Reichow Steve L, Gonen Tamir
Department of Biochemistry, University of Washington, Box 357350, Seattle, WA 98195-7350, USA.
Curr Opin Struct Biol. 2009 Oct;19(5):560-5. doi: 10.1016/j.sbi.2009.07.012. Epub 2009 Aug 11.
Electron crystallography is arguably the only electron cryomicroscopy (cryoEM) technique able to deliver an atomic-resolution structure of membrane proteins embedded in the lipid bilayer. In the electron crystallographic structures of the light driven ion pump, bacteriorhodopsin, and the water channel, aquaporin-0, sufficiently high resolution was obtained and both lipid and protein were visualized, modeled, and described in detail. An extensive network of lipid-protein interactions mimicking native membranes is established and maintained in two-dimensional (2D) crystalline vesicles used for structural analysis by electron crystallography. Lipids are tightly integrated into the protein's architecture where they can affect the function, structure, quaternary assembly, and the stability of the membrane protein.
电子晶体学可以说是唯一一种能够提供嵌入脂质双层的膜蛋白原子分辨率结构的电子冷冻显微镜(cryoEM)技术。在光驱动离子泵细菌视紫红质和水通道水通道蛋白-0的电子晶体学结构中,获得了足够高的分辨率,脂质和蛋白质都得到了可视化、建模和详细描述。在用于电子晶体学结构分析的二维(2D)晶体囊泡中,建立并维持了一个模仿天然膜的广泛的脂-蛋白相互作用网络。脂质紧密地整合到蛋白质结构中,在那里它们可以影响膜蛋白的功能、结构、四级组装和稳定性。