Developmental strategies and regulation of cell-free enzyme system for ethanol production: a molecular prospective
暂无分享,去创建一个
S. Khan | M. Ul-Islam | M. Ullah | Minah Kim | W. Khattak | Joong Kon Park | Yeji Kim
[1] S. Khan,et al. Bio-ethanol production through simultaneous saccharification and fermentation using an encapsulated reconstituted cell-free enzyme system , 2014 .
[2] Qi-chun Hu,et al. Direct ethanol production from dextran industrial waste water by Zymomonas mobilis , 2014, Korean Journal of Chemical Engineering.
[3] S. Mudliar,et al. Utilization of lignocellulosic waste for ethanol production : Enzymatic digestibility and fermentation of pretreated shea tree sawdust , 2014, Korean Journal of Chemical Engineering.
[4] Muhammad Wajid Ullah,et al. Yeast cell-free enzyme system for bio-ethanol production at elevated temperatures , 2014 .
[5] A. Saptoro,et al. Oxygen transfer to cassava starch solutions in an aerated, well-mixed bioreactor: Experimental and mass transfer studies , 2014, Korean Journal of Chemical Engineering.
[6] Jiayuan Sheng,et al. Reconstitution of the peptidoglycan cytoplasmic precursor biosynthetic pathway in cell-free system and rapid screening of antisense oligonucleotides for Mur enzymes , 2014, Applied Microbiology and Biotechnology.
[7] H. Ghazali,et al. A comparative study of extraction techniques for maximum recovery of glutamate decarboxylase (GAD) from Aspergillus oryzae NSK , 2013, BMC Research Notes.
[8] S. Kakade,et al. Simulation and optimization of extractive distillation sequence with pre-separator for the ethanol dehydration using n-butyl propionate , 2013, Korean Journal of Chemical Engineering.
[9] M. Ul-Islam,et al. Enhanced production of bioethanol from waste of beer fermentation broth at high temperature through consecutive batch strategy by simultaneous saccharification and fermentation. , 2013, Enzyme and microbial technology.
[10] T. Kasuga,et al. Engineering Escherichia coli for improved ethanol production from gluconate. , 2013, Journal of biotechnology.
[11] Feng-Sheng Wang,et al. Enhanced ethanol production by continuous fermentation in a two-tank system with cell recycling , 2013 .
[12] Sung Ho Ha,et al. Selective recovery of acetone-butanol-ethanol from aqueous mixture by pervaporation using immobilized ionic liquid polydimethylsiloxane membrane , 2013, Korean Journal of Chemical Engineering.
[13] D. Kręgiel,et al. Physiological tests for yeast brewery cells immobilized on modified chamotte carrier , 2013, Antonie van Leeuwenhoek.
[14] Tsz Kin Tam,et al. New biotechnology paradigm: cell-free biosystems for biomanufacturing , 2013 .
[15] Amy C. Kelly,et al. Saccharomyces cerevisiae , 2013, Prion.
[16] Dapeng Sun,et al. Disruption and protein release by ultrasonication of yeast cells , 2013 .
[17] Z. Zhao,et al. Efficient conversion of biomass into lipids by using the simultaneous saccharification and enhanced lipid production process , 2013, Biotechnology for Biofuels.
[18] T. Tan,et al. In vitro assembly of minicellulosomes with two scaffoldins on the yeast cell surface for cellulose saccharification and bioethanol production , 2013 .
[19] Minhee Han,et al. High efficiency bioethanol production from barley straw using a continuous pretreatment reactor , 2013 .
[20] A. Zeng,et al. Proteindesign für die Entwicklung von industriellen Mikroorganismen , 2013, BIOspektrum.
[21] C. You,et al. Self-assembly of synthetic metabolons through synthetic protein scaffolds: one-step purification, co-immobilization, and substrate channeling. , 2013, ACS synthetic biology.
[22] R. Ravikumar,et al. Innovative and intensified technology for the biological pretreatment of agro waste for ethanol production , 2013, Korean Journal of Chemical Engineering.
[23] M. Ul-Islam,et al. Partial purification of saccharifying and cell wall-hydrolyzing enzymes from malt in waste from beer fermentation broth , 2013, Bioprocess and Biosystems Engineering.
[24] Enoch Y. Park,et al. Waste paper sludge as a potential biomass for bio-ethanol production , 2013, Korean Journal of Chemical Engineering.
[25] J. Liao,et al. Protein-based biorefining: metabolic engineering for production of chemicals and fuel with regeneration of nitrogen fertilizers , 2013, Applied Microbiology and Biotechnology.
[26] Steffen Rupp,et al. Next‐generation bioproduction systems: Cell‐free conversion concepts for industrial biotechnology , 2013 .
[27] Pamela A Silver,et al. Designing biological compartmentalization. , 2012, Trends in cell biology.
[28] M. Ul-Islam,et al. Prospects of reusable endogenous hydrolyzing enzymes in bioethanol production by simultaneous saccharification and fermentation , 2012, Korean Journal of Chemical Engineering.
[29] T. Hasunuma,et al. Consolidated bioprocessing and simultaneous saccharification and fermentation of lignocellulose to ethanol with thermotolerant yeast strains , 2012 .
[30] C. You,et al. Facilitated substrate channeling in a self-assembled trifunctional enzyme complex. , 2012, Angewandte Chemie.
[31] M. C. Edwards,et al. Pectin-rich biomass as feedstock for fuel ethanol production , 2012, Applied Microbiology and Biotechnology.
[32] M. Jewett,et al. Cell-free synthetic biology: thinking outside the cell. , 2012, Metabolic engineering.
[33] Young Soo Kim,et al. Comparison of bioethanol production of simultaneous saccharification & fermentation and separation hydrolysis & fermentation from cellulose-rich barley straw , 2012, Korean Journal of Chemical Engineering.
[34] T. Selwood,et al. Dynamic dissociating homo-oligomers and the control of protein function. , 2012, Archives of biochemistry and biophysics.
[35] M. Dunn. Allosteric regulation of substrate channeling and catalysis in the tryptophan synthase bienzyme complex. , 2012, Archives of biochemistry and biophysics.
[36] Jianfeng Xu,et al. Eastern gamagrass as an alternative cellulosic feedstock for bioethanol production , 2012 .
[37] P. Silver,et al. Modularity of a carbon-fixing protein organelle , 2011, Proceedings of the National Academy of Sciences.
[38] editor-in-chief E.M.T. El-Mansi,et al. Fermentation microbiology and biotechnology , 2011 .
[39] Alexander Sczyrba,et al. High-throughput in vitro glycoside hydrolase (HIGH) screening for enzyme discovery. , 2011, Angewandte Chemie.
[40] M. Taherzadeh,et al. Ethanol production at elevated temperatures using encapsulation of yeast. , 2011, Journal of biotechnology.
[41] Perrin Baker,et al. Investigating the molecular determinants for substrate channeling in BphI-BphJ, an aldolase-dehydrogenase complex from the polychlorinated biphenyls degradation pathway. , 2011, Biochemistry.
[42] M. Elsner,et al. A specific fluorescence probe for hydrogen peroxide detection in peroxisomes , 2011, Free radical research.
[43] L. Szweda,et al. α-Ketoglutarate dehydrogenase: A mitochondrial redox sensor , 2011, Free radical research.
[44] R. Simpson. Disruption of cultured cells by nitrogen cavitation. , 2010, Cold Spring Harbor protocols.
[45] A. Cavalli,et al. Insights into protein-protein and enzyme-substrate interactions in modular polyketide synthases. , 2010, Chemistry & biology.
[46] Marco Rito-Palomares,et al. Aqueous two-phase systems strategies for the recovery and characterization of biological products from plants. , 2010, Journal of the science of food and agriculture.
[47] O. Byron,et al. Solution Structure and Characterisation of the Human Pyruvate Dehydrogenase Complex Core Assembly , 2010, Journal of molecular biology.
[48] D. Hakobyan,et al. Molecular dynamics study of interaction and substrate channeling between neuron‐specific enolase and B‐type phosphoglycerate mutase , 2010, Proteins.
[49] Mingzhi Liang,et al. Synthesis of empty bacterial microcompartments, directed organelle protein incorporation, and evidence of filament-associated organelle movement. , 2010, Molecular cell.
[50] Abdul Waheed,et al. Metabolon catalyzed pyruvate/air biofuel cell. , 2010, Journal of the American Chemical Society.
[51] J. Mccammon,et al. Channeling by Proximity: The Catalytic Advantages of Active Site Colocalization Using Brownian Dynamics , 2010, The journal of physical chemistry letters.
[52] Y.‐H.P. Zhang,et al. Production of biocommodities and bioelectricity by cell-free synthetic enzymatic pathway biotransformations: challenges and opportunities. , 2010, Biotechnology and bioengineering.
[53] Daniel C. Ducat,et al. Insulation of a synthetic hydrogen metabolism circuit in bacteria , 2010, Journal of biological engineering.
[54] Harish Kumar,et al. Enzymes in Food Processing: Fundamentals and Potential Applications , 2010 .
[55] S. Yokoyama,et al. Production of functional bacteriorhodopsin by an Escherichia coli cell‐free protein synthesis system supplemented with steroid detergent and lipid , 2009, Protein science : a publication of the Protein Society.
[56] Cheryl A Kerfeld,et al. Identification and structural analysis of a novel carboxysome shell protein with implications for metabolite transport. , 2009, Journal of molecular biology.
[57] Soong Ho Um,et al. A cell-free protein-producing gel. , 2009, Nature materials.
[58] Itamar Willner,et al. Enzyme cascades activated on topologically programmed DNA scaffolds. , 2009, Nature nanotechnology.
[59] Y.-H. Percival Zhang,et al. A sweet out-of-the-box solution to the hydrogen economy: is the sugar-powered car science fiction? , 2009 .
[60] I. Bahar,et al. Molecular simulations elucidate the substrate translocation pathway in a glutamate transporter , 2009, Proceedings of the National Academy of Sciences.
[61] Madhavan Nallani,et al. A three-enzyme cascade reaction through positional assembly of enzymes in a polymersome nanoreactor. , 2009, Chemistry.
[62] Michael C Jewett,et al. An integrated cell-free metabolic platform for protein production and synthetic biology , 2008, Molecular systems biology.
[63] Markus J. Herrgård,et al. A consensus yeast metabolic network reconstruction obtained from a community approach to systems biology , 2008, Nature Biotechnology.
[64] Jeffrey D Varner,et al. Engineering the spatial organization of metabolic enzymes: mimicking nature's synergy. , 2008, Current opinion in biotechnology.
[65] T. Bobik,et al. Microcompartments for B12-Dependent 1,2-Propanediol Degradation Provide Protection from DNA and Cellular Damage by a Reactive Metabolic Intermediate , 2008, Journal of bacteriology.
[66] Alberto Diaspro,et al. Protein synthesis in liposomes with a minimal set of enzymes. , 2007, Biochemical and biophysical research communications.
[67] Michael Ladisch,et al. Loosening lignin's grip on biofuel production , 2007, Nature Biotechnology.
[68] P. Soucaille,et al. Evolution of a Saccharomyces cerevisiae metabolic pathway in Escherichia coli. , 2007, Metabolic engineering.
[69] Anoop Singh,et al. Ethanol as an alternative fuel from agricultural, industrial and urban residues , 2007 .
[70] Eric J. Allain,et al. Cell-free ethanol production: the future of fuel ethanol? , 2007 .
[71] G. Stephanopoulos,et al. Engineering Yeast Transcription Machinery for Improved Ethanol Tolerance and Production , 2006, Science.
[72] George M Church,et al. Synthetic biology projects in vitro. , 2006, Genome research.
[73] M. Millar,et al. Comparison of DNA extraction methods for Aspergillus fumigatus using real-time PCR. , 2006, Journal of medical microbiology.
[74] L. Betancor,et al. Coimmobilization of a redox enzyme and a cofactor regeneration system. , 2006, Chemical communications.
[75] U. Krings,et al. A Comparison of Cell Wall Disruption Techniques for the Isolation of Intracellular Metabolites from Pleurotus and Lepista sp. , 2006, Zeitschrift fur Naturforschung. C, Journal of biosciences.
[76] J. Swartz,et al. Total amino acid stabilization during cell-free protein synthesis reactions. , 2006, Journal of biotechnology.
[77] Roger A. Sheldon,et al. Synthesis of enantiomerically pure (S)-mandelic acid using an oxynitrilase–nitrilase bienzymatic cascade: a nitrilase surprisingly shows nitrile hydratase activity , 2006 .
[78] J. Swartz,et al. Energizing cell-free protein synthesis with glucose metabolism. , 2005, Biotechnology and bioengineering.
[79] W. H. Mager,et al. Yeast as a model for medical and medicinal research. , 2005, Trends in pharmacological sciences.
[80] Zemer Gitai,et al. The New Bacterial Cell Biology: Moving Parts and Subcellular Architecture , 2005, Cell.
[81] L. Lynd,et al. Toward an aggregated understanding of enzymatic hydrolysis of cellulose: Noncomplexed cellulase systems , 2004, Biotechnology and bioengineering.
[82] B. Luisi,et al. A Molecular Switch and Proton Wire Synchronize the Active Sites in Thiamine Enzymes , 2004, Science.
[83] Sven Panke,et al. Trends and innovations in industrial biocatalysis for the production of fine chemicals. , 2004, Current opinion in biotechnology.
[84] Ibrahim M. Banat,et al. Immobilization technologies and support materials suitable in alcohol beverages production: a review , 2004 .
[85] Zsófia Kádár,et al. Simultaneous saccharification and fermentation (SSF) of industrial wastes for the production of ethanol , 2004 .
[86] Roy H. Doi,et al. Cellulosomes: plant-cell-wall-degrading enzyme complexes , 2004, Nature Reviews Microbiology.
[87] Habibollah Younesi,et al. Ethanol fermentation in an immobilized cell reactor using Saccharomyces cerevisiae. , 2004, Bioresource technology.
[88] M. Schweizer,et al. Metabolism and Molecular Physiology of Saccharomyces Cerevisiae, 2nd Edition , 2004 .
[89] Dan S. Tawfik,et al. Directed evolution of an extremely fast phosphotriesterase by in vitro compartmentalization , 2003, The EMBO journal.
[90] Michael Q. Wang,et al. The Energy Balance of Corn Ethanol: An Update , 2002 .
[91] E. Sergienko,et al. New model for activation of yeast pyruvate decarboxylase by substrate consistent with the alternating sites mechanism: demonstration of the existence of two active forms of the enzyme. , 2002, Biochemistry.
[92] Takuya Ueda,et al. Cell-free translation reconstituted with purified components , 2001, Nature Biotechnology.
[93] V. Pancholi,et al. Multifunctional α-enolase: its role in diseases , 2001, Cellular and Molecular Life Sciences CMLS.
[94] P. Herrero,et al. The hexokinase 2 protein regulates the expression of the GLK1, HXK1 and HXK2 genes of Saccharomyces cerevisiae. , 2001, The Biochemical journal.
[95] D. Porro,et al. Alterations of the glucose metabolism in a triose phosphate isomerase‐negative Saccharomyces cerevisiae mutant , 2001, Yeast.
[96] Barbara M. Bakker,et al. Can yeast glycolysis be understood in terms of in vitro kinetics of the constituent enzymes? Testing biochemistry. , 2000, European journal of biochemistry.
[97] M. Hewlins,et al. An Investigation of the Metabolism of Isoleucine to Active Amyl Alcohol in Saccharomyces cerevisiae * , 2000, The Journal of Biological Chemistry.
[98] G. Schneider,et al. The structural basis of substrate activation in yeast pyruvate decarboxylase. A crystallographic and kinetic study. , 2000, European journal of biochemistry.
[99] Y Endo,et al. A highly efficient and robust cell-free protein synthesis system prepared from wheat embryos: plants apparently contain a suicide system directed at ribosomes. , 2000, Proceedings of the National Academy of Sciences of the United States of America.
[100] S. Oliver,et al. Disruption of seven hypothetical aryl alcohol dehydrogenase genes from Saccharomyces cerevisiae and construction of a multiple knock‐out strain , 1999, Yeast.
[101] M. Schweizer,et al. The metabolism and molecular physiology of Saccharomyces cerevisiae , 1998 .
[102] S. Lindquist,et al. Multiple effects of trehalose on protein folding in vitro and in vivo. , 1998, Molecular cell.
[103] J. Pronk,et al. Pyruvate Decarboxylase Catalyzes Decarboxylation of Branched-Chain 2-Oxo Acids but Is Not Essential for Fusel Alcohol Production by Saccharomyces cerevisiae , 1998, Applied and Environmental Microbiology.
[104] J. Heinisch,et al. Investigation of two yeast genes encoding putative isoenzymes of phosphoglycerate mutase , 1998, Yeast.
[105] Stefan Hohmann,et al. Yeast Stress Responses , 1997, Topics in Current Genetics.
[106] Y. M. Elçin. Encapsulation of urease enzyme in xanthan-alginate spheres. , 1995, Biomaterials.
[107] J C Bischof,et al. Dynamics of cell membrane permeability changes at supraphysiological temperatures. , 1995, Biophysical journal.
[108] C. Martínez-Campa,et al. Transcriptional regulation of the Saccharomyces cerevisiae HXK1, HXK2 and GLK1 genes , 1995, Yeast.
[109] T. D'amore,et al. Physiological effects of yeast cell immobilization Applications for brewing , 1994 .
[110] K. Melzoch,et al. Effect of immobilization upon the properties and behaviour of Saccharomyces cerevisiae cells , 1994 .
[111] Henry Kelly,et al. Renewable energy : sources for fuels and electricity , 1993 .
[112] Robert T. Marshall,et al. Microentrapment of Lactobacilli in Calcium Alginate Gels , 1993 .
[113] Henry Kelly,et al. Renewable Fuels and Electricity for a Growing World Economy: Defining and Achieving the Potential , 1993 .
[114] Jie Xu,et al. Characterization of Ethanol Production from Xylose and Xylitol by a Cell-Free Pachysolen tannophilus System , 1993, Applied and environmental microbiology.
[115] E W Scott,et al. Concerted action of the transcriptional activators REB1, RAP1, and GCR1 in the high-level expression of the glycolytic gene TPI , 1993, Molecular and cellular biology.
[116] C. Diviès,et al. Cream fermentation by a mixed culture of lactococci entrapped in two-layer calcium alginate gel beads , 1992, Biotechnology Letters.
[117] Lionel Choplin,et al. Effect of agitation rate on cell release rate and metabolism during continuous fermentation with entrapped growing , 1992 .
[118] A. Brown,et al. Yeast glycolytic mRNAs are differentially regulated , 1991, Molecular and cellular biology.
[119] R. Borstel,et al. Sequence and localization of the gene encoding yeast phosphoglycerate mutase , 1991, Current Genetics.
[120] K. Breddam,et al. Acceleration of yeast autolysis by chemical methods for production of intracellular enzymes , 1991, Applied Microbiology and Biotechnology.
[121] K. S. Lam,et al. Enzymatic digestion of spent yeast cells for nutrient recycling in inulase production , 1990, Journal of Industrial Microbiology.
[122] G. Santangelo,et al. Efficient transcription of the glycolytic gene ADH1 and three translational component genes requires the GCR1 product, which can act through TUF/GRF/RAP binding sites , 1990, Molecular and cellular biology.
[123] C. Hollenberg,et al. pdc1(0) mutants of Saccharomyces cerevisiae give evidence for an additional structural PDC gene: cloning of PDC5, a gene homologous to PDC1 , 1990, Journal of bacteriology.
[124] A. Chambers,et al. Transcriptional control of the Saccharomyces cerevisiae PGK gene by RAP1 , 1989, Molecular and cellular biology.
[125] K. Mosbach,et al. Construction of an artificial bifunctional enzyme, beta-galactosidase/galactose dehydrogenase, exhibiting efficient galactose channeling. , 1989, Biochemistry.
[126] Y. Teranishi,et al. Identification of an upstream activating sequence and an upstream repressible sequence of the pyruvate kinase gene of the yeast Saccharomyces cerevisiae , 1989, Molecular and cellular biology.
[127] P. Tekamp-Olson,et al. The isolation, characterization and nucleotide sequence of the phosphoglucoisomerase gene of Saccharomyces cerevisiae. , 1988, Gene.
[128] B. Hartley,et al. The structure and regulation of phosphoglucose isomerase in Saccharomyces cerevisiae , 1988, Molecular and General Genetics MGG.
[129] C. Diviès,et al. Fresh fermented cheese production with continuous pre-fermented milk by a mixed culture of mesophilic lactic streptococci entrapped in Ca-Al ginate , 1987, Biotechnology Letters.
[130] T. Klaenhammer,et al. Calcium alginate-immobilized cultures of lactic Streptococci are protected from bacteriophages. , 1987, Journal of dairy science.
[131] C. Hollenberg,et al. Analysis of the primary structure and promoter function of a pyruvate decarboxylase gene (PDC1) from Saccharomyces cerevisiae. , 1986, Nucleic acids research.
[132] S. Ainsworth,et al. The regulatory properties of yeast pyruvate kinase. Effect of fructose 1,6-bisphosphate. , 1986, The Biochemical journal.
[133] M. Holland,et al. Differential expression of the three yeast glyceraldehyde-3-phosphate dehydrogenase genes. , 1985, The Journal of biological chemistry.
[134] K. Mosbach,et al. Preparation of a Soluble Bifunctional Enzyme by Gene Fusion , 1985, Bio/Technology.
[135] Robert K. Scopes,et al. Studies on cell-free metabolism: Ethanol production by a yeast glycolytic system reconstituted from purified enzymes , 1985 .
[136] Z. Lobo. Saccharomyces cerevisiae aldolase mutants , 1984, Journal of bacteriology.
[137] S. Ainsworth,et al. The regulatory properties of yeast pyruvate kinase. , 1984, The Biochemical journal.
[138] P Loane,et al. Ethanol: an alternative fuel , 1983 .
[139] D. Fraenkel,et al. Cloning of genes that complement yeast hexokinase and glucokinase mutants , 1983, Journal of bacteriology.
[140] K. Mosbach,et al. Site-to-site directed immobilization of enzymes with bis-NAD analogues. , 1983, Proceedings of the National Academy of Sciences of the United States of America.
[141] J. Ferguson,et al. mRNA levels for the fermentative alcohol dehydrogenase of Saccharomyces cerevisiae decrease upon growth on a nonfermentable carbon source. , 1983, The Journal of biological chemistry.
[142] P. Seeburg,et al. The primary structure of the Saccharomyces cerevisiae gene for 3-phosphoglycerate kinase. , 1982, Nucleic acids research.
[143] D. Fraenkel,et al. Cloning of yeast glycolysis genes by complementation. , 1982, Biochemical and biophysical research communications.
[144] M. Holland,et al. Targeted deletion of a yeast enolase structural gene. Identification and isolation of yeast enolase isozymes. , 1982, The Journal of biological chemistry.
[145] R. Bartrons,et al. The stimulation of yeast phosphofructokinase by fructose 2,6‐bisphosphate , 1982, FEBS letters.
[146] M. Holland,et al. The primary structures of two yeast enolase genes. Homology between the 5' noncoding flanking regions of yeast enolase and glyceraldehyde-3-phosphate dehydrogenase genes. , 1981, The Journal of biological chemistry.
[147] M. Holland,et al. Structural comparison of two nontandemly repeated yeast glyceraldehyde-3-phosphate dehydrogenase genes. , 1980, The Journal of biological chemistry.
[148] M. Ciriacy,et al. Physiological Effects of Seven Different Blocks in Glycolysis in Saccharomyces cerevisiae , 1979, Journal of bacteriology.
[149] P. Maitra,et al. Resistance to 2-deoxyglucose in yeast: A direct selection of mutants lacking glucose-phosphorylating enzymes , 1977, Molecular and General Genetics MGG.
[150] P. Maitra,et al. Yeast pyruvate kinase: a mutant from catalytically insensitive to fructose 1,6-bisphosphate. , 1977, European journal of biochemistry.
[151] B. Hess,et al. FDP-activation of yeast pyruvate kinase. , 1966, Biochemical and biophysical research communications.
[152] E. Martz. A centrifuge for rapid concentration of large fragile cells without extensive lysis. , 1966, The Journal of protozoology.
[153] Marina Bosch,et al. Molecular Cell Biology 4th Edition , 2016 .
[154] S. Goldberg. Mechanical/physical methods of cell distribution and tissue homogenization. , 2015, Methods in molecular biology.
[155] Y.‐H.P. Zhang,et al. Cell-free Biosystems in the Production of Electricity and Bioenergy. , 2013, Advances in biochemical engineering/biotechnology.
[156] Chun You,et al. Cell-free biosystems for biomanufacturing. , 2013, Advances in biochemical engineering/biotechnology.
[157] A. Zeng,et al. Compartmentalization and metabolic channeling for multienzymatic biosynthesis: practical strategies and modeling approaches. , 2013, Advances in biochemical engineering/biotechnology.
[158] S. W. Kim,et al. Lipase from Penicillium camembertii KCCM 11268: Optimization of solid state fermentation and application to biodiesel production , 2012, Korean Journal of Chemical Engineering.
[159] S. Borgne. Genetic engineering of industrial strains of Saccharomyces cerevisiae. , 2012 .
[160] Congcong Lu,et al. Butanol Production from Lignocellulosic Feedstocks by Acetone-Butanol-Ethanol Fermentation with Integrated Product Recovery , 2011 .
[161] K. Ratanapongleka. Recovery of Biological Products in Aqueous Two Phase Systems , 2010 .
[162] D. Park,et al. Improvement of Ethanol Production by Electrochemical Redox Combination of Zymomonas mobilis and Saccharomyces cerevisiae , 2010 .
[163] M. Moo-young,et al. Ethanol fermentation technologies from sugar and starch feedstocks. , 2008, Biotechnology advances.
[164] S. Goldberg. Mechanical/physical methods of cell disruption and tissue homogenization. , 2008, Methods in molecular biology.
[165] F. Zimmermann,et al. Isolation and molecular analysis of the phosphoglucose isomerase structural gene of Saccharomyces cerevisiae , 2004, Molecular and General Genetics MGG.
[166] Jack T. Pronk,et al. Kinetics of growth and sugar consumption in yeasts , 2004, Antonie van Leeuwenhoek.
[167] K. Morano,et al. The yeast response to heat shock , 2003 .
[168] A Zaks,et al. Industrial biocatalysis. , 2001, Current opinion in chemical biology.
[169] V. Pancholi,et al. Multifunctional alpha-enolase: its role in diseases. , 2001, Cellular and molecular life sciences : CMLS.
[170] Akif Uzman,et al. Molecular Cell Biology (4th edition): Harvey Lodish, Arnold Berk, S. Lawrence Zipursky, Paul Matsudaira, David Baltimore and James Darnell; Freeman & Co., New York, NY, 2000, 1084 pp., list price $102.25, ISBN 0-7167-3136-3 , 2001 .
[171] H. Izumida,et al. Continuous ethanol fermentation in molasses medium using Zymomonas mobilis immobilized in photo-crosslinkable resin gels , 1993 .
[172] Mine K. Yücel,et al. Methanol as an alternative fuel , 1990 .
[173] H. Watson,et al. The phosphoglycerate mutases. , 1989, Advances in enzymology and related areas of molecular biology.
[174] T. Klaenhammer,et al. CALCIUM ALGINATE - IMMOBILIZED CULTURES OF LACTIC STREPTOCOCCI ARE PROTECTED FROM ATTACK BY LYTIC BACTERIOPHAGE , 1987 .
[175] H. Lodish. Molecular Cell Biology , 1986 .
[176] D. Fraenkel,et al. Glycolysis mutants in Saccharomyces cerevisiae. , 1978, Genetics.
[177] B. Hess,et al. Purification and allosteric properties of yeast pyruvate kinase. , 1968, Hoppe-Seyler's Zeitschrift fur physiologische Chemie.
[178] L. Riche. Enzymes in foods. , 1946 .
[179] E. Buchner,et al. Alkoholische Gährung ohne Hefezellen , 1898 .