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首页> 外文期刊>Microbial Cell Factories >Allopatric integrations selectively change host transcriptomes, leading to varied expression efficiencies of exotic genes in Myxococcus xanthus
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Allopatric integrations selectively change host transcriptomes, leading to varied expression efficiencies of exotic genes in Myxococcus xanthus

机译:异源整合有选择地改变宿主转录组,从而导致异种基因在黄色粘球菌中的不同表达效率

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Background Exotic genes, especially clustered multiple-genes for a complex pathway, are normally integrated into chromosome for heterologous expression. The influences of insertion sites on heterologous expression and allotropic expressions of exotic genes on host remain mostly unclear. Results We compared the integration and expression efficiencies of single and multiple exotic genes that were inserted into Myxococcus xanthus genome by transposition and attB-site-directed recombination. While the site-directed integration had a rather stable chloramphenicol acetyl transferase (CAT) activity, the transposition produced varied CAT enzyme activities. We attempted to integrate the 56-kb gene cluster for the biosynthesis of antitumor polyketides epothilones into M. xanthus genome by site-direction but failed, which was determined to be due to the insertion size limitation at the attB site. The transposition technique produced many recombinants with varied production capabilities of epothilones, which, however, were not paralleled to the transcriptional characteristics of the local sites where the genes were integrated. Comparative transcriptomics analysis demonstrated that the allopatric integrations caused selective changes of host transcriptomes, leading to varied expressions of epothilone genes in different mutants. Conclusions With the increase of insertion fragment size, transposition is a more practicable integration method for the expression of exotic genes. Allopatric integrations selectively change host transcriptomes, which lead to varied expression efficiencies of exotic genes.
机译:背景外来基因,特别是复杂途径的成簇多基因,通常整合到染色体中进行异源表达。插入位点对宿主上外来基因的异源表达和同素异形表达的影响仍然不清楚。结果我们比较了通过转座和attB-位点定向重组插入到黄色葡萄球菌基因组中的单个和多个外来基因的整合和表达效率。虽然定点整合具有相当稳定的氯霉素乙酰转移酶(CAT)活性,但转座产生了各种CAT酶活性。我们试图通过位点方向将用于抗肿瘤聚酮类埃博霉素的生物合成的56-kb基因簇整合到黄花病菌基因组中,但失败了,这被确定是由于attB位点的插入大小限制。转座技术产生了许多具有不同埃博霉素生产能力的重组体,但是,这些重组体与整合基因的局部位点的转录特性不平行。比较转录组学分析表明,异位整合导致宿主转录组的选择性变化,从而导致埃博霉素基因在不同突变体中的表达变化。结论随着插入片段大小的增加,转座是表达外源基因更实用的整合方法。异源整合有选择地改变宿主转录组,这导致外来基因的不同表达效率。

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