Journal of Antibiotics 2001-01-01

Construction and physiological studies on a stable bioengineered strain of shengjimycin.

S Guangdong, D Jianlu, W Yiguang

Index: J. Antibiot. 54(1) , 66-73, (2001)

Full Text: HTML

Abstract

Shengjimycin is a group of 4"-acylated spiramycins with 4"-isovalerylspiramycin as the major component, produced by recombinant S. spiramyceticus F21 harboring a 4"-O-acyltransferase gene from S. mycarofaciens 1748. A stable bioengineered strain of Streptomyces spiramyceticus WSJ-1 was constructed by integrating the 4"-O-acyltransferase gene (ist) by homologous recombination into the chromosome of the spiramycin-producing strain S. spiramyceticus F21. In this construction, a Streptomyces/E. coli shuttle plasmid pKC1139 (AmR) was used as the vector with the tsr gene used as selection marker for homologous recombination. The constructed strain, S. spiramyceticus WSJ-1,was genetically stable in production titer and proportion of components of shengjimycin as well as in maintaining the tsr selective marker when grown without selection. Southern hybridization confirmed the integrated status of the ist gene in the host genome. The production and the proportion of major component of 4"-isovalerylspiramycin of S. spiramyceticus WSJ-1 was also improved comparing with the strain harboring an autonomous plasmid -S. spiramyceticus F21/pIJ680(311) as shown by HPLC analysis. Physiological studies indicated that increase of the VDH ( valine dehydrogenase ) and LDH ( leucine dehydrogenase ) activities of WSJ-1 may be involved in this improvement.


Related Compounds

Related Articles:

An efficient and selective enzymatic oxidation system for the synthesis of enantiomerically pure D-tert-leucine.

2003-10-02

[Org. Lett. 5(20) , 3649-50, (2003)]

Foot odor due to microbial metabolism and its control.

2006-04-01

[Can. J. Microbiol. 52(4) , 357-64, (2006)]

Investigation of mathematical methods for efficient optimisation of aqueous two-phase extraction.

2000-06-23

[J. Chromatogr. B. Biomed. Sci. Appl. 743(1-2) , 21-30, (2000)]

Investigating expression systems for the stable large-scale production of recombinant L-leucine-dehydrogenase from Bacillus cereus in Escherichia coli.

2000-06-01

[Appl. Microbiol. Biotechnol. 53(6) , 668-73, (2000)]

Production of recombinant L-leucine dehydrogenase from Bacillus cereus in pilot scale using the runaway replication system E. coli[pIET98].

2000-06-05

[Biotechnol. Bioeng. 68(5) , 557-62, (2000)]

More Articles...