Department of Bioscience, Biotechnologies and Biopharmaceutic, Univ. of Bari "Aldo Moro", 70124 Bari, Italy.
Fondazione IRCCS Casa Sollievo della Sofferenza, Cancer Stem Cells Unit, 71013 San Giovanni Rotondo (FG), Italy.
Cells. 2019 Feb 2;8(2):119. doi: 10.3390/cells8020119.
The CNS plasma-membrane water channel aquaporin-4 (AQP4) is expressed as two major isoforms able to aggregate into supramolecular assemblies known as 'orthogonal arrays of particles' (OAPs). OAP subnanometric features are largely unknown mainly because a method for the expression, isolation, and crystallization of integral human OAPs has not been developed. Here, the human OAP-forming isoform M23-AQP4 was expressed in insect and mammalian cell lines and AQP4 and OAP features evaluated. Native size exclusion chromatography was employed to isolate and analyze authentically folded OAPs, and neuromyelitis optica (NMO)-specific sandwich ELISA was developed to test OAP-integrity. The results demonstrate that in insect cells most AQP4 remains intracellular and unfolded and that OAPs are largely disassembled after the detergent extraction step. In mammalian cells, AQP4 showed regular plasma membrane targeting and OAPs exhibited strong post-extraction stability. Starting from the mammalian cell expression system, we isolated authentically folded OAPs. Together these data suggest a new strategy for expressing and isolating integral recombinant human OAPs and providing new insights into the cell-type dependent OAP-assembly and post-extraction stability, potentially useful to design new approaches for structural and functional studies of OAP and for other plasma membrane proteins organized into supramolecular structures.
中枢神经系统(CNS)的质膜水通道蛋白-4(AQP4)表达为两种主要的同工型,能够聚集形成称为“正交颗粒阵列”(OAP)的超分子组装体。OAP 的亚纳米特征在很大程度上是未知的,主要是因为尚未开发出用于表达、分离和结晶完整的人 OAP 的方法。在这里,昆虫和哺乳动物细胞系中表达了人 OAP 形成同工型 M23-AQP4,并评估了 AQP4 和 OAP 的特征。采用天然大小排阻层析法分离和分析真实折叠的 OAP,并开发了视神经脊髓炎(NMO)特异性夹心 ELISA 来测试 OAP 的完整性。结果表明,在昆虫细胞中,大多数 AQP4 仍然在细胞内未折叠,并且在去污剂提取步骤后 OAP 大部分被解体。在哺乳动物细胞中,AQP4 表现出规则的质膜靶向,并且 OAP 在提取后具有很强的稳定性。从哺乳动物细胞表达系统开始,我们分离出真实折叠的 OAP。这些数据共同提出了一种表达和分离完整的重组人 OAP 的新策略,并为细胞类型依赖性 OAP 组装和提取后稳定性提供了新的见解,这可能有助于设计用于 OAP 和其他组织成超分子结构的质膜蛋白的结构和功能研究的新方法。