Elter Shantha, Raschle Thomas, Arens Sabine, Viegas Aldino, Gelev Vladimir, Etzkorn Manuel, Wagner Gerhard
Institute of Physical Biology, Heinrich-Heine-University, Universitätsstr. 1, 40225, Düsseldorf, Germany.
J Membr Biol. 2014 Oct;247(9-10):957-64. doi: 10.1007/s00232-014-9669-5. Epub 2014 May 25.
While amphipols have been proven useful for refolding of seven transmembrane helical (7-TM) proteins including G-protein-coupled receptors (GPCRs) and it could be shown that an amphipol environment is in principle suitable for NMR structural studies of the embedded protein, high-resolution NMR insights into amphipol refolded and isotopically labeled GPCRs are still very limited. Here we report on the recent progress toward NMR structural studies of the melanocortin-2 and -4 receptors, two class A GPCRs which so far have not been reported to be incorporated into an amphipol environment. Making use of the established 7-TM protein bacteriorhodopsin (BR) we initially tested and optimized amphipol refolding conditions. Most promising conditions were transferred to the refolding of the two melanocortin receptors. Analytical-scale refolding experiments on the melanocortin-2 receptor show very similar behavior to the results obtained on BR. Using cell-free protein expression we could generate sufficient amounts of isotopically labeled bacteriorhodopsin as well as melanocortin-2 and -4 receptors for an initial NMR analysis. Upscaling of the amphipol refolding protocol to protein amounts needed for NMR structural studies was, however, not straightforward and impeded detailed NMR insights for the two GPCRs. While well-resolved and dispersed NMR spectra could only be obtained for bacteriorhodopsin, a comparison of NMR data recorded on the melanocortin-4 receptor in SDS and in an amphipol environment indicates that amphipol refolding induces larger structural modifications in the receptor.
虽然两性离子已被证明对包括G蛋白偶联受体(GPCRs)在内的七跨膜螺旋(7-TM)蛋白的重折叠有用,并且可以证明两性离子环境原则上适用于对嵌入蛋白进行NMR结构研究,但对两性离子重折叠且经同位素标记的GPCRs的高分辨率NMR研究仍然非常有限。在此,我们报告了对促黑素皮质素-2和-4受体进行NMR结构研究的最新进展,这两种A类GPCRs迄今尚未报道能被纳入两性离子环境。利用已确立的7-TM蛋白细菌视紫红质(BR),我们首先测试并优化了两性离子重折叠条件。最有前景的条件被应用于两种促黑素皮质素受体的重折叠。对促黑素皮质素-2受体的分析规模重折叠实验显示出与BR实验结果非常相似的行为。通过无细胞蛋白表达,我们能够生成足够量的同位素标记细菌视紫红质以及促黑素皮质素-2和-4受体,用于初步的NMR分析。然而,将两性离子重折叠方案扩大到NMR结构研究所需的蛋白量并非易事,这阻碍了对这两种GPCRs进行详细的NMR研究。虽然仅能获得细菌视紫红质的分辨率良好且分散的NMR谱,但在SDS和两性离子环境中对促黑素皮质素-4受体记录的NMR数据比较表明,两性离子重折叠会在受体中诱导更大的结构修饰。