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首页> 外文期刊>Microbial Cell Factories >Overproduction of Bacillus amyloliquefaciens extracellular glutamyl-endopeptidase as a result of ectopic multi-copy insertion of an efficiently-expressed mpr gene into the Bacillus subtilis chromosome
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Overproduction of Bacillus amyloliquefaciens extracellular glutamyl-endopeptidase as a result of ectopic multi-copy insertion of an efficiently-expressed mpr gene into the Bacillus subtilis chromosome

机译:高效表达的mpr基因异位多拷贝插入枯草芽孢杆菌染色体中的结果导致淀粉芽胞杆菌胞外谷氨酰胺内肽酶的过量生产

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Background Plasmid-less, engineered Bacillus strains have several advantages over plasmid-carrier variants. Specifically, their stability and potential ecological safety make them of use in industrial applications. As a rule, however, it is necessary to incorporate many copies of a key gene into a chromosome to achieve strain performance that is comparable to that of cells carrying multiple copies of a recombinant plasmid. Results A plasmid-less B. subtilis JE852-based strain secreting glutamyl-specific protease (GSP-the protein product of the mpr gene from B. amyloliquefaciens ) was constructed that exhibits decreased levels of other extracellular proteases. Ten copies of an mpr B.amy cassette in which the GSP gene was placed between the promoter of the B. amyloliquefaciens rplU-rpmA genes and the Rho-independent transcription terminator were ectopically inserted into designated (3 copies) and random (7 copies) points in the recipient chromosome. The resulting strain produced approximately 0.5 g/L of secreted GSP after bacterial cultivation in flasks with starch-containing media, and its performance was comparable to an analogous strain in which the mpr B.amy cassette was carried on a multi-copy plasmid. Conclusion A novel strategy for ectopically integrating a cassette into multiple random locations in the B. subtilis chromosome was developed. This new method is based on the construction of DNA fragments in which the desired gene, marked by antibiotic resistance, is sandwiched between "front" and "back" portions of random chromosomal DNA restriction fragments. These fragments were subsequently inserted into the targeted sites of the chromosome using double-cross recombination. The construction of a marker-free strain was achieved by gene conversion between the integrated marked gene and a marker-less variant carried by plasmid DNA, which was later removed from the cells.
机译:背景技术无质粒,工程改造的芽孢杆菌菌株比质粒载体变体具有多个优势。具体而言,它们的稳定性和潜在的生态安全性使其可在工业应用中使用。然而,通常必须将关键基因的许多拷贝掺入染色体中,以实现与携带多个拷贝的重组质粒的细胞相当的菌株性能。结果构建了一种基于无质粒的枯草芽孢杆菌JE852型菌株,该菌株分泌了谷氨酰特异性蛋白酶(GSP-解淀粉芽孢杆菌mpr基因的蛋白质产物),该菌株表现出其他细胞外蛋白酶的水平降低。将十个拷贝的mpr B.amy 盒(其中GSP基因置于解淀粉芽孢杆菌rplU-rpmA基因的启动子和Rho独立的转录终止子之间)异位插入指定的(3个拷贝)和受体染色体中的随机点(7个副本)。在含淀粉培养基的烧瓶中进行细菌培养后,所得菌株可产生约0.5 g / L分泌的GSP,其性能可与使用mpr B.amy 盒的类似菌株进行比较。多拷贝质粒。结论开发了一种新的策略,将异位盒整合到枯草芽孢杆菌染色体中的多个随机位置。该新方法基于DNA片段的构建,其中以抗生素抗性为标志的所需基因夹在随机染色体DNA限制片段的“前”和“后”部分之间。随后使用双杂交重组将这些片段插入染色体的目标位点。通过在整合的标记基因和质粒DNA携带的无标记变体之间进行基因转换,可以实现无标记菌株的构建,随后将其从细胞中去除。

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