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pZMO7-Derived shuttle vectors for heterologous protein expression and proteomic applications in the ethanol-producing bacterium Zymomonas mobilis

机译:pZMO7衍生的穿梭载体用于在产乙醇细菌运动发酵单胞菌中进行异源蛋白质表达和蛋白质组学应用

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Background The ethanol-producing bacterium Zymomonas mobilis has attracted considerable scientific and commercial interest due to its exceptional physiological properties. Shuttle vectors derived from native plasmids have previously been successfully used for heterologous gene expression in this bacterium for a variety of purposes, most notably for metabolic engineering applications. Results A quantitative PCR (qPCR) approach was used to determine the copy numbers of two endogenous double stranded DNA plasmids: pZMO1A (1,647?bp) and pZMO7 (pZA1003; 4,551?bp) within the NCIMB 11163 strain of Z. mobilis. Data indicated pZMO1A and pZMO7 were present at ca. 3-5 and ca. 1-2 copies per cell, respectively. A ca. 1,900?bp fragment from plasmid pZMO7 was used to construct two Escherichia coli – Z. mobilis shuttle vectors (pZ7C and pZ7-184). The intracellular stabilities and copy numbers of pZ7C and pZ7-184 were characterized within the NCIMB 11163, ATCC 29191 and (ATCC 10988-derived) CU1 Rif2 strains of Z. mobilis. Both shuttle vectors could be stably maintained within the ATCC 29191 strain (ca. 20-40 copies per cell), and the CU1 Rif2 strain (ca. 2-3 copies per cell), for more than 50 generations in the absence of an antibiotic selectable marker. A selectable marker was required for shuttle vector maintenance in the parental NCIMB 11163 strain; most probably due to competition for replication with the endogenous pZMO7 plasmid molecules. N-terminal glutathione S-transferase (GST)-fusions of four endogenous proteins, namely the acyl-carrier protein (AcpP); 2-dehydro-3-deoxyphosphooctonate aldolase (KdsA); DNA polymerase III chi subunit (HolC); and the RNA chaperone protein Hfq; were successfully expressed from pZ7C-derived shuttle vectors, and their protein-protein binding interactions were analyzed in Z. mobilis ATCC 29191. Using this approach, proteins that co-purified with AcpP and KdsA were identified. Conclusions We show that a shuttle vector-based protein affinity ‘pull-down’ approach can be used to probe protein interaction networks in Z. mobilis cells. Our results demonstrate that protein expression plasmids derived from pZMO7 have significant potential for use in future biological or biotechnological applications within Z. mobilis.
机译:背景技术产乙醇的运动发酵单胞菌(Zymomonas mobilis)由于其卓越的生理特性而引起了相当大的科学和商业兴趣。源自天然质粒的穿梭载体先前已经成功地用于多种细菌在该细菌中进行异源基因表达,特别是用于代谢工程应用。结果使用定量PCR(qPCR)方法确定了运动发酵单胞菌NCIMB 11163菌株中两个内源双链DNA质粒:pZMO1A(1,647?bp)和pZMO7(pZA1003; 4,551?bp)的拷贝数。数据表明pZMO1A和pZMO7存在于约。 3-5和ca.每个单元格分别为1-2个副本。大约质粒pZMO7的1,900bp片段被用于构建两个大肠杆菌-运动发酵单胞菌穿梭载体(pZ7C和pZ7-184)。 pZ7C和pZ7-184的细胞内稳定性和拷贝数在NCIMB 11163,ATCC 29191和(源自ATCC 10988的)运动发酵单胞菌CU1 Rif2菌株中进行了表征。在没有抗生素的情况下,两种穿梭载体都可以稳定地维持在ATCC 29191菌株(每细胞约20-40拷贝)和CU1 Rif2菌株(每细胞约2-3拷贝)中超过50代。可选标记。在亲本NCIMB 11163菌株中,穿梭载体的维持需要选择标记。最有可能是由于与内源性pZMO7质粒分子竞争复制。 N端谷胱甘肽S-转移酶(GST)-四种内源蛋白的融合体,即酰基载体蛋白(AcpP); 2-dehydro-3-deoxyphosphooctonate aldolase(KdsA); DNA聚合酶III chi亚基(HolC);和RNA伴侣蛋白Hfq; pZ7C衍生的穿梭载体成功表达了它们,并在运动发酵单胞菌ATCC 29191中分析了它们的蛋白-蛋白结合相互作用。使用这种方法,鉴定了与AcpP和KdsA共纯化的蛋白。结论我们证明基于穿梭载体的蛋白质亲和力“下拉”方法可用于探测运动发酵单胞菌细胞中的蛋白质相互作用网络。我们的结果表明,源自pZMO7的蛋白表达质粒具有巨大的潜力,可用于运动发酵单胞菌的未来生物学或生物技术应用。

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