Mureev Sergei, Kovtun Oleksiy, Nguyen Uyen T T, Alexandrov Kirill
Institute for Molecular Bioscience, The University of Queensland, Brisbane, Queensland, Australia.
Nat Biotechnol. 2009 Aug;27(8):747-52. doi: 10.1038/nbt.1556. Epub 2009 Aug 2.
Cell-free protein synthesis enables the rapid production and engineering of recombinant proteins. Existing cell-free systems differ substantially from each other with respect to efficiency, scalability and the ability to produce functional eukaryotic proteins. Here we describe species-independent translational sequences (SITS) that mediate efficient cell-free protein synthesis in multiple prokaryotic and eukaryotic systems, presumably through bypassing the early translation initiation factors. We use these leaders in combination with targeted suppression of the endogenous Leishmania tarentolae mRNAs to create a cell-free system based on this protozoan. The system can be directly programmed with unpurified PCR products, enabling rapid generation of large protein libraries and protein variants. L. tarentolae extract can produce up to 300 microg/ml of recombinant protein in 2 h. We further demonstrate that protein-protein and protein-small molecule interactions can be quantitatively analyzed directly in the translation mixtures using fluorescent (cross-) correlation spectroscopy.
无细胞蛋白质合成能够实现重组蛋白的快速生产与工程化改造。现有的无细胞系统在效率、可扩展性以及生产功能性真核蛋白的能力方面存在显著差异。在此,我们描述了物种无关的翻译序列(SITS),其可能通过绕过早期翻译起始因子,介导在多种原核和真核系统中进行高效的无细胞蛋白质合成。我们将这些引导序列与对利什曼原虫内源性mRNA的靶向抑制相结合,构建了基于这种原生动物的无细胞系统。该系统可直接用未纯化的PCR产物进行编程,从而能够快速生成大型蛋白质文库和蛋白质变体。利什曼原虫提取物在2小时内可产生高达300微克/毫升的重组蛋白。我们进一步证明,使用荧光(交叉)相关光谱技术可直接在翻译混合物中对蛋白质-蛋白质和蛋白质-小分子相互作用进行定量分析。