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缺乏垂体腺苷酸环化酶激活肽的小鼠在昼夜节律性光反应方面存在选择性缺陷。

Selective deficits in the circadian light response in mice lacking PACAP.

作者信息

Colwell C S, Michel S, Itri J, Rodriguez W, Tam J, Lelièvre V, Hu Z, Waschek J A

机构信息

Department of Psychiatry and Biobehavioral Sciences, David Geffen School of Medicine, University of California Los Angeles, Los Angeles, California 90024-1759, USA.

出版信息

Am J Physiol Regul Integr Comp Physiol. 2004 Nov;287(5):R1194-201. doi: 10.1152/ajpregu.00268.2004. Epub 2004 Jun 24.

Abstract

Previous studies indicate that light information reaches the suprachiasmatic nucleus through a subpopulation of retinal ganglion cells that contain both glutamate and pituitary adenylyl cyclase-activating peptide (PACAP). Although the role of glutamate in this pathway has been well studied, the involvement of PACAP and its receptors is only beginning to be understood. To investigate the functions of PACAP in vivo, we developed a mouse model in which the gene coding for PACAP was disrupted by targeted homologous recombination. RIA was used to confirm a lack of detectable PACAP protein in these mice. PACAP-deficient mice exhibited significant impairment in the magnitude of the response to brief light exposures with both light-induced phase delays and advances of the circadian system impacted. This mutation equally impacted phase shifts induced by bright and dim light exposure. Despite these effects on phase shifting, the loss of PACAP had only limited effects on the generation of circadian oscillations, as measured by rhythms in wheel-running activity. Unlike melanopsin-deficient mice, the mice lacking PACAP exhibited no loss of function in the direct light-induced inhibition of locomotor activity, i.e., masking. Finally, the PACAP-deficient mice exhibited normal phase shifts in response to exposure to discrete dark treatments. The results reported here show that the loss of PACAP produced selective deficits in the light response of the circadian system.

摘要

先前的研究表明,光信息通过同时含有谷氨酸和垂体腺苷酸环化酶激活肽(PACAP)的视网膜神经节细胞亚群到达视交叉上核。尽管谷氨酸在该通路中的作用已得到充分研究,但PACAP及其受体的参与情况才刚刚开始被了解。为了研究PACAP在体内的功能,我们构建了一个小鼠模型,其中编码PACAP的基因通过靶向同源重组被破坏。放射免疫分析法(RIA)用于证实这些小鼠中检测不到PACAP蛋白。PACAP缺陷小鼠在对短暂光照的反应强度方面表现出显著受损,昼夜节律系统的光诱导相位延迟和提前均受到影响。这种突变同样影响了明亮和昏暗光照引起的相位变化。尽管对相位变化有这些影响,但通过转轮活动节律测量,PACAP的缺失对昼夜节律振荡的产生只有有限的影响。与缺乏黑视蛋白的小鼠不同,缺乏PACAP的小鼠在直接光诱导的运动活动抑制(即掩盖)方面没有功能丧失。最后,PACAP缺陷小鼠在暴露于离散黑暗处理时表现出正常的相位变化。此处报道的结果表明,PACAP的缺失在昼夜节律系统的光反应中产生了选择性缺陷。

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