Li Siwei, Ding Wentao, Zhang Xueli, Jiang Huifeng, Bi Changhao
Key Laboratory of Systems Microbial Biotechnology, Tianjin Institute of Industrial Biotechnology, Chinese Academy of Sciences, 32 West 7th Ave, Tianjin Airport Economic Park, Tianjin, 300308 China.
Biotechnol Biofuels. 2016 Oct 28;9:232. doi: 10.1186/s13068-016-0645-4. eCollection 2016.
has already been used for heterologous production of fuel chemicals and valuable natural products. The establishment of complicated heterologous biosynthetic pathways in became the research focus of Synthetic Biology and Metabolic Engineering. Thus, simple and efficient genomic integration techniques of large number of transcription units are demanded urgently.
An efficient DNA assembly and chromosomal integration method was created by combining homologous recombination (HR) in and Golden Gate DNA assembly method, designated as modularized two-step (M2S) technique. Two major assembly steps are performed consecutively to integrate multiple transcription units simultaneously. In Step 1, Modularized scaffold containing a head-to-head promoter module and a pair of terminators was assembled with two genes. Thus, two transcription units were assembled with Golden Gate method into one scaffold in one reaction. In Step 2, the two transcription units were mixed with modules of selective markers and integration sites and transformed into for assembly and integration. In both steps, universal primers were designed for identification of correct clones. Establishment of a functional β-carotene biosynthetic pathway in within 5 days demonstrated high efficiency of this method, and a 10-transcriptional-unit pathway integration illustrated the capacity of this method.
Modular design of transcription units and integration elements simplified assembly and integration procedure, and eliminated frequent designing and synthesis of DNA fragments in previous methods. Also, by assembling most parts in Step 1 in vitro, the number of DNA cassettes for homologous integration in Step 2 was significantly reduced. Thus, high assembly efficiency, high integration capacity, and low error rate were achieved.
已被用于燃料化学品和有价值的天然产物的异源生产。在 中建立复杂的异源生物合成途径成为合成生物学和代谢工程的研究重点。因此,迫切需要简单高效的大量转录单元基因组整合技术。
通过结合 中的同源重组(HR)和金门DNA组装方法,创建了一种高效的DNA组装和染色体整合方法,称为模块化两步(M2S)技术。连续执行两个主要组装步骤以同时整合多个转录单元。在步骤1中,将包含头对头启动子模块和一对终止子的模块化支架与两个基因组装在一起。因此,通过金门方法在一个反应中将两个转录单元组装到一个支架中。在步骤2中,将两个转录单元与选择标记和整合位点的模块混合,并转化到 中进行组装和整合。在两个步骤中,都设计了通用引物来鉴定正确的克隆。在5天内在 中建立功能性β-胡萝卜素生物合成途径证明了该方法的高效率,并且10个转录单元途径整合说明了该方法的能力。
转录单元和整合元件的模块化设计简化了组装和整合程序,并消除了先前方法中频繁的DNA片段设计和合成。此外,通过在步骤1中在体外组装大部分部件,步骤2中用于同源整合的DNA盒数量显著减少。因此,实现了高组装效率、高整合能力和低错误率。