Li Jun, Haas Wilhelm, Jackson Kirsten, Kuru Erkin, Jewett Michael C, Fan Z Hugh, Gygi Steven, Church George M
Department of Genetics, Harvard Medical School , 77 Avenue Louis Pasteur, Boston, Massachusetts 02115, United States.
Wyss Harvard Institute of Biologically Inspired Engineering , 3 Blackfan Circle, Boston, Massachusetts 02115, United States.
ACS Synth Biol. 2017 Jul 21;6(7):1327-1336. doi: 10.1021/acssynbio.6b00342. Epub 2017 Mar 29.
To build replicating systems with new functions, the engineering of existing biological machineries requires a sensible strategy. Protein synthesis Using Recombinant Elements (PURE) system consists of the desired components for transcription, translation, aminoacylation and energy regeneration. PURE might be the basis for a radically alterable, lifelike system after optimization. Here, we regenerated 54 E. coli ribosomal (r-) proteins individually from DNA templates in the PURE system. We show that using stable isotope labeling with amino acids, mass spectrometry based quantitative proteomics could detect 26 of the 33 50S and 20 of the 21 30S subunit r-proteins when coexpressed in batch format PURE system. By optimizing DNA template concentrations and adapting a miniaturized Fluid Array Device with optimized feeding solution, we were able to cogenerate and detect at least 29 of the 33 50S and all of the 21 30S subunit r-proteins in one pot. The boost on yield of a single r-protein in coexpression pool varied from ∼1.5 to 5-fold compared to the batch mode, with up to ∼2.4 μM yield for a single r-protein. Reconstituted ribosomes under physiological condition from PURE system synthesized 30S r-proteins and native 16S rRNA showed ∼13% activity of native 70S ribosomes, which increased to 21% when supplemented with GroEL/ES. This work also points to what is still needed to obtain self-replicating synthetic ribosomes in situ in the PURE system.
为构建具有新功能的复制系统,对现有生物机器进行工程改造需要明智的策略。利用重组元件进行蛋白质合成(PURE)系统由转录、翻译、氨酰化和能量再生所需的组件组成。经过优化后,PURE可能成为一个可从根本上改变的、类似生命的系统的基础。在此,我们在PURE系统中从DNA模板分别再生了54种大肠杆菌核糖体(r-)蛋白。我们表明,使用基于氨基酸的稳定同位素标记,基于质谱的定量蛋白质组学在以批量形式的PURE系统中共表达时,可以检测到33种50S亚基r蛋白中的26种以及21种30S亚基r蛋白中的20种。通过优化DNA模板浓度并采用配备优化进料溶液的小型化流体阵列装置,我们能够在一个反应体系中同时生成并检测到33种50S亚基r蛋白中的至少29种以及所有21种30S亚基r蛋白。与批量模式相比,共表达池中单个r蛋白的产量提高了约1.5至5倍,单个r蛋白的产量高达约2.4 μM。在生理条件下,由PURE系统重构的核糖体合成30S r蛋白和天然16S rRNA,其活性约为天然70S核糖体的13%,添加GroEL/ES后活性提高到21%。这项工作还指出了在PURE系统中原位获得自我复制的合成核糖体仍需要做的事情。