Cholecystokinin-A receptors regulate photic input pathways to the circadian clock

Takao Shimazoe, Mitsutaka Morita, Shinichiro Ogiwara, Tomoyoshi Kojiya, Junpei Goto, Masaki Kamakura, Takahiro Moriya, Kazuyuki Shinohara, Soichi Takiguchi, Akira Kono, Kyoko Miyasaka, Akihiro Funakoshi, Masayuki Ikeda*

*この論文の責任著者

研究成果: ジャーナルへの寄稿学術論文査読

17 被引用数 (Scopus)

抄録

Daily behaviors are strongly dominated by internally generated circadian rhythms, but the underlying mechanisms remain unclear. In mammals, photoentrainment of behaviors to light-dark cycles involves signaling from both intrinsically photosensitive retinal ganglion cells and classic photoreceptor pathways to the suprachiasmatic nucleus (SCN). How classic photoreceptor pathways work with the photosensitive ganglion cells, however, is not fully understood. Although cholecystokinin (CCK) peptide has been shown to be present in a variety of vertebrate retinas, its function at a systems level is also unknown. In the present study we examined a possible role of CCK-A receptors in photoentrainment using CCK-A receptor knockout mice. The lacZ reporter gene within a gene-knockout cassette revealed precise localization of CCK-A receptors in the circadian clock system. We demonstrated that CCK-A receptors were located predominately on glycinergic amacrine cells but were rarely found on SCN neurons. Moreover, Ca2+ imaging analysis demonstrated that the CCK-A agonist, CCK-8 sulfate (CCK-8s), mobilized intracellular Ca2+ in amacrine cells but not glutamate-receptive SCN neurons. Furthermore, light pulse-induced mPer1/mPer2 gene expression in SCN, behavioral phase shifts, and the pupillary reflex were significantly reduced in CCK-A receptor knockout mice. These data indicate a novel function of CCK-A receptors in the nonimage-forming photoreception presumably via amacrine cell-mediated signal transduction pathways.

本文言語英語
ページ(範囲)1479-1490
ページ数12
ジャーナルFASEB Journal
22
5
DOI
出版ステータス出版済み - 2008/05

ASJC Scopus 主題領域

  • バイオテクノロジー
  • 生化学
  • 分子生物学
  • 遺伝学

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