메뉴 건너뛰기




Volumn 27, Issue , 2015, Pages 107-114

Simultaneous production of butanol and acetoin by metabolically engineered Clostridium acetobutylicum

Author keywords

Acetoin; Acetolactate decarboxylase; AlsR; Clostridium acetobutylicum; HydA; Redox balance

Indexed keywords

CLOSTRIDIUM; FERMENTATION; GENES; METABOLIC ENGINEERING;

EID: 84914149151     PISSN: 10967176     EISSN: 10967184     Source Type: Journal    
DOI: 10.1016/j.ymben.2014.11.002     Document Type: Article
Times cited : (38)

References (39)
  • 1
    • 0001441208 scopus 로고
    • Effect of butanol challenge and temperature on lipid composition and membrane fluidity of butanol-tolerant Clostridium acetobutylicum
    • Baer S.H., Blaschek H.P., Smith T.L. Effect of butanol challenge and temperature on lipid composition and membrane fluidity of butanol-tolerant Clostridium acetobutylicum. Appl. Environ. Microbiol. 1987, 53:2854-2861.
    • (1987) Appl. Environ. Microbiol. , vol.53 , pp. 2854-2861
    • Baer, S.H.1    Blaschek, H.P.2    Smith, T.L.3
  • 2
    • 84857861039 scopus 로고    scopus 로고
    • Allosteric regulation in Acetohydroxyacid Synthases (AHASs) - different structures and kinetic behavior in isozymes in the same organisms
    • Barak Z., Chipman D.M. Allosteric regulation in Acetohydroxyacid Synthases (AHASs) - different structures and kinetic behavior in isozymes in the same organisms. Arch. Biochem. Biophys. 2012, 519:167-174.
    • (2012) Arch. Biochem. Biophys. , vol.519 , pp. 167-174
    • Barak, Z.1    Chipman, D.M.2
  • 3
    • 80051685660 scopus 로고    scopus 로고
    • Improving the Clostridium acetobutylicum butanol fermentation by engineering the strain for co-production of riboflavin
    • Cai X.P., Bennett G.N. Improving the Clostridium acetobutylicum butanol fermentation by engineering the strain for co-production of riboflavin. J. Ind. Microbiol. Biotechnol. 2011, 38:1013-1025.
    • (2011) J. Ind. Microbiol. Biotechnol. , vol.38 , pp. 1013-1025
    • Cai, X.P.1    Bennett, G.N.2
  • 4
    • 84871173865 scopus 로고    scopus 로고
    • Simultaneous production of isopropanol, butanol, ethanol and 2,3-butanediol by Clostridium acetobutylicum ATCC 824 engineered strains
    • Collas F., Kuit W., Clément B., Marchal R., López-Contreras A.M., Monot F. Simultaneous production of isopropanol, butanol, ethanol and 2,3-butanediol by Clostridium acetobutylicum ATCC 824 engineered strains. AMB Express 2012, 2:45.
    • (2012) AMB Express , vol.2 , pp. 45
    • Collas, F.1    Kuit, W.2    Clément, B.3    Marchal, R.4    López-Contreras, A.M.5    Monot, F.6
  • 5
    • 84869014233 scopus 로고    scopus 로고
    • Targeted mutagenesis of the Clostridium acetobutylicum acetone-butanol-ethanol fermentation pathway
    • Cooksley C.M., Zhang Y., Wang H., Redl S., Winzer K., Minton N.P. Targeted mutagenesis of the Clostridium acetobutylicum acetone-butanol-ethanol fermentation pathway. Metab. Eng. 2012, 14:630-641.
    • (2012) Metab. Eng. , vol.14 , pp. 630-641
    • Cooksley, C.M.1    Zhang, Y.2    Wang, H.3    Redl, S.4    Winzer, K.5    Minton, N.P.6
  • 6
    • 84862772588 scopus 로고    scopus 로고
    • Introducing a single secondary alcohol dehydrogenase into butanol-tolerant Clostridium acetobutylicum Rh8 switches ABE fermentation to high level IBE fermentation
    • Dai Z.J., Dong H.J., Zhu Y., Zhang Y.P., Li Y., Ma Y.H. Introducing a single secondary alcohol dehydrogenase into butanol-tolerant Clostridium acetobutylicum Rh8 switches ABE fermentation to high level IBE fermentation. Biotechnol. Biofuels 2012, 5:44.
    • (2012) Biotechnol. Biofuels , vol.5 , pp. 44
    • Dai, Z.J.1    Dong, H.J.2    Zhu, Y.3    Zhang, Y.P.4    Li, Y.5    Ma, Y.H.6
  • 7
    • 0033156380 scopus 로고    scopus 로고
    • Metabolic flux analysis elucidates the importance of the acid-formation pathways in regulating solvent production by Clostridium acetobutylicum
    • Desai R.P., Harris L.M., Welker N.E., Papoutsakis E.T. Metabolic flux analysis elucidates the importance of the acid-formation pathways in regulating solvent production by Clostridium acetobutylicum. Metab. Eng. 1999, 1:206-213.
    • (1999) Metab. Eng. , vol.1 , pp. 206-213
    • Desai, R.P.1    Harris, L.M.2    Welker, N.E.3    Papoutsakis, E.T.4
  • 8
    • 0022077020 scopus 로고
    • Agitation and pressure effects on acetone-butanol fermentation
    • Doremus M.G., Linden J.C., Moreira A.R. Agitation and pressure effects on acetone-butanol fermentation. Biotechnol. Bioeng. 1984, 27:852-860.
    • (1984) Biotechnol. Bioeng. , vol.27 , pp. 852-860
    • Doremus, M.G.1    Linden, J.C.2    Moreira, A.R.3
  • 9
    • 84857870558 scopus 로고    scopus 로고
    • The transcription factor AlsR binds and regulates the promoter of the alsSD operon responsible for acetoin formation in Bacillus subtilis
    • Fradrich C., March A., Fiege K., Hartmann A., Jahn D., Hartig E. The transcription factor AlsR binds and regulates the promoter of the alsSD operon responsible for acetoin formation in Bacillus subtilis. J. Bacteriol. 2012, 194:1100-1112.
    • (2012) J. Bacteriol. , vol.194 , pp. 1100-1112
    • Fradrich, C.1    March, A.2    Fiege, K.3    Hartmann, A.4    Jahn, D.5    Hartig, E.6
  • 12
    • 0021153497 scopus 로고
    • Uptake and activation of acetate and butyrate in Clostridium acetobutylicum
    • Hartmanis M.G.N., Klason T., Gatenbeck S. Uptake and activation of acetate and butyrate in Clostridium acetobutylicum. Appl. Microbiol. Biotechnol. 1984, 20:66-71.
    • (1984) Appl. Microbiol. Biotechnol. , vol.20 , pp. 66-71
    • Hartmanis, M.G.N.1    Klason, T.2    Gatenbeck, S.3
  • 15
    • 68049142960 scopus 로고    scopus 로고
    • Disruption of the acetoacetate decarboxylase gene in solvent-producing Clostridium acetobutylicum increases the butanol ratio
    • Jiang Y., Xu C., Dong F., Yang Y., Jiang W., Yang S. Disruption of the acetoacetate decarboxylase gene in solvent-producing Clostridium acetobutylicum increases the butanol ratio. Metab. Eng. 2009, 11:284-291.
    • (2009) Metab. Eng. , vol.11 , pp. 284-291
    • Jiang, Y.1    Xu, C.2    Dong, F.3    Yang, Y.4    Jiang, W.5    Yang, S.6
  • 16
    • 0022970603 scopus 로고
    • Acetone-butanol fermentation revisited
    • Jones D.T., Woods D.R. Acetone-butanol fermentation revisited. Microbiol. Rev. 1986, 50:484-524.
    • (1986) Microbiol. Rev. , vol.50 , pp. 484-524
    • Jones, D.T.1    Woods, D.R.2
  • 17
    • 22144484496 scopus 로고    scopus 로고
    • Dual regulation of genes involved in acetoin biosynthesis and motility/biofilm formation by the virulence activator AphA and the acetate-responsive LysR-type regulator AlsR in Vibrio cholerae
    • Kovacikova G., Lin W., Skorupski K. Dual regulation of genes involved in acetoin biosynthesis and motility/biofilm formation by the virulence activator AphA and the acetate-responsive LysR-type regulator AlsR in Vibrio cholerae. Mol. Microbiol. 2005, 57:420-433.
    • (2005) Mol. Microbiol. , vol.57 , pp. 420-433
    • Kovacikova, G.1    Lin, W.2    Skorupski, K.3
  • 20
    • 84892451287 scopus 로고    scopus 로고
    • Engineering of carboligase activity reaction in Candida glabrata for acetoin production
    • Li S., Xu N., Liu L., Chen J. Engineering of carboligase activity reaction in Candida glabrata for acetoin production. Metab. Eng. 2014, 22:32-39.
    • (2014) Metab. Eng. , vol.22 , pp. 32-39
    • Li, S.1    Xu, N.2    Liu, L.3    Chen, J.4
  • 23
    • 58949097886 scopus 로고    scopus 로고
    • Structure and function of the LysR-type transcriptional regulator (LTTR) family proteins
    • Maddocks S.E., Oyston P.C. Structure and function of the LysR-type transcriptional regulator (LTTR) family proteins. Microbiology 2008, 154:3609-3623.
    • (2008) Microbiology , vol.154 , pp. 3609-3623
    • Maddocks, S.E.1    Oyston, P.C.2
  • 24
    • 0029084565 scopus 로고
    • Identification of the transcriptional activator controlling the butanediol fermentation pathway in Klebsiella terrigena
    • Mayer D., Schlensog V., Bock A. Identification of the transcriptional activator controlling the butanediol fermentation pathway in Klebsiella terrigena. J. Bacteriol. 1995, 177:5261-5269.
    • (1995) J. Bacteriol. , vol.177 , pp. 5261-5269
    • Mayer, D.1    Schlensog, V.2    Bock, A.3
  • 25
    • 0027477171 scopus 로고
    • In vivo methylation in Escherichia coli by the Bacillus subtilis phage phi 3 T I methyltransferase to protect plasmids from restriction upon transformation of Clostridium acetobutylicum ATCC824
    • Mermelstein L.D., Papoutsakis E.T. In vivo methylation in Escherichia coli by the Bacillus subtilis phage phi 3 T I methyltransferase to protect plasmids from restriction upon transformation of Clostridium acetobutylicum ATCC824. Appl. Environ. Microbiol. 1993, 59:1077-1081.
    • (1993) Appl. Environ. Microbiol. , vol.59 , pp. 1077-1081
    • Mermelstein, L.D.1    Papoutsakis, E.T.2
  • 26
    • 14744283496 scopus 로고
    • Expression of cloned homologous fermentative genes in Clostridium acetobutylicum ATCC 824
    • Mermelstein L.D., Welker N.E., Bennett G.N., Papoutsakis E.T. Expression of cloned homologous fermentative genes in Clostridium acetobutylicum ATCC 824. Biotechnology 1992, 10:190-195.
    • (1992) Biotechnology , vol.10 , pp. 190-195
    • Mermelstein, L.D.1    Welker, N.E.2    Bennett, G.N.3    Papoutsakis, E.T.4
  • 27
    • 79960094999 scopus 로고    scopus 로고
    • Integrated Regulation of Acetoin Fermentation by Quorum Sensing and pH in Serratia plymuthica RVH1
    • Moons P., Van Houdt R., Vivijs B., Michiels C.M., Aertsen A. Integrated Regulation of Acetoin Fermentation by Quorum Sensing and pH in Serratia plymuthica RVH1. Appl. Environ. Microbiol. 2011, 77:3422-3427.
    • (2011) Appl. Environ. Microbiol. , vol.77 , pp. 3422-3427
    • Moons, P.1    Van Houdt, R.2    Vivijs, B.3    Michiels, C.M.4    Aertsen, A.5
  • 29
    • 0028143740 scopus 로고
    • Metabolic flexibility of Clostridium acetobutylicum in response to methyl viologen
    • Peguin S., Goma G., Delorme P., Soucaille P. Metabolic flexibility of Clostridium acetobutylicum in response to methyl viologen. Appl. Microbiol. Biotechnol. 1994, 42:611-616.
    • (1994) Appl. Microbiol. Biotechnol. , vol.42 , pp. 611-616
    • Peguin, S.1    Goma, G.2    Delorme, P.3    Soucaille, P.4
  • 30
    • 77955660471 scopus 로고    scopus 로고
    • Identification and inactivation of pleiotropic regulator CcpA to eliminate glucose repression of xylose utilization in Clostridium acetobutylicum
    • Ren C., Gu Y., Hu S., Wu Y., Wang P., Yang Y., Yang C., Yang S., Jiang W. Identification and inactivation of pleiotropic regulator CcpA to eliminate glucose repression of xylose utilization in Clostridium acetobutylicum. Metab. Eng. 2010, 12:446-454.
    • (2010) Metab. Eng. , vol.12 , pp. 446-454
    • Ren, C.1    Gu, Y.2    Hu, S.3    Wu, Y.4    Wang, P.5    Yang, Y.6    Yang, C.7    Yang, S.8    Jiang, W.9
  • 31
    • 0027167447 scopus 로고
    • Regulation of the Bacillus subtilis alsS, alsD, and alsR genes involved in post-exponential-phase production of acetoin
    • Renna M.C., Najimudin N., Winik L.R., Zahler S.A. Regulation of the Bacillus subtilis alsS, alsD, and alsR genes involved in post-exponential-phase production of acetoin. J. Bacteriol. 1993, 175:3863-3875.
    • (1993) J. Bacteriol. , vol.175 , pp. 3863-3875
    • Renna, M.C.1    Najimudin, N.2    Winik, L.R.3    Zahler, S.A.4
  • 32
    • 84886418081 scopus 로고    scopus 로고
    • Synthesis of 2, 3-butanediol by Synechocystis sp. PCC6803 via heterologous expression of a catabolic pathway from lactic acid- and enterobacteria
    • Savakis P.E., Angermayr S.A., Hellingwerf K.J. Synthesis of 2, 3-butanediol by Synechocystis sp. PCC6803 via heterologous expression of a catabolic pathway from lactic acid- and enterobacteria. Metab. Eng. 2013, 20:121-130.
    • (2013) Metab. Eng. , vol.20 , pp. 121-130
    • Savakis, P.E.1    Angermayr, S.A.2    Hellingwerf, K.J.3
  • 34
    • 84872154202 scopus 로고    scopus 로고
    • Improving butanol fermentation to enter the advanced biofuel market
    • e00518-12
    • Tracy B.P. Improving butanol fermentation to enter the advanced biofuel market. mBio 2012, 3:e00518-12.
    • (2012) mBio , vol.3
    • Tracy, B.P.1
  • 36
    • 77749245897 scopus 로고    scopus 로고
    • A novel whole-cell biocatalyst with NAD+ regeneration for production of chiral chemicals
    • Xiao Z., Lv C., Gao C., Qin J., Ma C., Liu Z., Liu P., Li L., Xu P. A novel whole-cell biocatalyst with NAD+ regeneration for production of chiral chemicals. PLoS One 2010, 5:e8860.
    • (2010) PLoS One , vol.5 , pp. e8860
    • Xiao, Z.1    Lv, C.2    Gao, C.3    Qin, J.4    Ma, C.5    Liu, Z.6    Liu, P.7    Li, L.8    Xu, P.9
  • 37
    • 34250166461 scopus 로고    scopus 로고
    • Acetoin Metabolism in Bacteria
    • Xiao Z.J., Xu P. Acetoin Metabolism in Bacteria. Crit. Rev. Microbiol. 2007, 33:127-140.
    • (2007) Crit. Rev. Microbiol. , vol.33 , pp. 127-140
    • Xiao, Z.J.1    Xu, P.2
  • 38
    • 84896847314 scopus 로고    scopus 로고
    • Systematic metabolic engineering of Escherichia coli for high-yield production of fuel bio-chemical 2,3-butanediol
    • Xu Y., Chu H., Gao C., Tao F., Zhou Z., Li K., Li L., Ma C., Xu P. Systematic metabolic engineering of Escherichia coli for high-yield production of fuel bio-chemical 2,3-butanediol. Metab. Eng. 2014, 23:22-33.
    • (2014) Metab. Eng. , vol.23 , pp. 22-33
    • Xu, Y.1    Chu, H.2    Gao, C.3    Tao, F.4    Zhou, Z.5    Li, K.6    Li, L.7    Ma, C.8    Xu, P.9
  • 39
    • 84896881649 scopus 로고    scopus 로고
    • The rebalanced pathway significantly enhances acetoin production by disruption of acetoin reductase gene and moderate-expression of a new water-forming NADH oxidase in Bacillus subtilis
    • Zhang X., Zhang R., Bao T., Rao Z., Yang T., Xu M., Xu Z., Li H., Yang S. The rebalanced pathway significantly enhances acetoin production by disruption of acetoin reductase gene and moderate-expression of a new water-forming NADH oxidase in Bacillus subtilis. Metab. Eng. 2014, 23:34-41.
    • (2014) Metab. Eng. , vol.23 , pp. 34-41
    • Zhang, X.1    Zhang, R.2    Bao, T.3    Rao, Z.4    Yang, T.5    Xu, M.6    Xu, Z.7    Li, H.8    Yang, S.9


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.