메뉴 건너뛰기




Volumn 101, Issue 5, 2008, Pages 881-893

Eliminating side products and increasing succinate yields in engineered strains of Escherichia coli C

Author keywords

Biocatalysis; Escherichia coli; Fermentation; Succinate

Indexed keywords

BIOCHEMICAL ENGINEERING; BIOCHEMISTRY; ENZYMES; ESCHERICHIA COLI; FERMENTATION; GENES; GLUCOSE; MINERALOGY; MINERALS; NUCLEIC ACIDS; ORGANIC ACIDS; SALTS; SILICA; SILICATE MINERALS;

EID: 56449105588     PISSN: 00063592     EISSN: 10970290     Source Type: Journal    
DOI: 10.1002/bit.22005     Document Type: Article
Times cited : (211)

References (48)
  • 3
    • 0035158424 scopus 로고    scopus 로고
    • Mutation of the ptsG gene results in increased production of succinate in fermentation of glucose by Escherichia coli
    • Chatterjee R, Cynthia SM, Kathleen C, David PC, Donnelly MI, 2001. Mutation of the ptsG gene results in increased production of succinate in fermentation of glucose by Escherichia coli. Appl Environ Microbiol 67:148-154.
    • (2001) Appl Environ Microbiol , vol.67 , pp. 148-154
    • Chatterjee, R.1    Cynthia, S.M.2    Kathleen, C.3    David, P.C.4    Donnelly, M.I.5
  • 4
    • 0034612342 scopus 로고    scopus 로고
    • One-step inactivation of chromosomal genes in Escherichia coli K-12 using PCR products
    • Datsenko KA, Wanner BL. 2000. One-step inactivation of chromosomal genes in Escherichia coli K-12 using PCR products. Proc Natl Acad Sci USA 97:6640-6645.
    • (2000) Proc Natl Acad Sci USA , vol.97 , pp. 6640-6645
    • Datsenko, K.A.1    Wanner, B.L.2
  • 5
    • 0032906898 scopus 로고    scopus 로고
    • The steady-state internal redox state (NADH/NAD) reflects the external redox state and is correlated with catabolic adaptation in Escherichia coli
    • de Graef MR, Alexeeva S, Snoep JL, de Mattos MJ. 1999. The steady-state internal redox state (NADH/NAD) reflects the external redox state and is correlated with catabolic adaptation in Escherichia coli. J Bacteriol 181:2351-2357.
    • (1999) J Bacteriol , vol.181 , pp. 2351-2357
    • de Graef, M.R.1    Alexeeva, S.2    Snoep, J.L.3    de Mattos, M.J.4
  • 6
    • 33748100868 scopus 로고    scopus 로고
    • Methylglyoxal bypass identified as source of chiral contamination in L(+) and D(-) lactate fermentations by recombinant Escherichia coli
    • Grabar TB, Zhou S, Shanmugam KT, Yomano LP, Ingram LO. 2006. Methylglyoxal bypass identified as source of chiral contamination in L(+) and D(-) lactate fermentations by recombinant Escherichia coli. Biotechnol Lett 28:1527-1535.
    • (2006) Biotechnol Lett , vol.28 , pp. 1527-1535
    • Grabar, T.B.1    Zhou, S.2    Shanmugam, K.T.3    Yomano, L.P.4    Ingram, L.O.5
  • 7
    • 0024954386 scopus 로고
    • Structure, expression, and protein engineering in the pyruvate dehydrogenase complex of Escherichia coli
    • Guest JR, Angier SJ, Russell GC. 1989. Structure, expression, and protein engineering in the pyruvate dehydrogenase complex of Escherichia coli. Ann NY Acad Sci 573:76-99.
    • (1989) Ann NY Acad Sci , vol.573 , pp. 76-99
    • Guest, J.R.1    Angier, S.J.2    Russell, G.C.3
  • 8
    • 33847030736 scopus 로고    scopus 로고
    • Industrial biotechnology for the production of bio-based chemicals-a cradle-to-grave perspective
    • Hatti-Kaul R, Tornvall U, Gustafsson L, Borjesson P. 2007. Industrial biotechnology for the production of bio-based chemicals-a cradle-to-grave perspective. Trends Biotechnol 25(3):119-124.
    • (2007) Trends Biotechnol , vol.25 , Issue.3 , pp. 119-124
    • Hatti-Kaul, R.1    Tornvall, U.2    Gustafsson, L.3    Borjesson, P.4
  • 9
    • 0031973793 scopus 로고    scopus 로고
    • Novel keto acid formate-lyase and propionate kinase enzymes are components of an anaerobic pathway in Escherichia coli that degrades L threonine to propionate
    • Hesslinger C, Fairhurst SA, Sawers G. 1998. Novel keto acid formate-lyase and propionate kinase enzymes are components of an anaerobic pathway in Escherichia coli that degrades L threonine to propionate. Mol Microbiol 27(2):477-492.
    • (1998) Mol Microbiol , vol.27 , Issue.2 , pp. 477-492
    • Hesslinger, C.1    Fairhurst, S.A.2    Sawers, G.3
  • 10
    • 41249084917 scopus 로고    scopus 로고
    • Combining metabolic engineering and metabolic evolution to develop nonrecombinant strains of E. coli C that produce succinate and malate
    • Jantama K, Haupt MJ, Svoronos SA, Zhang X, Moore JC, Shanmugam KT, Ingram LO. 2008. Combining metabolic engineering and metabolic evolution to develop nonrecombinant strains of E. coli C that produce succinate and malate. Biotechnol Bioeng 99(5):1140-1153.
    • (2008) Biotechnol Bioeng , vol.99 , Issue.5 , pp. 1140-1153
    • Jantama, K.1    Haupt, M.J.2    Svoronos, S.A.3    Zhang, X.4    Moore, J.C.5    Shanmugam, K.T.6    Ingram, L.O.7
  • 13
    • 0001465771 scopus 로고    scopus 로고
    • Anaerobic dissimilation of pyruvate
    • Neidhardt FC, Curtiss III R, Ingraham JL, Lin ECC, Low KB, Magasanik B, Reznikoff WS, Riley M, Schaechter M, Umbarger HE, editors, Washington, DC: ASM Press. p
    • Kessler D, Knappe J. 1996. Anaerobic dissimilation of pyruvate. In: Neidhardt FC, Curtiss III R, Ingraham JL, Lin ECC, Low KB, Magasanik B, Reznikoff WS, Riley M, Schaechter M, Umbarger HE, editors. Escherichia coli and Salmonella: Cellular and molecular biology. Washington, DC: ASM Press. p 199-205.
    • (1996) Escherichia coli and Salmonella: Cellular and molecular biology , pp. 199-205
    • Kessler, D.1    Knappe, J.2
  • 14
    • 33947357776 scopus 로고    scopus 로고
    • Construction of an Escherichia coli K-12 mutant for homoethanologenic fermentation of glucose or xylose without foreign genes
    • Kim Y, Ingram LO, Shanmugam KT. 2007. Construction of an Escherichia coli K-12 mutant for homoethanologenic fermentation of glucose or xylose without foreign genes. Appl Environ Microbiol 73:1766-1771.
    • (2007) Appl Environ Microbiol , vol.73 , pp. 1766-1771
    • Kim, Y.1    Ingram, L.O.2    Shanmugam, K.T.3
  • 15
    • 0020631427 scopus 로고
    • Regulatory citrate lyase mutants of Salmonella typhimurium
    • Kulla HG. 1983. Regulatory citrate lyase mutants of Salmonella typhimurium. J Bacteriol 153:546-549.
    • (1983) J Bacteriol , vol.153 , pp. 546-549
    • Kulla, H.G.1
  • 16
    • 0017761437 scopus 로고
    • Energy-dependent inactivation of citrate lyase in Enterobacter aerogenes
    • Kulla H, Gottschalk G. 1977. Energy-dependent inactivation of citrate lyase in Enterobacter aerogenes. J Bacteriol 132(3):764-770.
    • (1977) J Bacteriol , vol.132 , Issue.3 , pp. 764-770
    • Kulla, H.1    Gottschalk, G.2
  • 17
    • 0035308590 scopus 로고    scopus 로고
    • Lee EC, Yu D, Martinez de Velasco J, Tessarollo L, Swing DA, Court DL, Jenkins NA, Copeland NG. 2001. A highly efficient Escherichia coli-based chromosome engineering system adapted for recombinogenic targeting and subcloning of BAC DNA. Genomics 73:56-65.
    • Lee EC, Yu D, Martinez de Velasco J, Tessarollo L, Swing DA, Court DL, Jenkins NA, Copeland NG. 2001. A highly efficient Escherichia coli-based chromosome engineering system adapted for recombinogenic targeting and subcloning of BAC DNA. Genomics 73:56-65.
  • 18
    • 4544298194 scopus 로고    scopus 로고
    • Fermentative production of chemicals that can be used for polymer synthesis
    • Lee SY, Hong SH, Lee SH, Park SJ. 2004. Fermentative production of chemicals that can be used for polymer synthesis. Macromol Biosci 4:157-164.
    • (2004) Macromol Biosci , vol.4 , pp. 157-164
    • Lee, S.Y.1    Hong, S.H.2    Lee, S.H.3    Park, S.J.4
  • 19
    • 27944459219 scopus 로고    scopus 로고
    • White biotechnology: Differences in US and EU approaches?
    • Lorenz P, Zinke H. 2005. White biotechnology: Differences in US and EU approaches? Trends in Biotechnol 23(12):570-574.
    • (2005) Trends in Biotechnol , vol.23 , Issue.12 , pp. 570-574
    • Lorenz, P.1    Zinke, H.2
  • 20
    • 0019308686 scopus 로고
    • Why a co-substrate is required for the anaerobic growth of Escherichia coli on citrate
    • Lutgens M, Gottschalk G. 1980. Why a co-substrate is required for the anaerobic growth of Escherichia coli on citrate. J Gen Microbiol 119:63-70.
    • (1980) J Gen Microbiol , vol.119 , pp. 63-70
    • Lutgens, M.1    Gottschalk, G.2
  • 22
    • 0032699238 scopus 로고    scopus 로고
    • Chromosomal integration of heterologous DNA in Escherichia coli with precise removal of markers and replicons used during construction
    • Martinez-Morales F, Borges AC, Martinez A, Shanmugam KT, Ingram LO. 1999. Chromosomal integration of heterologous DNA in Escherichia coli with precise removal of markers and replicons used during construction. J Bacteriol 181:7143-7148.
    • (1999) J Bacteriol , vol.181 , pp. 7143-7148
    • Martinez-Morales, F.1    Borges, A.C.2    Martinez, A.3    Shanmugam, K.T.4    Ingram, L.O.5
  • 24
    • 0021113933 scopus 로고
    • Purification and properties of citrate lyase from Escherichia coli
    • Nilekani S, Sivaraman C. 1983. Purification and properties of citrate lyase from Escherichia coli. Biochemistry 22(20):4657-4663.
    • (1983) Biochemistry , vol.22 , Issue.20 , pp. 4657-4663
    • Nilekani, S.1    Sivaraman, C.2
  • 25
    • 38149112723 scopus 로고    scopus 로고
    • Renewable resources in the chemical industry - Breaking away from oil?
    • Nordhoff S, Hocker H, Gebhardt H. 2007. Renewable resources in the chemical industry - Breaking away from oil? Biotechnol J 2:1505-1513.
    • (2007) Biotechnol , vol.J 2 , pp. 1505-1513
    • Nordhoff, S.1    Hocker, H.2    Gebhardt, H.3
  • 26
    • 0037066717 scopus 로고    scopus 로고
    • Global expression profiling of acetate-grown Escherichia coli
    • Oh MK, Rohlin L, Kao KC, Liao JC. 2002. Global expression profiling of acetate-grown Escherichia coli. J Biol Chem 277:13175-13183.
    • (2002) J Biol Chem , vol.277 , pp. 13175-13183
    • Oh, M.K.1    Rohlin, L.2    Kao, K.C.3    Liao, J.C.4
  • 28
    • 0344328817 scopus 로고    scopus 로고
    • An expanded genome-scale model of Escherichia coli K-12 (iJR904 GSM/GPR)
    • Reed JL, Vo TD, Schilling CH, Palsson BO. 2003. An expanded genome-scale model of Escherichia coli K-12 (iJR904 GSM/GPR). Genome Biol 4(9):R54.
    • (2003) Genome Biol , vol.4 , Issue.9
    • Reed, J.L.1    Vo, T.D.2    Schilling, C.H.3    Palsson, B.O.4
  • 29
    • 84959039264 scopus 로고    scopus 로고
    • .6.1.3, Biosynthesis of glutamate, aspartate, asparagine, L-alanine, and D-alanine
    • Böck A, Curtiss R III, Kaper JB, Neidhardt FC, Nyström T, Rudd KE, Squires CL, editors, Online, DC. ASM Press
    • Reitzer L. 2004. Chapter 3.6.1.3, Biosynthesis of glutamate, aspartate, asparagine, L-alanine, and D-alanine. In: Böck A, Curtiss R III, Kaper JB, Neidhardt FC, Nyström T, Rudd KE, Squires CL, editors. EcoSal- Escherichia coli and Salmonella: Cellular and molecular biology, [Online.] http://www.ecosal.org. Washington, DC. ASM Press.
    • (2004) EcoSal- Escherichia coli and Salmonella: Cellular and molecular biology
    • Reitzer, L.1
  • 30
    • 18944378749 scopus 로고    scopus 로고
    • Novel pathway engineering design of the anaerobic central metabolic pathway in Escherichia coli to increase succinate yield and productivity
    • Sanchez AM, Bennett GN, San KY. 2005. Novel pathway engineering design of the anaerobic central metabolic pathway in Escherichia coli to increase succinate yield and productivity. Metab Eng 7:229-239.
    • (2005) Metab Eng , vol.7 , pp. 229-239
    • Sanchez, A.M.1    Bennett, G.N.2    San, K.Y.3
  • 31
    • 38349093902 scopus 로고    scopus 로고
    • Microbial production of organic acids: Expanding the markets
    • Sauer M, Porro D, Mattanovich D, Branduardi P. 2008. Microbial production of organic acids: Expanding the markets. Trends Biotechnol 26(2):100-108.
    • (2008) Trends Biotechnol , vol.26 , Issue.2 , pp. 100-108
    • Sauer, M.1    Porro, D.2    Mattanovich, D.3    Branduardi, P.4
  • 33
    • 33747280991 scopus 로고    scopus 로고
    • Production of succinic acid by bacterial fermentation
    • Song H, Lee SY. 2006. Production of succinic acid by bacterial fermentation. Enzyme Microb Technol 39:352-361.
    • (2006) Enzyme Microb Technol , vol.39 , pp. 352-361
    • Song, H.1    Lee, S.Y.2
  • 35
    • 0030752053 scopus 로고    scopus 로고
    • Production of succinic acid through overexpression of NAD dependent malic enzyme in an Escherichia coli mutant
    • Stols L, Donnelly MI. 1997. Production of succinic acid through overexpression of NAD dependent malic enzyme in an Escherichia coli mutant. Appl Environ Microbiol 63:2695-2701.
    • (1997) Appl Environ Microbiol , vol.63 , pp. 2695-2701
    • Stols, L.1    Donnelly, M.I.2
  • 36
    • 0033558377 scopus 로고    scopus 로고
    • A 2-μm DNA-based maker recycling system for multiple gene disruption in the yeast Saccharomyces cerevisiae
    • Storici F, Coglievina M, Bruschi CV. 1999. A 2-μm DNA-based maker recycling system for multiple gene disruption in the yeast Saccharomyces cerevisiae. Yeast 15:271-283.
    • (1999) Yeast , vol.15 , pp. 271-283
    • Storici, F.1    Coglievina, M.2    Bruschi, C.V.3
  • 37
    • 0036605101 scopus 로고    scopus 로고
    • Biocatalysis: Applications and potentials for the chemical industry
    • Thomas SM, DiCosimo R, Nagarajan V. 2002. Biocatalysis: Applications and potentials for the chemical industry. Trends Biotechnol 20:238-242.
    • (2002) Trends Biotechnol , vol.20 , pp. 238-242
    • Thomas, S.M.1    DiCosimo, R.2    Nagarajan, V.3
  • 38
    • 56449111535 scopus 로고    scopus 로고
    • Thomason L, Court DL, Bubunenko M, Constantino N, Wilson H, Datta S, Oppenheim A. 2005. Current protocols in molecular biology. In: Ausubel FM, Brent R, Klingston RE, Moore DD, Deidman JD, Smith JA, Struhl K, editors. Recombineering: Genetic engineering in bacteria using homologous recombination. New York: John Wiley & Sons. p 1.16.1-1.16.21.
    • Thomason L, Court DL, Bubunenko M, Constantino N, Wilson H, Datta S, Oppenheim A. 2005. Current protocols in molecular biology. In: Ausubel FM, Brent R, Klingston RE, Moore DD, Deidman JD, Smith JA, Struhl K, editors. Recombineering: Genetic engineering in bacteria using homologous recombination. New York: John Wiley & Sons. p 1.16.1-1.16.21.
  • 39
    • 84959064004 scopus 로고    scopus 로고
    • 4-dicarboxylate degradation in aerobic and anaerobic growth
    • Böck A, Curtiss R III, Kaper JB, Neidhardt FC, Nyström T, Rudd KE, Squires CL, editors, Online, DC. ASM Press
    • 4-dicarboxylate degradation in aerobic and anaerobic growth. In: Böck A, Curtiss R III, Kaper JB, Neidhardt FC, Nyström T, Rudd KE, Squires CL, editors. EcoSal-Escherichia coli and Salmonella: Cellular and molecular biology, [Online.] http://www.ecosal.org. Washington, DC. ASM Press.
    • (2004) EcoSal-Escherichia coli and Salmonella: Cellular and molecular biology
    • Unden, G.1    Kleefeld, A.2
  • 40
    • 0036956418 scopus 로고    scopus 로고
    • Genetic changes to optimise carbon partitioning between ethanol and biosynthesis in ethanologenic Escherichia coli
    • Underwood SA, Buszko ML, Shanmugam KT, Ingram LO. 2002. Genetic changes to optimise carbon partitioning between ethanol and biosynthesis in ethanologenic Escherichia coli. Appl Environ Microbiol 68(12):6263-6272.
    • (2002) Appl Environ Microbiol , vol.68 , Issue.12 , pp. 6263-6272
    • Underwood, S.A.1    Buszko, M.L.2    Shanmugam, K.T.3    Ingram, L.O.4
  • 41
    • 0036210809 scopus 로고    scopus 로고
    • Effects of growth mode and pyruvate carboxylase on succinic acid production by metabolically engineered strains of Escherichia coli
    • Vemuri GN, Eiteman MA, Altman E. 2002. Effects of growth mode and pyruvate carboxylase on succinic acid production by metabolically engineered strains of Escherichia coli. Appl Environ Microbiol 68:1715-1727.
    • (2002) Appl Environ Microbiol , vol.68 , pp. 1715-1727
    • Vemuri, G.N.1    Eiteman, M.A.2    Altman, E.3
  • 42
    • 33746913914 scopus 로고    scopus 로고
    • Metabolic engineering of Escherichia coli and Corynebacterium glutamicum for biotechnological production of organic acids and amino acids
    • Wendisch VF, Bott M, Bernhard JE. 2006. Metabolic engineering of Escherichia coli and Corynebacterium glutamicum for biotechnological production of organic acids and amino acids. Curr Opin Microbiol 9:1-7.
    • (2006) Curr Opin Microbiol , vol.9 , pp. 1-7
    • Wendisch, V.F.1    Bott, M.2    Bernhard, J.E.3
  • 43
    • 13244288422 scopus 로고    scopus 로고
    • Werpy T, Petersen G, editors, Washington, DC: US Department of Energy
    • Werpy T, Petersen G, editors. 2004. Top value added chemicals from biomass. Washington, DC: US Department of Energy. http://www1.eere.energy.gov/ biomass/pdfs/35523.pdf.
    • (2004) Top value added chemicals from biomass
  • 44
    • 11244299779 scopus 로고    scopus 로고
    • Industrial bioconversion of renewable resources as an alternative to conventional chemistry
    • Willke T, Vorlop KD. 2004. Industrial bioconversion of renewable resources as an alternative to conventional chemistry. Appl Microbiol Biotechnol 66:131-142.
    • (2004) Appl Microbiol Biotechnol , vol.66 , pp. 131-142
    • Willke, T.1    Vorlop, K.D.2
  • 45
    • 37349117342 scopus 로고    scopus 로고
    • Improved succinic acid production in anaerobic culture of a pflB ldhA double mutant of Escherichia coli by enhancing the anaplerotic activities in preceding aerobic culture
    • Wu H, Li ZM, Zhou L, Ye Q. 2007. Improved succinic acid production in anaerobic culture of a pflB ldhA double mutant of Escherichia coli by enhancing the anaplerotic activities in preceding aerobic culture. Appl Environ Microbiol 73(24):7837-7843.
    • (2007) Appl Environ Microbiol , vol.73 , Issue.24 , pp. 7837-7843
    • Wu, H.1    Li, Z.M.2    Zhou, L.3    Ye, Q.4
  • 46
    • 0032997255 scopus 로고    scopus 로고
    • Biotechnology of succinic acid production and markets for derived industrial products
    • Zeikus JG, Jain MK, Elankovan P. 1999. Biotechnology of succinic acid production and markets for derived industrial products. Appl Microbiol Biotechnol 51:545-552.
    • (1999) Appl Microbiol Biotechnol , vol.51 , pp. 545-552
    • Zeikus, J.G.1    Jain, M.K.2    Elankovan, P.3
  • 48
    • 37549034954 scopus 로고    scopus 로고
    • Engineering a native homo-ethanol pathway in Escherichia coli B for ethanol production
    • Zhou S, Iverson AG, Grayburn WS. 2008. Engineering a native homo-ethanol pathway in Escherichia coli B for ethanol production. Biotechnol Lett 30:335-342.
    • (2008) Biotechnol Lett , vol.30 , pp. 335-342
    • Zhou, S.1    Iverson, A.G.2    Grayburn, W.S.3


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.