Circadian (24-h) clocks are cell-autonomous biological oscillators that orchestrate many aspects of our physiology on a daily basis. Numerous circadian rhythms in mammalian and non-mammalian retinas have been observed and the presence of an endogenous circadian clock has been demonstrated. However, how the clock and associated rhythms assemble into pathways that support and control retina function remains largely unknown. Our goal here is to review the current status of our knowledge and evaluate recent advances. We describe many previously-observed retinal rhythms, including circadian rhythms of morphology, biochemistry, physiology, and gene expression. We evaluate evidence concerning the location and molecular machinery of the retinal circadian clock, as well as consider findings that suggest the presence of multiple clocks. Our primary focus though is to describe in depth circadian rhythms in the light responses of retinal neurons with an emphasis on clock control of rod and cone pathways. We examine evidence that specific biochemical mechanisms produce these daily light response changes. We also discuss evidence for the presence of multiple circadian retinal pathways involving rhythms in neurotransmitter activity, transmitter receptors, metabolism, and pH. We focus on distinct actions of two dopamine receptor systems in the outer retina, a dopamine D(4) receptor system that mediates circadian control of rod/cone gap junction coupling and a dopamine D(1) receptor system that mediates non-circadian, light/dark adaptive regulation of gap junction coupling between horizontal cells. Finally, we evaluate the role of circadian rhythmicity in retinal degeneration and suggest future directions for the field of retinal circadian biology.
Circadian clock organization in the retina: From clock components to rod and cone pathways and visual function.
视网膜中的昼夜节律时钟组织:从时钟组件到视杆细胞和视锥细胞通路以及视觉功能
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作者:Bhoi Jacob D, Goel Manvi, Ribelayga Christophe P, Mangel Stuart C
| 期刊: | Progress in Retinal and Eye Research | 影响因子: | 14.700 |
| 时间: | 2023 | 起止号: | 2023 May;94:101119 |
| doi: | 10.1016/j.preteyeres.2022.101119 | 研究方向: | 细胞生物学 |
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