Department of Pharmacology, Case Western Reserve University, Cleveland, OH.
Department of Ophthalmology, Gavin Herbert Eye Institute, University of California, Irvine, Irvine, CA.
J Cell Biol. 2021 Aug 2;220(8). doi: 10.1083/jcb.202101063. Epub 2021 Jun 16.
Photoreceptors rely on distinct membrane compartments to support their specialized function. Unlike protein localization, identification of critical differences in membrane content has not yet been expanded to lipids, due to the difficulty of isolating domain-specific samples. We have overcome this by using SMA to coimmunopurify membrane proteins and their native lipids from two regions of photoreceptor ROS disks. Each sample's copurified lipids were subjected to untargeted lipidomic and fatty acid analysis. Extensive differences between center (rhodopsin) and rim (ABCA4 and PRPH2/ROM1) samples included a lower PC to PE ratio and increased LC- and VLC-PUFAs in the center relative to the rim region, which was enriched in shorter, saturated FAs. The comparatively few differences between the two rim samples likely reflect specific protein-lipid interactions. High-resolution profiling of the ROS disk lipid composition gives new insights into how intricate membrane structure and protein activity are balanced within the ROS, and provides a model for future studies of other complex cellular structures.
光感受器依赖于独特的膜隔室来支持其特化功能。与蛋白质定位不同,由于难以分离特定区域的样本,关键的膜含量差异尚未扩展到脂质。我们通过使用 SMA 从光感受器 ROS 盘的两个区域共免疫纯化膜蛋白及其天然脂质来克服这一问题。每个样品共纯化的脂质都进行了非靶向脂质组学和脂肪酸分析。中心(视紫红质)和边缘(ABCA4 和 PRPH2/ROM1)样品之间存在广泛差异,包括中心的 PC 与 PE 比值较低,LC-和 VLC-PUFA 增加,而边缘区域富含较短的饱和 FA。两个边缘样品之间相对较少的差异可能反映了特定的蛋白质-脂质相互作用。ROS 盘脂质组成的高分辨率分析为深入了解复杂的膜结构和蛋白质活性如何在 ROS 中达到平衡提供了新的见解,并为未来研究其他复杂细胞结构提供了模型。