Co-expression of polyhydroxyalkanoate synthase and (R)-enoyl-CoA hydratase genes of Aeromonas caviae establishes copolyester biosynthesis pathway in Escherichia coli

被引:31
作者
Fukui, T
Yokomizo, S
Kobayashi, G
Doi, Y
机构
[1] RIKEN, Inst Phys & Chem Res, Res Inst Innovat Technol Earth, RITE,Polymer Chem Lab, Wako, Saitama 3510198, Japan
[2] RIKEN, Inst Phys & Chem Res, Res Inst Innovat Technol Earth, RITE,RIKEN Grp, Wako, Saitama 3510198, Japan
关键词
polyhydroxyalkanoate; polyhydroxyalkanoate synthase; beta-oxidation; Aeromonas caviae; Escherichia coli;
D O I
10.1016/S0378-1097(98)00526-6
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Polyhydroxyalkanoate biosynthesis genes of Aeromonas caviae were expressed in Escherichia coli LS5218 (fadR atoC(Con)), and the polyhydroxyalkanoate-producing ability of the recombinants was investigated. A LS5218 strain harboring only phaC(Ac) (polyhydroxyalkanoate synthase gene) did not accumulate any polyhydroxyalkanoate from dodecanoate in spite of the existence of translated polyhydroxyalkanoate synthase protein, whereas co-expression phaC(Ac) and phaJ(Ac) ((R)-specific enoyl-CoA hydratase gene) resulted in the accumulation of P(3-hydroxybutyrate-co-3-hydroxyhexanoate) copolymer up to 7-11 wt% of dry cell weight from octanoate and dodecanoate. These results indicated that both phaC(Ac) and phaJ(Ac) are essential for E. coli LS5218 to establish the polyhydroxyalkanoate biosynthesis pathway from alkanoic acids. The copolyester content in the strain expressing both the genes under the lac promoter control reached to 38 wt%, from dodecanoate. Enzyme assays suggest that efficient monomer formation via beta-oxidation by a high level expression of phaJ(Ac). was important to achieve a high polyhydroxyalkanoate content in the recombinant E. coli. (C) 1999 Federation of European Microbiological Societies. Published by Elsevier Science B.V. All rights reserved.
引用
收藏
页码:69 / 75
页数:7
相关论文
共 18 条
[1]   VECTORS WITH RESTRICTION SITE BANKS .5. PJRD215, A WIDE-HOST-RANGE COSMID VECTOR WITH MULTIPLE CLONING SITES [J].
DAVISON, J ;
HEUSTERSPREUTE, M ;
CHEVALIER, N ;
HATHI, V ;
BRUNEL, F .
GENE, 1987, 51 (2-3) :275-280
[2]  
DOI Y, 1995, MACROMOLECULES, V28, P4822, DOI 10.1021/ma00118a007
[3]  
Doi Y., 1990, MICROBIAL POLYESTERS
[4]   Expression and characterization of (R)-specific enoyl coenzyme A hydratase involved in polyhydroxyalkanoate biosynthesis by Aeromonas caviae [J].
Fukui, T ;
Shiomi, N ;
Doi, Y .
JOURNAL OF BACTERIOLOGY, 1998, 180 (03) :667-673
[5]   Cloning and analysis of the Poly(3-hydroxybutyrate-co-3-hydroxyhexanoate) biosynthesis genes of Aeromonas caviae [J].
Fukui, T ;
Doi, Y .
JOURNAL OF BACTERIOLOGY, 1997, 179 (15) :4821-4830
[6]   Production of a novel copolyester of 3-hydroxybutyric acid and medium chain length 3-hydroxyalkanaic acids by Pseudomonas sp 61-3 from sugars [J].
Kato, M ;
Bao, HJ ;
Kang, CK ;
Fukui, T ;
Doi, Y .
APPLIED MICROBIOLOGY AND BIOTECHNOLOGY, 1996, 45 (03) :363-370
[7]   Functional expression of the PHA synthase gene PhaC1 from Pseudomonas aeruginosa in Escherichia coli results in poly(3-hydroxyalkanoate) synthesis [J].
Langenbach, S ;
Rehm, BHA ;
Steinbuchel, A .
FEMS MICROBIOLOGY LETTERS, 1997, 150 (02) :303-309
[8]  
LEE JH, 1994, KOREA POLYM J, V2, P32
[9]  
PEOPLES OP, 1989, J BIOL CHEM, V264, P15928
[10]  
REN Q, 1998, INT S BIOCH PRINC ME, P21