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New methods for tightly regulated gene expression and highly efficient chromosomal integration of cloned genes for Methanosarcina species

机译:严格调控甲烷单胞菌属物种基因表达的新方法和克隆基因的高效染色体整合

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摘要

A highly efficient method for chromosomal integration of cloned DNA into Methanosarcina spp. was developed utilizing the site-specific recombination system from the Streptomyces phage φC31. Host strains expressing the φC31 integrase gene and carrying an appropriate recombination site can be transformed with non-replicating plasmids carrying the complementary recombination site at efficiencies similar to those obtained with self-replicating vectors. We have also constructed a series of hybrid promoters that combine the highly expressed M. barkeri PmcrB promoter with binding sites for the tetracycline-responsive, bacterial TetR protein. These promoters are tightly regulated by the presence or absence of tetracycline in strains that express the tetR gene. The hybrid promoters can be used in genetic experiments to test gene essentiality by placing a gene of interest under their control. Thus, growth of strains with tetR-regulated essential genes becomes tetracycline-dependent. A series of plasmid vectors that utilize the site-specific recombination system for construction of reporter gene fusions and for tetracycline regulated expression of cloned genes are reported. These vectors were used to test the efficiency of translation at a variety of start codons. Fusions using an ATG start site were the most active, whereas those using GTG and TTG were approximately one half or one fourth as active, respectively. The CTG fusion was 95% less active than the ATG fusion.
机译:将克隆的DNA染色体整合到甲烷单胞菌属物种中的高效方法。利用来自链霉菌噬菌体φC31的位点特异性重组系统开发了Aβ。表达φC31整合酶基因并带有适当重组位点的宿主菌株可以用带有互补重组位点的非复制质粒转化,其效率与自复制载体相似。我们还构建了一系列杂交启动子,这些启动子结合了高表达的巴氏支原体PmcrB启动子和四环素反应性细菌TetR蛋白的结合位点。这些启动子在表达tetR基因的菌株中受到四环素存在或不存在的严格调控。通过将目的基因置于其控制下,杂交启动子可用于基因实验以测试基因的必要性。因此,带有tetR调节的必需基因的菌株的生长 变得四环素依赖性。一系列质粒载体 利用针对特定地点的重组系统来构建 报告基因融合和四环素调节的表达 报告了克隆的基因。这些向量用于测试 各种起始密码子的翻译效率。融合使用 ATG起始站点最活跃,而使用GTG和 TTG分别约为活性的一半或四分之一。 CTG融合的活性比ATG融合低95%。

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