Wilson-Kubalek E M, Brown R E, Celia H, Milligan R A
Department of Cell Biology, MB25, The Scripps Research Institute, 10550 North Torrey Pines Road, La Jolla, CA 92037, USA.
Proc Natl Acad Sci U S A. 1998 Jul 7;95(14):8040-5. doi: 10.1073/pnas.95.14.8040.
A general approach for crystallization of proteins in a fast and simple manner would be of immense interest to biologists studying protein structure-function relationships. Here, we describe a method that we have developed for promoting the formation of helical arrays of proteins and macromolecular assemblies. Electron micrographs of the arrays are suitable for helical image analysis and three-dimensional reconstruction. We show that hydrated mixtures of the glycolipid galactosylceramide (GalCer) and derivatized lipids or charged lipids form unilamellar nanotubules. The tubules bind proteins in a specific manner via high affinity ligands on the polar head groups of the lipid or via electrostatic interactions. By doping the GalCer with a novel nickel-containing lipid, we have been able to form helical arrays of two histidine-tagged proteins. Similarly, doping with a biotinylated lipid allows crystallization of streptavidin. Finally, three proteins with affinity for positively or negatively charged lipid layers formed helical arrays on appropriately charged tubules. The generality of this method may allow a wide variety of proteins to be crystallized on lipid nanotubes under physiological conditions.
对于研究蛋白质结构-功能关系的生物学家来说,一种快速简便的蛋白质结晶通用方法将具有极大的吸引力。在此,我们描述了一种我们开发的用于促进蛋白质螺旋阵列和大分子组装体形成的方法。这些阵列的电子显微照片适用于螺旋图像分析和三维重建。我们发现糖脂半乳糖神经酰胺(GalCer)与衍生脂质或带电脂质的水合混合物形成单分子层纳米管。这些纳米管通过脂质极性头部基团上的高亲和力配体或通过静电相互作用以特定方式结合蛋白质。通过用一种新型含镍脂质掺杂GalCer,我们能够形成两种组氨酸标签蛋白的螺旋阵列。同样,用生物素化脂质掺杂可使链霉亲和素结晶。最后,三种对带正电或带负电脂质层有亲和力的蛋白质在适当带电的纳米管上形成了螺旋阵列。这种方法的通用性可能使多种蛋白质在生理条件下在脂质纳米管上结晶。