• 제목/요약/키워드: Lactococcal shuttle/expression vector

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선별마커로써 $\beta$-Galactosidase 유전자를 포함한 Lactococcus용 셔틀/발현 벡터 제조 (Construction of a Lactococcal Shuttle/Expression Vector Containing a $\beta$-Galactosidase Gene as a Screening Marker)

  • 한태운;정도원;조산호;이종훈;정대균;이형주
    • 한국미생물·생명공학회지
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    • 제33권4호
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    • pp.241-247
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    • 2005
  • 선별마커로써 Lactococcus lactis ssp. lactis ATCC 7962 유래의 $\beta$-galactosidase 유전자를 포함하는 Lactococcus용 셔틀/발현 벡터 pWgall3T를 제조하여 Escherichia coli DH5$\alpha$와 고. Lactis MG1363내로 도입하였다. 이들 형질 전환체들은 X-gal을 포함하는 배지에서 파란색의 표현형을 보임으로써 쉽게 확인할 수 있었다. 또한, L. lactis MG1363 형질전환체로부터 $\beta$-galactosidase 활성을 측정한 결과 기존에 $\beta$-galactosidase를 활성을 지닌 L. lactis ATCC 7962에 비해 glucose를 포함하는 M17배지에서 4배정도 높은 활성을 보임으로써 선별마커로써의 효율성을 나타내었다. pWgal13T는 $\beta$-galactosidase 유전자 외에 L. lactis Wg2유래의 replicon과 외래 유전자의 발현을 위한 L. lactis ssp. cremoris LM0230의 promoter P13C, terminator를 포함하고 있다. 이 벡터의 이용가능성을 확인하기 위하여 외래 유전자 EGFP유전자를 P13C 아래에 삽입하여 E. coli와 L. iactis에서 발현을 확인하였다. 이 연구에서 제조된 Lactococcus용 발현 벡터 pWgal13T는 E. coli와 L. lactis에서 외래 유용 유전자를 생산을 위해 이용 할 수 있을 것이다.

유산균의 Host-Vector System 개발 (Development of Host-Vector Systems for Lactic Acid Bacteria)

  • 윤성식;김창민
    • 한국미생물·생명공학회지
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    • 제29권1호
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    • pp.1-11
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    • 2001
  • Lactic acid bacteria (LAB) are widely used for various food fermentation. With the recent advances in modern biotechnology, a variety of bio-products with the high economic values have been produced using microorganisms. For molecular cloning and expression studies on the gene of interest, E. coli has been widely used mainly because vector systems are fully developed. Most plasmid vectors currently used for E, coli carry antibiotic-resistant markers. As it is generally believed that the antibiotic resistance markers are potentially transferred to other bacteria, application of the plasmid vectors carrying antibiotic resistance genes as selection markers should be avoided, especially for human consump-tion. By contrast, as LAB have some desirable traits such that the they are GRAS(generally recognized as safe), able to secrete gene products out of cell, and their low protease activities, they are regarded as an ideal organism for the genetic manipulation, including cloning and expression of homologous and heterologous genes. However, the vec-tor systems established for LAB are stil insufficient to over-produce gene products, stably, limiting the use of these organisms for industrial applications. For a past decade, the two popular plasmid vectors, pAM$\beta$1 of Streptococcus faecalis and pGK12 theB. subtilis-E. coli shuttle vector derived from pWV01 of Lactococcus lactis ssp. cremoris wg 2, were most widely used to construct efficient chimeric vectors to be stably maintained in many industrial strains of LAB. Currently, non-antibiotic markers such as nisin resistance($Nis^{r}$ ) are explored for selecting recombi-nant clone. In addition, a gene encoding S-layer protein, slp/A, on bacterial cell wall was successfully recombined with the proper LAB vectors LAB vectors for excretion of the heterologous gene product from LAB Many food-grade host vec-tor systems were successfully developed, which allowed stable integration of multiple plasmid copies in the vec-mosome of LAB. More recently, an integration vector system based on the site-specific integration apparatus of temperate lactococcal bacteriophage, containing the integrase gene(int) and phage attachment site(attP), was pub-lished. In conclusion, when various vector system, which are maintain stably and expressed strongly in LAB, are developed, lost of such food products as enzymes, pharmaceuticals, bioactive food ingredients for human consump-tion would be produced at a full scale in LAB.

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