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光感受器间类视黄醇结合蛋白是从视杆光感受器外段移除视黄醇的生理相关载体。

Interphotoreceptor retinoid-binding protein is the physiologically relevant carrier that removes retinol from rod photoreceptor outer segments.

作者信息

Wu Qingqing, Blakeley Lorie R, Cornwall M Carter, Crouch Rosalie K, Wiggert Barbara N, Koutalos Yiannis

机构信息

Department of Ophthalmology, Medical University of South Carolina, Charleston, South Carolina, USA.

出版信息

Biochemistry. 2007 Jul 24;46(29):8669-79. doi: 10.1021/bi7004619. Epub 2007 Jun 30.

Abstract

Light detection by vertebrate rod photoreceptor outer segments results in the destruction of the visual pigment, rhodopsin, as its retinyl moiety is photoisomerized from 11-cis to all-trans. The regeneration of rhodopsin is necessary for vision and begins with the release of the all-trans retinal and its reduction to all-trans retinol. Retinol is then transported out of the rod outer segment for further processing. We used fluorescence imaging to monitor retinol fluorescence and quantify the kinetics of its formation and clearance after rhodopsin bleaching in the outer segments of living isolated frog (Rana pipiens) rod photoreceptors. We independently measured the release of all-trans retinal from bleached rhodopsin in frog rod outer segment membranes and the rate of all-trans retinol removal by the lipophilic carriers interphotoreceptor retinoid binding protein (IRBP) and serum albumin. We find that the kinetics of all-trans retinol formation in frog rod outer segments after rhodopsin bleaching are to a good first approximation determined by the kinetics of all-trans retinal release from the bleached pigment. For the physiological concentrations of carriers, the rate of retinol removal from the outer segment is determined by IRBP concentration, whereas the effect of serum albumin is negligible. The results indicate the presence of a specific interaction between IRBP and the rod outer segment, probably mediated by a receptor. The effect of different concentrations of IRBP on the rate of retinol removal shows no cooperativity and has an EC50 of 40 micromol/L.

摘要

脊椎动物视杆光感受器外段的光检测会导致视觉色素视紫红质的破坏,因为其视黄基部分从11-顺式光异构化为全反式。视紫红质的再生对于视觉是必需的,并且始于全反式视黄醛的释放及其还原为全反式视黄醇。然后视黄醇被转运出视杆外段进行进一步加工。我们使用荧光成像来监测视黄醇荧光,并量化在离体活蛙(豹蛙)视杆光感受器外段视紫红质漂白后其形成和清除的动力学。我们独立测量了蛙视杆外段膜中漂白视紫红质释放全反式视黄醛的情况以及亲脂性载体间视黄醛结合蛋白(IRBP)和血清白蛋白去除全反式视黄醇的速率。我们发现,视紫红质漂白后蛙视杆外段中全反式视黄醇形成的动力学在很好的一级近似下由漂白色素释放全反式视黄醛的动力学决定。对于生理浓度的载体,视黄醇从外段的去除速率由IRBP浓度决定,而血清白蛋白的影响可忽略不计。结果表明IRBP与视杆外段之间存在特异性相互作用,可能由一种受体介导。不同浓度的IRBP对视黄醇去除速率的影响未显示协同性,其半数有效浓度(EC50)为40微摩尔/升。

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