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Mu-driven transposition of recombinant mini-Mu unit DNA in the Corynebacterium glutamicum chromosome

机译:在棒状杆菌菌染色体中重组迷你MU单位DNA的MU驱动转置

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摘要

A dual-component Mu-transposition system was modified for the integration/amplification of genes in Corynebacterium. The system consists of two types of plasmids: (i) a non-replicative integrative plasmid that contains the transposing mini-Mu(LR) unit bracketed by the L/R Mu ends or the mini-Mu(LER) unit, which additionally contains the enhancer element, E, and (ii) an integration helper plasmid that expresses the transposition factor genes for MuA and MuB. Efficient transposition in the C. glutamicum chromosome (ae 2 x 10(-4) per cell) occurred mainly through the replicative pathway via cointegrate formation followed by possible resolution. Optimizing the E location in the mini-Mu unit significantly increased the efficiency of Mu-driven intramolecular transposition-amplification in C. glutamicum as well as in gram-negative bacteria. The new C. glutamicum genome modification strategy that was developed allows the consequent independent integration/amplification/fixation of target genes at high copy numbers. After integration/amplification of the first mini-Mu(LER) unit in the C. glutamicum chromosome, the E-element, which is bracketed by lox-like sites, is excised by Cre-mediated fashion, thereby fixing the truncated mini-Mu(LR) unit in its position for the subsequent integration/amplification of new mini-Mu(LER) units. This strategy was demonstrated using the genes for the citrine and green fluorescent proteins, yECitrine and yEGFP, respectively.
机译:修饰了双组分MU-转仓系统,用于棒状杆菌基因的集成/放大。该系统由两种类型的质粒组成:(i)含有由L / R MU端的输置mini-mu(LR)单元或含有迷你-MU(LER)单元的含有转送MII-MU(LR)单元的非重复整合质粒,其另外含有增强子元素,E和(II)一种积分辅助质粒,其表达MUA和MUB的转产因子基因。在C.谷氨酰胺染色体(每种细胞AE 2×10(-4))中的有效转座主要通过通过协整途径通过协整途径,然后进行分辨率。优化MINI-MU单元中的e位置显着提高了C.谷氨酰胺的谷氨酸分子内输液扩增效率以及革兰氏阴性细菌。开发的新型C.谷氨酰胺基因组改性策略允许在高拷贝数下进行靶基因的随后的独立集成/放大/固定。在C.谷氨酰胺染色体中​​的第一mini-mu(LER)单元的整合/扩增后,通过CRE介导的时装切除LOX样点包围的E形元素,从而固定截短的迷你亩(LR)单位在其目的是新型迷你MU(LER)单位的随后集成/放大。使用柠檬酸和绿色荧光蛋白,亚锡和YEGFP的基因证明了该策略。

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