Multiple pathways for acetate assimilation in Streptomyces cinnamonensis

被引:16
作者
Akopiants, K [1 ]
Florova, G [1 ]
Li, CX [1 ]
Reynolds, KA [1 ]
机构
[1] Virginia Commonwealth Univ, Inst Struct Biol & Drug Discovery, Richmond, VA 23219 USA
关键词
Streptomyces cinnamonensis; glyoxylate cycle; malate synthase; acetate assimilation;
D O I
10.1007/s10295-005-0029-4
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
In most bacteria acetate assimilation is accomplished via the glyoxylate pathway. Isocitrate lyase (ICL) and malate synthase (MS) are two key enzymes of this pathway, which results in the net generation of one molecule of succinyl-CoA from two acetyl-CoA molecules. Genetic and biochemical data have shown that genes encoding these key enzymes are present in streptomycetes, yet there has been no clear demonstration of the importance of these genes to acetate assimilation. In fact, for Streptomyces collinus an alternative butyryl-CoA pathway has been shown to be critical for growth on acetate as a sole carbon source. Crotonyl-CoA reductase (CCR) is a key enzyme in this pathway and catalyzes the last step of the conversion of 2-acetyl-CoA molecules to butyryl-CoA. In Streptomyces cinnamonensis C730.1, it has been shown that CCR and this butyryl-CoA pathway provide the majority of methylmalonyl-CoA and ethyimalonyl-CoA for monensin A biosynthesis in an oil-based fermentation medium. We have cloned a MS homologue gene from this strain. Reverse transcription and direct enzyme assays demonstrated that neither this nor other MS genes were expressed during fermentation in an oil-based fermentation of either the C730.1 or L1 strain (a ccr mutant). Similarly, no ICL activity could be detected. The C730.1 but not the L1 strain was able to grow on acetate as a sole carbon source. The Streptomyces coelicolor aceA and aceB2 genes encoding ICL and MS were cloned into a Streptomyces expression plasmid (a derivative of pSET152) to create pExIM1. Enzyme assays and transcript analyses demonstrated expression of both of these proteins in C730.1/pExIM1 and L1/pExIM1 grown in an oil-based fermentation and tryptic soy broth media. Nonetheless, L1/pExIM1, like L1, was unable to grow on acetate as a sole carbon source, and was unable to efficiently generate precursors for monensin A biosynthesis in an oil-based fermentation, indicating that the additional presence of these two enzyme activities does not permit a functional glyoxylate cycle to occur. UV mutagenesis of S. cinnamonensis L1 and L1/pExIM1 led to mutants which were able to grow efficiently on acetate despite a block in the butyryl-CoA pathway. Analysis of enzyme activity and monensin production from these mutants in an oil-based fermentation demonstrated that neither the glyoxylate cycle nor the butyryl-CoA pathway function, suggesting the possibility of alternative pathways of acetate assimilation.
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页码:141 / 150
页数:10
相关论文
共 22 条
  • [1] Complete genome sequence of the model actinomycete Streptomyces coelicolor A3(2)
    Bentley, SD
    Chater, KF
    Cerdeño-Tárraga, AM
    Challis, GL
    Thomson, NR
    James, KD
    Harris, DE
    Quail, MA
    Kieser, H
    Harper, D
    Bateman, A
    Brown, S
    Chandra, G
    Chen, CW
    Collins, M
    Cronin, A
    Fraser, A
    Goble, A
    Hidalgo, J
    Hornsby, T
    Howarth, S
    Huang, CH
    Kieser, T
    Larke, L
    Murphy, L
    Oliver, K
    O'Neil, S
    Rabbinowitsch, E
    Rajandream, MA
    Rutherford, K
    Rutter, S
    Seeger, K
    Saunders, D
    Sharp, S
    Squares, R
    Squares, S
    Taylor, K
    Warren, T
    Wietzorrek, A
    Woodward, J
    Barrell, BG
    Parkhill, J
    Hopwood, DA
    [J]. NATURE, 2002, 417 (6885) : 141 - 147
  • [2] Malate synthase from Streptomyces clavuligerus NRRL3585:: cloning, molecular characterization and its control by acetate
    Chan, M
    Sim, TS
    [J]. MICROBIOLOGY-SGM, 1998, 144 : 3229 - 3237
  • [3] Regulation of acetate metabolism by protein phosphorylation in enteric bacteria
    Cozzone, AJ
    [J]. ANNUAL REVIEW OF MICROBIOLOGY, 1998, 52 : 127 - 164
  • [4] A novel alternate anaplerotic pathway to the glyoxylate cycle in streptomycetes
    Han, L
    Reynolds, KA
    [J]. JOURNAL OF BACTERIOLOGY, 1997, 179 (16) : 5157 - 5164
  • [5] Hopwood D.A., 1985, GENETIC MANIPULATION
  • [6] Gene cloning and sequencing, and enzyme purification of the malate synthase of Streptomyces arenae
    Huttner, S
    Mecke, D
    Frohlich, KU
    [J]. GENE, 1997, 188 (02) : 239 - 246
  • [7] Complete genome sequence and comparative analysis of the industrial microorganism Streptomyces avermitilis
    Ikeda, H
    Ishikawa, J
    Hanamoto, A
    Shinose, M
    Kikuchi, H
    Shiba, T
    Sakaki, Y
    Hattori, M
    Omura, S
    [J]. NATURE BIOTECHNOLOGY, 2003, 21 (05) : 526 - 531
  • [8] A proposed citramalate cycle for acetate assimilation in the purple non-sulfur bacterium Rhodospirillum rubrum
    Ivanovsky, RN
    Krasilnikova, EN
    Berg, IA
    [J]. FEMS MICROBIOLOGY LETTERS, 1997, 153 (02) : 399 - 404
  • [9] KORNBERG HL, 1966, BIOCHEM J, V99, P1
  • [10] Glyoxylate regeneration pathway in the methylotroph Methylobactetaum extorquens AM1
    Korotkova, N
    Chistoserdova, L
    Kuksa, V
    Lidstrom, ME
    [J]. JOURNAL OF BACTERIOLOGY, 2002, 184 (06) : 1750 - 1758