The retina visual cycle is driven by cis retinol oxidation in the outer segments of cones.

IF 1.1 4区 医学 Q4 NEUROSCIENCES
Shinya Sato, Rikard Frederiksen, M Carter Cornwall, Vladimir J Kefalov
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引用次数: 17

Abstract

Vertebrate rod and cone photoreceptors require continuous supply of chromophore for regenerating their visual pigments after photoactivation. Cones, which mediate our daytime vision, demand a particularly rapid supply of 11-cis retinal chromophore in order to maintain their function in bright light. An important contribution to this process is thought to be the chromophore precursor 11-cis retinol, which is supplied to cones from Müller cells in the retina and subsequently oxidized to 11-cis retinal as part of the retina visual cycle. However, the molecular identity of the cis retinol oxidase in cones remains unclear. Here, as a first step in characterizing this enzymatic reaction, we sought to determine the subcellular localization of this activity in salamander red cones. We found that the onset of dark adaptation of isolated salamander red cones was substantially faster when exposing directly their outer vs. their inner segment to 9-cis retinol, an analogue of 11-cis retinol. In contrast, this difference was not observed when treating the outer vs. inner segment with 9-cis retinal, a chromophore analogue which can directly support pigment regeneration. These results suggest, surprisingly, that the cis-retinol oxidation occurs in the outer segments of cone photoreceptors. Confirming this notion, pigment regeneration with exogenously added 9-cis retinol was directly observed in the truncated outer segments of cones, but not in rods. We conclude that the enzymatic machinery required for the oxidation of recycled cis retinol as part of the retina visual cycle is present in the outer segments of cones.

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视网膜的视觉循环是由顺式视黄醇氧化在锥体的外部部分驱动的。
脊椎动物视杆和视锥光感受器在光激活后需要持续的发色团供应来再生其视觉色素。视锥细胞负责调节我们白天的视觉,它需要快速供应11-顺式视网膜发色团,以维持其在强光下的功能。这一过程的一个重要贡献被认为是发色团前体11-顺式视黄醇,它从视网膜中的m ller细胞提供给视锥细胞,随后被氧化为11-顺式视网膜,作为视网膜视觉循环的一部分。然而,顺式视黄醇氧化酶在锥体中的分子特性尚不清楚。在这里,作为表征这种酶促反应的第一步,我们试图确定这种活性在蝾螈红锥体中的亚细胞定位。我们发现,当将分离的蝾螈红视锥直接暴露于9-顺式视黄醇(一种类似于11-顺式视黄醇的物质)中时,其暗适应的开始要快得多。相比之下,当用9-顺式视网膜(一种可以直接支持色素再生的发色团类似物)处理外段和内段时,没有观察到这种差异。这些结果表明,令人惊讶的是,顺式视黄醇氧化发生在锥体光感受器的外层。外源添加9-顺式视黄醇的色素再生在锥体截短的外节中直接观察到,证实了这一观点,但在杆状体中没有。我们得出的结论是,作为视网膜视觉循环的一部分,氧化循环顺式视黄醇所需的酶机制存在于视锥细胞的外段。
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来源期刊
Visual Neuroscience
Visual Neuroscience 医学-神经科学
CiteScore
2.20
自引率
5.30%
发文量
8
审稿时长
>12 weeks
期刊介绍: Visual Neuroscience is an international journal devoted to the publication of experimental and theoretical research on biological mechanisms of vision. A major goal of publication is to bring together in one journal a broad range of studies that reflect the diversity and originality of all aspects of neuroscience research relating to the visual system. Contributions may address molecular, cellular or systems-level processes in either vertebrate or invertebrate species. The journal publishes work based on a wide range of technical approaches, including molecular genetics, anatomy, physiology, psychophysics and imaging, and utilizing comparative, developmental, theoretical or computational approaches to understand the biology of vision and visuo-motor control. The journal also publishes research seeking to understand disorders of the visual system and strategies for restoring vision. Studies based exclusively on clinical, psychophysiological or behavioral data are welcomed, provided that they address questions concerning neural mechanisms of vision or provide insight into visual dysfunction.
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