF - Cell and Tissue Research

SN - 0302-766X

IS - 1

ER -

ID: 112994303