Generation and Characterization of Thymidine/d-Alanine Auxotrophic Recombinant Lactococcus lactis subsp. lactis IL1403 Expressing BmpB
Autor: | Nam Kyung Lee, Qian Kun Zhang, Jee Soo Son, Eun Bae Kim, Sung Hee Kim, Sang Kee Kang, Jin Huk Choi, Yun-Jaie Choi |
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Rok vydání: | 2009 |
Předmět: |
Auxotrophy
Genetic Vectors Gene Expression Heterologous Biology Applied Microbiology and Biotechnology Microbiology law.invention chemistry.chemical_compound Plasmid Bacterial Proteins law Alanine Lactococcus lactis General Medicine biology.organism_classification Recombinant Proteins Culture Media Transformation (genetics) chemistry Recombinant DNA Transformation Bacterial Expression cassette Thymidine Plasmids |
Zdroj: | Current Microbiology. 61:29-36 |
ISSN: | 1432-0991 0343-8651 |
DOI: | 10.1007/s00284-009-9572-y |
Popis: | Genetic engineering of Lactococcus lactis to produce a heterologous protein may cause potential risks to the environment despite the industrial usefulness of engineered strains. To reduce the risks, we generated three auxotrophic recombinant L. lactis subsp. lactis IL1403 strains expressing a heterologous protein, BmpB, using thyA- and alr-targeting integration vectors: ITD (thyA − alr + bmpB +), IAD (thyA + alr − bmpB +), and ITDAD (thyA − alr − bmpB +). After construction of integration vectors, each vector was introduced into IL1403 genome. Integration of BmpB expression cassette, deletion of thyA, and inactivation of alr were verified by using PCR reaction. All heterologous DNA fragments except bmpB were eliminated from those recombinants during double crossover events. By using five selective agar plates, we also showed thymidine auxotrophy of ITD and ITDAD and d-alanine auxotrophy of IAD and ITDAD. In M17G and skim milk (SYG) media, the growth of the three recombinants was limited. In MRS media, the growth of IAD and ITDAD was limited, but ITD showed a normal growth pattern as compared with the wild-type strain (WT). All the recombinants showed maximal BmpB expression at an early stationary phase when they were cultivated in M17G supplemented with thymidine and d-alanine. These results suggest that auxotrophic recombinant L. lactis expressing a heterologous protein could be generated to reduce the ecological risks of a recombinant L. lactis. |
Databáze: | OpenAIRE |
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