Dark-adapted light response in mice is regulated by a circadian clock located in rod photoreceptors

每2 昼夜节律 生物钟 生物 视网膜 Erg公司 视网膜 细胞生物学 黑素psin 视网膜电图 基因剔除小鼠 神经科学 光对昼夜节律的影响 视交叉上核 句号(音乐) 时钟 内分泌学 遗传学 基因 生物化学 感光色素 物理 声学
作者
Shumet T. Gegnaw,Cristina Sandu,Jorge Mendoza,Arthur A.B. Bergen,Marie‐Paule Felder‐Schmittbuhl
出处
期刊:Experimental Eye Research [Elsevier BV]
卷期号:213: 108807-108807 被引量:6
标识
DOI:10.1016/j.exer.2021.108807
摘要

The retinal circadian system consists of a network of clocks located virtually in every retinal cell-type. Although it is established that the circadian clock regulates many rhythmic processes in the retina, the links between retinal cell-specific clocks and visual function remain to be elucidated. Bmal1 is a principal, non-redundant component of the circadian clock in mammals and is required to keep 24 h rhythms in the retinal transcriptome and in visual processing under photopic light condition. In the current study, we investigated the retinal function in mice with a rod-specific knockout of Bmal1. For this purpose, we measured whole retina PER2::Luciferase bioluminescence and the dark-adapted electroretinogram (ERG). We observed circadian day-night differences in ERG a- and b-waves in control mice carrying one allele of Bmal1 in rods, with higher amplitudes during the subjective night. These differences were abolished in rod-specific Bmal1 knockout mice, whose ERG light-responses remained constitutively low (day-like). Overall, PER2::Luciferase rhythmicity in whole retinas was not defective in these mice but was characterized by longer period and higher rhythmic power compared to retinas with wild type Bmal1 gene. Taken together, these data suggest that a circadian clock located in rods regulates visual processing in a cell autonomous manner.
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