Department of Biochemistry and Food Chemistry, University of Turku, Turku, Finland.
PLoS One. 2012;7(11):e50470. doi: 10.1371/journal.pone.0050470. Epub 2012 Nov 21.
The ethylene-forming enzyme (EFE) from Pseudomonas syringae catalyzes the synthesis of ethylene which can be easily detected in the headspace of closed cultures. A synthetic codon-optimized gene encoding N-terminal His-tagged EFE (EFEh) was expressed in Synechocystis sp. PCC 6803 (Synechocystis) and Escherichia coli (E. coli) under the control of diverse promoters in a self-replicating broad host-range plasmid. Ethylene synthesis was stably maintained in both organisms in contrast to earlier work in Synechococcus elongatus PCC 7942. The rate of ethylene accumulation was used as a reporter for protein expression in order to assess promoter strength and inducibility with the different expression systems. Several metal-inducible cyanobacterial promoters did not function in E. coli but were well-regulated in cyanobacteria, albeit at a low level of expression. The E. coli promoter P(trc) resulted in constitutive expression in cyanobacteria regardless of whether IPTG was added or not. In contrast, a Lac promoter variant, P(A1lacO-1), induced EFE-expression in Synechocystis at a level of expression as high as the Trc promoter and allowed a fine level of IPTG-dependent regulation of protein-expression. The regulation was tight at low cell density and became more relaxed in more dense cultures. A synthetic quorum-sensing promoter system was also constructed and shown to function well in E. coli, however, only a very low level of EFE-activity was observed in Synechocystis, independent of cell density.
来自丁香假单胞菌的乙烯形成酶(EFE)催化乙烯的合成,在密闭培养物的顶空很容易检测到乙烯。在自我复制的广泛宿主范围质粒中,通过不同启动子控制,在集胞藻 PCC 6803(集胞藻)和大肠杆菌(E. coli)中表达了经过密码子优化的编码 N 端 His 标签 EFE(EFEh)的合成基因。与以前在聚球藻 PCC 7942 中的工作相反,乙烯的合成在这两种生物中都能稳定维持。乙烯积累的速度可作为蛋白表达的报告,用于评估不同表达系统中启动子的强度和诱导能力。几种金属诱导的蓝藻启动子在大肠杆菌中不起作用,但在蓝藻中得到了很好的调控,尽管表达水平较低。E. coli 启动子 P(trc)导致蓝藻中组成型表达,无论是否添加 IPTG。相比之下,Lac 启动子变体 P(A1lacO-1)在 Synechocystis 中的诱导 EFE 表达水平与 Trc 启动子一样高,并允许 IPTG 依赖性调节蛋白表达的精细水平。在低细胞密度时调节紧密,在更密集的培养物中变得更加宽松。还构建了一种合成的群体感应启动子系统,并证明其在大肠杆菌中功能良好,然而,在 Synechocystis 中,无论细胞密度如何,仅观察到非常低水平的 EFE 活性。