El Mazouni Dounia, Gros Piet
Structural Biochemistry, Bijvoet Centre for Biomolecular Research, Department of Chemistry, Faculty of Science, Utrecht University, Netherlands.
Sci Adv. 2022 Nov 11;8(45):eadd3677. doi: 10.1126/sciadv.add3677. Epub 2022 Nov 9.
Mammalian peripherin-2 (PRPH2) and rod outer segment membrane protein 1 (ROM1) are retina-specific tetraspanins that partake in the constant renewal of stacked membrane discs of photoreceptor cells that enable vision. Here, we present single-particle cryo-electron microscopy structures of solubilized PRPH2-ROM1 heterodimers and higher-order oligomers. High-risk PRPH2 and ROM1 mutations causing blindness map to the protein-dimer interface. Cysteine bridges connect dimers forming positive-curved oligomers, whereas negative-curved oligomers were observed occasionally. Hexamers and octamers exhibit a secondary micelle that envelopes four carboxyl-terminal helices, supporting a potential role in membrane remodeling. Together, the data indicate multiple structures for PRPH2-ROM1 in creating and maintaining compartmentalization of photoreceptor cells.
哺乳动物的外周蛋白-2(PRPH2)和视杆外段膜蛋白1(ROM1)是视网膜特异性的四跨膜蛋白,参与使视觉成为可能的光感受器细胞堆叠膜盘的持续更新。在此,我们展示了可溶性PRPH2-ROM1异二聚体和高阶寡聚体的单颗粒冷冻电子显微镜结构。导致失明的高风险PRPH2和ROM1突变定位在蛋白质二聚体界面。半胱氨酸桥连接二聚体形成正弯曲的寡聚体,而偶尔也会观察到负弯曲的寡聚体。六聚体和八聚体表现出一个包裹四个羧基末端螺旋的二级胶束,支持其在膜重塑中的潜在作用。总之,这些数据表明PRPH2-ROM1在创建和维持光感受器细胞区室化方面具有多种结构。