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通过枯草芽孢杆菌基因组缩减提高重组蛋白产量

Enhanced recombinant protein productivity by genome reduction in Bacillus subtilis.

作者信息

Morimoto Takuya, Kadoya Ryosuke, Endo Keiji, Tohata Masatoshi, Sawada Kazuhisa, Liu Shengao, Ozawa Tadahiro, Kodama Takeko, Kakeshita Hiroshi, Kageyama Yasushi, Manabe Kenji, Kanaya Shigehiko, Ara Katsutoshi, Ozaki Katsuya, Ogasawara Naotake

机构信息

Biological Science Laboratories, Kao Corporation, 2606 Akabane, Ichikai, Haga, Tochigi 321-3497, Japan.

出版信息

DNA Res. 2008 Apr 30;15(2):73-81. doi: 10.1093/dnares/dsn002. Epub 2008 Mar 11.

Abstract

The emerging field of synthetic genomics is expected to facilitate the generation of microorganisms with the potential to achieve a sustainable society. One approach towards this goal is the reduction of microbial genomes by rationally designed deletions to create simplified cells with predictable behavior that act as a platform to build in various genetic systems for specific purposes. We report a novel Bacillus subtilis strain, MBG874, depleted of 874 kb (20%) of the genomic sequence. When compared with wild-type cells, the regulatory network of gene expression of the mutant strain is reorganized after entry into the transition state due to the synergistic effect of multiple deletions, and productivity of extracellular cellulase and protease from transformed plasmids harboring the corresponding genes is remarkably enhanced. To our knowledge, this is the first report demonstrating that genome reduction actually contributes to the creation of bacterial cells with a practical application in industry. Further systematic analysis of changes in the transcriptional regulatory network of MGB874 cells in relation to protein productivity should facilitate the generation of improved B. subtilis cells as hosts of industrial protein production.

摘要

合成基因组学这一新兴领域有望推动具有实现可持续社会潜力的微生物的产生。实现这一目标的一种方法是通过合理设计的缺失来减少微生物基因组,以创建具有可预测行为的简化细胞,这些细胞可作为构建各种特定用途遗传系统的平台。我们报告了一种新型枯草芽孢杆菌菌株MBG874,其基因组序列缺失了874 kb(20%)。与野生型细胞相比,由于多次缺失的协同作用,突变菌株进入转变状态后基因表达的调控网络会重新组织,并且携带相应基因的转化质粒产生的细胞外纤维素酶和蛋白酶的产量显著提高。据我们所知,这是第一份证明基因组缩减实际上有助于创建在工业上有实际应用价值的细菌细胞的报告。对MGB874细胞转录调控网络变化与蛋白质生产力关系的进一步系统分析,应有助于培育出改良的枯草芽孢杆菌细胞作为工业蛋白质生产的宿主。

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