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2005(Appl. Microbiol. Biotechnol., 67: 215-224)Multiple mutagenesis of the Candida rugosa LIP1 gene and optimum production of recombinant LIP1 expressed in Pichia pastorisChang, S. W.; C. J. Shieh; G. C. Lee; J. F. Shaw; 國立中興大學食品暨生物科技學系-
2001(Archives Biochem. Biophys., 387: 093-098)Recombinant expression and characterization of the Candida Rugosa Lip4 lipase in Pichia pastoris: Comparison of glycosylation, activity and stabilityTang, S. J.; J. F. Shaw; K. H. Sun; G. H. Sun; T. Y. Chang; C. K. Lin; Y. C. Lo; G. C. Lee; 國立中興大學食品暨生物科技學系-
2004Biochemical Properties and Potential Use of a Novel Recombinant Thermostable Lipase from A. fulgidusG. C. Lee; Y. F. Ho; J. F. Shaw; 國立中興大學食品暨生物科技學系-
2002Biotechnology of Candida rugosa lipaseG. C. Lee; L. C. Lee; J. F. Shaw; 中央研究院植物學研究所-
2002(Dedication for 40 Year-Anniversary of IBAS. A4., p20)Multiple mutagenesis of nonuniversal serine cordons of Candida rugosa Lip2 gene and the biochemical characterization of the purified recombinant LIP2 lipase overexpressed in Pichia pastorisdG. C. Lee; L. C. Lee; V. Sava; J. F. Shaw; 中央研究院植物學研究所-
2006(J. Agric. Food Chem., 54(19):7098-7104)Gene cloning, expression, and biochemical characterization of a recombinant trehalose synthase from Picrophilus torridus in Escherichia coliChen Y. S.; G. C. Lee; J. F. Shaw; 國立中興大學食品暨生物科技學系-
2006(J. Agric. Food Chem., 54:5175-5181)Candida rugosa lipase LIP1-catalyzed transesterification to produce human milk fat substituteSrivastava A.; C. C. Akoh; S. W. Chang; G. C. Lee; J. F. Shaw; 國立中興大學食品暨生物科技學系
2006(J. Agric. Food Chem., 54:5831-5838)Efficient Production of Active Recombinant Candida rugosa LIP3 Lipase in Pichia pastoris and Biochemical Characterization of the Purified EnzymeChang S. W.; G. C. Lee; J. F. Shaw; 國立中興大學食品暨生物科技學系
2007(J. Agric. Food Chem., 55(22):8995-9005)Enzymatic approach to biodiesel productionAkoh, C. C.; S. W. Chang; G. C. Lee; J. F. Shaw; 國立中興大學食品暨生物科技學系-
2007(J. Agric. Food Chem., 55(9):3435-3443)Role of the C-terminal domain of thermus thermophilus trehalose Synthase in the thermophilicity, thermostability, and efficient production of trehaloseWang, J. H.; M. Y. Tsai; J. J. Chen; G. C. Lee; J. F. Shaw; 國立中興大學食品暨生物科技學系
2007(J. Agric. Food Chem., 55:1256-1263)Construction of a recombinant thermostable?b-amylase-trehalose synthase bifunctional enzyme for facilitating the conversion of starch to trehaloseWang, J. H.; M. Y. Tsai; G. C. Lee; J. F. Shaw; 國立中興大學食品暨生物科技學系
2006(J. Mol. Microbiol. Biotechnol., 11:028-040)Optimized Growth kinetics of Pichia pastoris and Recombinant Candida rugosa LIP1 Production by RSMChang, S. W.; C. J. Shieh; G. C. Lee; C. C. Akoh; J. F. Shaw; 國立中興大學食品暨生物科技學系-
2004(Lipids, 39(6): 513-526)Protein Engineering and Applications of Candida rugosa Lipase IsoformsAkoh, C. C.; G. C. Lee; J. F. Shaw; 國立中興大學食品暨生物科技學系-
2004(Progress in Lipid Research, 43(6): 534-552)GDSL Family of Serine Esterases/LipasesAkoh, C. C.; G. C. Lee; Y. C. Liaw; T. H. Huang; J. F. Shaw; 國立中興大學食品暨生物科技學系-
2000Protein engineering of Candida rugosa lipasesG. C. Lee; S. J. Tang; J. F. Shaw; 中央研究院植物學研究所-
2000(Symposium on Plant Sciences for 21st Century. B4., p33)Gene Regulation and functional expression of the gene family encoding lipase in Candida rugosaG. C. Lee; K. H. Hsu; L. C. Lee; J. F. Shaw; 中央研究院植物學研究所-