Center for Integrative Genomics, University of Lausanne, Lausanne, Switzerland.
Jules-Gonin Eye Hospital, Fondation Asile des Aveugles, University of Lausanne, Lausanne, Switzerland.
Elife. 2017 May 26;6:e23292. doi: 10.7554/eLife.23292.
Besides its role in vision, light impacts physiology and behavior through circadian and direct ( 'masking') mechanisms. In Smith-Magenis syndrome (SMS), the dysregulation of both sleep-wake behavior and melatonin production strongly suggests impaired non-visual light perception. We discovered that mice haploinsufficient for the SMS causal gene, (), were hypersensitive to light such that light eliminated alert and active-wake behaviors, while leaving time-spent-awake unaffected. Moreover, variables pertaining to circadian rhythm entrainment were activated more strongly by light. At the input level, the activation of rod/cone and suprachiasmatic nuclei (SCN) by light was paradoxically greatly reduced, while the downstream activation of the ventral-subparaventricular zone (vSPVZ) was increased. The vSPVZ integrates retinal and SCN input and, when activated, suppresses locomotor activity, consistent with the behavioral hypersensitivity to light we observed. Our results implicate as a novel and central player in processing non-visual light information, from input to behavioral output.
除了在视觉方面的作用,光还通过昼夜节律和直接(“掩蔽”)机制影响生理和行为。在 Smith-Magenis 综合征(SMS)中,睡眠-觉醒行为和褪黑素产生的失调强烈表明非视觉光感知受损。我们发现,SMS 致病基因()单倍不足的小鼠对光敏感,以至于光消除了警觉和活跃的觉醒行为,而不影响清醒时间。此外,与昼夜节律同步相关的变量受光的影响更强烈。在输入水平上,光对视杆/视锥和视交叉上核(SCN)的激活被悖论地大大降低,而下游对腹侧下丘脑外侧区(vSPVZ)的激活增加。vSPVZ 整合视网膜和 SCN 的输入,当被激活时,抑制运动活动,与我们观察到的对光的行为敏感性增加一致。我们的结果表明,作为从输入到行为输出处理非视觉光信息的新的核心参与者,在处理非视觉光信息中起着重要作用。