Yoshimura T, Ebihara S
Department of Animal Physiology, School of Agricultural Sciences, Nagoya University, Japan.
J Comp Physiol A. 1996 Jun;178(6):797-802. doi: 10.1007/BF00225828.
Light-dark cycles are the most important time cue for the circadian system to entrain the endogenous circadian clock to the environmental 24 h cycle. Although photic entrainment of circadian rhythms is mediated by the eye in mammals, photoreceptors implicated in circadian photoreception remain unknown. In our previous study, retinally degenerate CBA/J (rd/rd) mice were found to have lower circadian photosensitivity for phase-shifting the locomotor activity rhythms than normal CBA/N(+/+) mice. In the present study, the spectral sensitivity for phase-shifting the rhythms was examined in order to characterize the photopigments involved in circadian photoreception of these mice. The spectral sensitivity of CBA/J-rd/rd mice clearly fitted to the Dartnall nomogram for a retinal(1)-based pigment with a maximum at 480 nm, while the best fitted nomogram had a maximum at 500 nm in CBA/N- +/+ mice. These results suggest that circadian photopigments involved in CBA/J-rd/rd and CBA/N- +/+ mice may be different.
明暗周期是昼夜节律系统使内源性生物钟与环境24小时周期同步的最重要的时间线索。尽管在哺乳动物中,昼夜节律的光诱导是由眼睛介导的,但参与昼夜光感受的光感受器仍然未知。在我们之前的研究中,发现视网膜退化的CBA/J(rd/rd)小鼠比正常的CBA/N(+/+)小鼠对运动活动节律进行相位偏移的昼夜光敏感性更低。在本研究中,为了表征参与这些小鼠昼夜光感受的光色素,检测了节律相位偏移的光谱敏感性。CBA/J-rd/rd小鼠的光谱敏感性明显符合基于视网膜(1)的色素的达特纳尔列线图,其最大值在480nm,而在CBA/N- +/+小鼠中,最佳拟合列线图的最大值在500nm。这些结果表明,参与CBA/J-rd/rd和CBA/N- +/+小鼠的昼夜光色素可能不同。