Institute for Research in Biomedicine, 08028 Barcelona, Spain.
Anal Biochem. 2012 Apr 1;423(1):7-14. doi: 10.1016/j.ab.2011.12.044. Epub 2012 Jan 8.
Membrane proteins are challenging targets for structural biologists. Finding optimal candidates for such studies requires extensive and laborious screening of protein expression and/or stability in detergent. The use of green fluorescent protein (GFP) as a reporter has enormously facilitated these studies; however, its 238 residues can potentially alter the intrinsic properties of the target (e.g., expression or stability). With the aim of minimizing undesired effects of full-length GFP, here we describe the utility of a split GFP reporter during precrystallization studies of membrane proteins. GFP fluorescence appeared by complementation of the first 15 residues of GFP (GFP(11)) (fused to the C terminus of a membrane protein target) with the remaining nonfluorescent GFP (GFP(1-10)). The signal obtained after sequential expression of SteT (l-serine/l-threonine exchanger of Bacillus subtilis) fused to GFP(11) followed by GFP(1-10) specifically measured the protein fraction inserted into the Escherichia coli cytoplasmic membrane, thereby discarding protein aggregates confined as inclusion bodies. Furthermore, in vitro complementation of purified SteT-GFP(11) with purified GFP(1-10) was exploited to rapidly assess the stability of wild-type and G294V mutant versions of SteT-GFP(11) following detergent solubilization and purification. This method can be applied in a medium- to high-throughput manner with multiple samples.
膜蛋白是结构生物学家的挑战目标。要找到此类研究的最佳候选者,需要对蛋白质表达和/或去污剂稳定性进行广泛而艰苦的筛选。绿色荧光蛋白 (GFP) 的使用极大地促进了这些研究;然而,其 238 个残基可能会改变目标的固有特性(例如表达或稳定性)。为了最大限度地减少全长 GFP 的不利影响,我们在这里描述了在膜蛋白的预结晶研究中使用分裂 GFP 报告蛋白的效用。通过 GFP(第 11 位残基)(融合到膜蛋白靶标的 C 末端)与其余非荧光 GFP(GFP(1-10))的互补,出现 GFP 荧光。在用 GFP(11)融合的 SteT(枯草芽孢杆菌的 l-丝氨酸/l-苏氨酸交换蛋白)进行顺序表达后获得的信号,特异性地测量插入大肠杆菌细胞质膜的蛋白质部分,从而摒弃了作为包涵体限制的蛋白质聚集体。此外,通过用纯化的 GFP(1-10)对纯化的 SteT-GFP(11)进行体外互补,可快速评估 SteT-GFP(11)的野生型和 G294V 突变体版本在去污剂溶解和纯化后的稳定性。该方法可以以中高通量的方式应用于多个样本。