Reckel Sina, Sobhanifar Solmaz, Durst Florian, Löhr Frank, Shirokov Vladimir A, Dötsch Volker, Bernhard Frank
Centre for Biomolecular Magnetic Resonance, Institute for Biophysical Chemistry, University of Frankfurt/Main, Frankfurt/Main, Germany.
Methods Mol Biol. 2010;607:187-212. doi: 10.1007/978-1-60327-331-2_16.
Cell-free expression offers an interesting alternative method to produce membrane proteins in high amounts. Elimination of toxicity problems, reduced proteolytic degradation and a nearly unrestricted option to supply potentially beneficial compounds like cofactors, ligands or chaperones into the reaction are general advantages of cell-free expression systems. Furthermore, the membrane proteins may be translated directly into appropriate hydrophobic and membrane-mimetic surrogates, which might offer significant benefits for the functional folding of the synthesized proteins. Cell-free expression is a rapidly developing and highly versatile technique and several systems of both, prokaryotic and eukaryotic origins, have been established. We provide protocols for the cell-free expression of membrane proteins in different modes including their expression as precipitate as well as their direct synthesis into detergent micelles or lipid bilayers.
无细胞表达提供了一种有趣的替代方法,可大量生产膜蛋白。消除毒性问题、减少蛋白水解降解以及几乎不受限制地向反应中供应潜在有益化合物(如辅因子、配体或伴侣蛋白)是无细胞表达系统的普遍优势。此外,膜蛋白可以直接翻译到合适的疏水和膜模拟替代物中,这可能为合成蛋白的功能折叠提供显著优势。无细胞表达是一种快速发展且高度通用的技术,已经建立了多种原核和真核来源的系统。我们提供了不同模式下膜蛋白无细胞表达的方案,包括以沉淀形式表达以及直接合成到去污剂胶束或脂质双层中。