IBBMC-CNRS UMR8619, IFR 115, Bât. 430, Université Paris-Sud, 91405 Orsay, France.
J Struct Biol. 2011 Aug;175(2):147-58. doi: 10.1016/j.jsb.2011.03.018. Epub 2011 Apr 2.
Structural studies of multi-protein complexes, whether by X-ray diffraction, scattering, NMR spectroscopy or electron microscopy, require stringent quality control of the component samples. The inability to produce 'keystone' subunits in a soluble and correctly folded form is a serious impediment to the reconstitution of the complexes. Co-expression of the components offers a valuable alternative to the expression of single proteins as a route to obtain sufficient amounts of the sample of interest. Even in cases where milligram-scale quantities of purified complex of interest become available, there is still no guarantee that good quality crystals can be obtained. At this step, protein engineering of one or more components of the complex is frequently required to improve solubility, yield or the ability to crystallize the sample. Subsequent characterization of these constructs may be performed by solution techniques such as Small Angle X-ray Scattering and Nuclear Magnetic Resonance to identify 'well behaved' complexes. Herein, we recount our experiences gained at protein production and complex assembly during the European 3D Repertoire project (3DR). The goal of this consortium was to obtain structural information on multi-protein complexes from yeast by combining crystallography, electron microscopy, NMR and in silico modeling methods. We present here representative set case studies of complexes that were produced and analyzed within the 3DR project. Our experience provides useful insight into strategies that are more generally applicable for structural analysis of protein complexes.
多蛋白复合物的结构研究,无论是通过 X 射线衍射、散射、NMR 光谱学还是电子显微镜,都需要对组件样品进行严格的质量控制。无法以可溶和正确折叠的形式产生“关键”亚基是复合物重建的严重障碍。与单独表达蛋白质相比,共表达成分是获得足够数量目标样品的一种有价值的替代方法。即使在获得了毫克级数量的纯化目标复合物的情况下,也不能保证能获得高质量的晶体。在这一步骤中,通常需要对复合物的一个或多个组件进行蛋白质工程改造,以提高样品的溶解性、产量或结晶能力。随后,可以通过小角度 X 射线散射和核磁共振等溶液技术对这些构建体进行后续表征,以确定“表现良好”的复合物。在这里,我们讲述了在欧洲 3D 文库项目(3DR)期间在蛋白质生产和复合物组装方面获得的经验。该联盟的目标是通过结合晶体学、电子显微镜、NMR 和计算机建模方法,从酵母中获得多蛋白复合物的结构信息。我们在这里展示了在 3DR 项目中生产和分析的具有代表性的复合物案例研究。我们的经验为更广泛地应用于蛋白质复合物结构分析的策略提供了有用的见解。