Columbus Linda, Lipfert Jan, Klock Heath, Millett Ian, Doniach Sebastian, Lesley Scott A
The Joint Center for Structural Genomics and The Scripps Research Institute, Department of Molecular Biology, La Jolla, California 92037, USA.
Protein Sci. 2006 May;15(5):961-75. doi: 10.1110/ps.051874706. Epub 2006 Apr 5.
Structural studies of integral membrane proteins typically rely upon detergent micelles as faithful mimics of the native lipid bilayer. Therefore, membrane protein structure determination would be greatly facilitated by biophysical techniques that are capable of evaluating and assessing the fold and oligomeric state of these proteins solubilized in detergent micelles. In this study, an approach to the characterization of detergent-solubilized integral membrane proteins is presented. Eight Thermotoga maritima membrane proteins were screened for solubility in 11 detergents, and the resulting soluble protein-detergent complexes were characterized with small angle X-ray scattering (SAXS), nuclear magnetic resonance (NMR) spectroscopy, circular dichroism (CD) spectroscopy, and chemical cross-linking to evaluate the homogeneity, oligomeric state, radius of gyration, and overall fold. A new application of SAXS is presented, which does not require density matching, and NMR methods, typically used to evaluate soluble proteins, are successfully applied to detergent-solubilized membrane proteins. Although detergents with longer alkyl chains solubilized the most proteins, further characterization indicates that some of these protein-detergent complexes are not well suited for NMR structure determination due to conformational exchange and protein oligomerization. These results emphasize the need to screen several different detergents and to characterize the protein-detergent complex in order to pursue structural studies. Finally, the physical characterization of the protein-detergent complexes indicates optimal solution conditions for further structural studies for three of the eight overexpressed membrane proteins.
整合膜蛋白的结构研究通常依赖于去污剂胶束,将其作为天然脂质双层的忠实模拟物。因此,能够评估和评价溶解在去污剂胶束中的这些蛋白质的折叠和寡聚状态的生物物理技术将极大地促进膜蛋白结构的确定。在本研究中,提出了一种表征去污剂溶解的整合膜蛋白的方法。筛选了8种嗜热栖热菌膜蛋白在11种去污剂中的溶解性,并用小角X射线散射(SAXS)、核磁共振(NMR)光谱、圆二色性(CD)光谱和化学交联对所得的可溶性蛋白-去污剂复合物进行表征,以评估其均一性、寡聚状态、回转半径和整体折叠。介绍了一种SAXS的新应用,该应用不需要密度匹配,并且通常用于评估可溶性蛋白的NMR方法成功应用于去污剂溶解的膜蛋白。虽然具有较长烷基链的去污剂溶解的蛋白最多,但进一步的表征表明,由于构象交换和蛋白寡聚化,其中一些蛋白-去污剂复合物不太适合用于NMR结构测定。这些结果强调了筛选几种不同去污剂并表征蛋白-去污剂复合物以进行结构研究的必要性。最后,蛋白-去污剂复合物的物理表征表明了8种过表达膜蛋白中的3种进行进一步结构研究的最佳溶液条件。