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An inducible recA expression Bacillus subtilis genome vector for stable manipulation of large DNA fragments

机译:一种可诱导的recA表达枯草芽孢杆菌基因组载体,用于稳定处理大DNA片段

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The Bacillus subtilis genome (BGM) vector is a novel cloning system based on the natural competence that enables B. subtilis to import extracellular DNA fragments into the cell and incorporate the recombinogenic DNA into the genome vector by homologous recombination. The BGM vector system has several attractive properties, such as a megabase cloning capacity, stable propagation of cloned DNA inserts, and various modification strategies using RecA-mediated homologous recombination. However, the endogenous RecA activity may cause undesirable recombination, as has been observed in yeast artificial chromosome systems. In this study, we developed a novel BGM vector system of an inducible recA expression BGM vector (iREX), in which the expression of recA can be controlled by xylose in the medium. We constructed the iREX system by introducing the xylose-inducible recA expression cassette followed by the targeted deletion of the endogenous recA. Western blot analysis showed that the expression of recA was strictly controlled by xylose in the medium. In the absence of xylose, recA was not expressed in the iREX, and the RecA-mediated recombination reactions were greatly suppressed. By contrast, the addition of xylose successfully induced RecA expression, which enabled the iREX to exploit the same capacities of transformation and gene modifications observed with the conventional BGM vector. In addition, an evaluation of the stability of the cloned DNA insert demonstrated that the DNA fragments containing homologous sequences were more stably maintained in the iREX by suppressing undesirable homologous recombination. We developed a novel BGM vector with inducible recA expression system, iREX, which enables us to manipulate large DNA fragments more stably than the conventional BGM vector by suppressing undesirable recombination. In addition, we demonstrate that the iREX can be applied to handling the DNA, which has several homologous sequences, such as multiple-reporter expression cassettes. Thus, the iREX expands the utility of the BGM vector as a platform for engineering large DNA fragments.
机译:枯草芽孢杆菌基因组(BGM)载体是一种基于自然能力的新型克隆系统,可使枯草芽孢杆菌将细胞外DNA片段导入细胞,并通过同源重组将重组基因DNA整合到基因组载体中。 BGM载体系统具有多种吸引人的特性,例如兆碱基克隆能力,克隆的DNA插入片段的稳定繁殖以及使用RecA介导的同源重组的各种修饰策略。但是,内源性RecA活性可能会导致不良重组,正如在酵母人工染色体系统中观察到的那样。在这项研究中,我们开发了一种可诱导的recA表达BGM载体(iREX)的新型BGM载体系统,其中recA的表达可以由木糖在培养基中控制。我们通过引入木糖诱导的recA表达盒构建了iREX系统,然后有针对性地删除了内源性recA。 Western印迹分析表明,recA的表达受到培养基中木糖的严格控制。在没有木糖的情况下,iREX中不表达recA,RecA介导的重组反应被大大抑制。相反,木糖的添加成功诱导了RecA表达,这使iREX能够利用常规BGM载体观察到的相同转化能力和基因修饰能力。另外,对克隆的DNA插入片段的稳定性的评估表明,通过抑制不希望的同源重组,含有同源序列的DNA片段在iREX中更稳定地保持。我们开发了具有可诱导的recA表达系统iREX的新型BGM载体,该系统使我们能够通过抑制不良重组来比常规BGM载体更稳定地操纵大的DNA片段。此外,我们证明了iREX可用于处理具有多个同源序列的DNA,例如多报告表达盒。因此,iREX扩展了BGM载体作为工程化大型DNA片段的平台的用途。

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