Kaushik Vineeta, Gessa Luca, Kumar Nelam, Pinkas Matyáš, Czarnocki-Cieciura Mariusz, Palczewski Krzysztof, Nováček Jiří, Fernandes Humberto
Institute of Physical Chemistry, Polish Academy of Sciences , Warsaw, Poland.
Integrated Structural Biology Group, International Centre for Translational Eye Research, Institute of Physical Chemistry, Polish Academy of Sciences , Warsaw, Poland.
Open Biol. 2025 Jan;15(1):240180. doi: 10.1098/rsob.240180. Epub 2025 Jan 22.
The vertebrate visual cycle hinges on enzymatically converting all--retinol (at-ROL) into 11--retinal (11c-RAL), the chromophore that binds to opsins in photoreceptors, forming light-responsive pigments. When struck by a photon, these pigments activate the phototransduction pathway and initiate the process of vision. The enzymatic isomerization of at-ROL, crucial for restoring the visual pigments and preparing them to receive new light stimuli, relies on various enzymes found in both the photoreceptors and retinal pigment epithelium cells. To function effectively, retinoids must shuttle between these two cell types. Retinol-binding protein 3 (RBP3), located in the interphotoreceptor matrix, probably plays a pivotal role in this transport mechanism. Comprised of four retinoid-binding modules, RBP3 also binds fatty acids, potentially aiding retinal function by facilitating the loading and unloading of different retinoids at specific cell types thereby directing the cycle. In this study, we present a 3.67 Å cryoEM structure of porcine RBP3, along with molecular docking analysis and corroborative in-solution small-angle X-ray scattering data for titration of RBP3 with relevant ligands, that also give insights on RBP3 conformational adaptability.
脊椎动物的视觉循环依赖于将全反式视黄醇(at-ROL)酶促转化为11-顺式视黄醛(11c-RAL),11c-RAL是一种发色团,可与光感受器中的视蛋白结合,形成光响应色素。当受到光子撞击时,这些色素会激活光转导途径并启动视觉过程。at-ROL的酶促异构化对于恢复视觉色素并使其准备好接收新的光刺激至关重要,这依赖于光感受器和视网膜色素上皮细胞中发现的各种酶。为了有效发挥作用,类视黄醇必须在这两种细胞类型之间穿梭。位于光感受器间基质中的视黄醇结合蛋白3(RBP3)可能在这种转运机制中起关键作用。RBP3由四个类视黄醇结合模块组成,还结合脂肪酸,可能通过促进不同类视黄醇在特定细胞类型中的加载和卸载来辅助视网膜功能,从而指导循环。在本研究中,我们展示了猪RBP3的3.67 Å冷冻电镜结构,以及分子对接分析和用于用相关配体滴定RBP3的溶液中小角X射线散射的佐证数据,这些数据也为RBP3的构象适应性提供了见解。