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首页> 外文期刊>The Journal of Experimental Biology >Retinoid cycles in the cone-dominated chicken retina
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Retinoid cycles in the cone-dominated chicken retina

机译:视锥细胞主导的鸡视网膜中的类维生素A循环

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In past decades, the role of retinoids in support of rod photopigment regeneration has been extensively characterized. In the rhodopsin cycle, retinal chromophore from bleached rod pigments is reduced to retinol and transferred to the retinal pigment epithelium (RPE) to store as all-trans retinyl ester. This ester pool is subsequently utilized for visual pigment regeneration. However, there is a lack of information on the putative cone visual cycle. In the present study, we provide experimental evidence in support of a novel retinoid cycle for cone photopigment regeneration. In the cone-rich chicken, light exposure resulted in the accumulation of 11-cis retinyl esters to the retina and all-trans retinyl esters to the RPE. Both the rate of increase and the amount of 11-cis retinyl esters in the retina far exceeded those of the all-trans retinyl esters in the RPE. In response to dark adaptation, this 11-cis retinyl ester pool in the retina depletes at a rate several times faster than the all-trans retinyl ester pool in the RPE. In vitro, isolated, dark-adapted retinas devoid of RPE show both an accumulation of 11-cis retinyl ester and a concomitant reduction of 11-cis retinal chromophore in response to light exposure. Finally, we provide experimental results to elucidate a cone visual cycle in chicken by relating the change in retinoids (retinal and retinyl ester) with time during light and dark adaptation. Our results support a new paradigm for cone photopigment regeneration in which the 11-cis retinyl ester pool in the retina serves as the primary source of visual chromophore for cone pigment regeneration.
机译:在过去的几十年中,类维生素A在支持棒状光色素再生中的作用已得到广泛表征。在视紫红质循环中,来自漂白的杆状色素的视网膜发色团还原为视黄醇,并转移至视网膜色素上皮(RPE),以全反式视黄酯形式存储。随后将该酯池用于视觉色素再生。但是,缺乏有关假定视锥视觉周期的信息。在本研究中,我们提供实验证据来支持视锥细胞色素再生的新型维甲酸循环。在富含视锥细胞的鸡中,光线照射导致11-顺式视黄酯沉积到视网膜,而全反式视黄酯沉积到RPE。视网膜中11-顺式视黄酯的增加速率和数量都远远超过RPE中全反式视黄酯的数量。响应于黑暗适应,视网膜中的这种11-顺式视黄基酯库的耗竭速度比RPE中的全反式视黄基酯库快几倍。体外,不含RPE的,暗适应的视网膜显示了11-顺式视黄基酯的积累和11-顺式视网膜发色团在光照下的减少。最后,我们提供了实验结果,通过在光和暗适应过程中将类视色素(视网膜和视黄酯)的变化与时间相关联,阐明了鸡的视锥循环。我们的研究结果为视锥色素的再生提供了新的范例,其中视网膜中的11-顺式视黄酯池是视锥色素再生的可见生色团的主要来源。

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