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4-Chloro-2-(trifluoromethyl)-5,6,7,8-tetrahydropyrido[3,4-d]pyrimidine | CAS:647863-08-9
4-Chloro-2-(trifluoromethyl)-5,6,7,8-tetrahydropyrido[3,4-d]pyrimidine
  • 名称:4-氯-2-(三氟甲基)-5,6,7,8-四氢吡啶并[3,4-d]嘧啶 | 4-Chloro-2-(trifluoromethyl)-5,6,7,8-tetrahydropyrido[3,4-d]pyrimidine
  • CAS号:647863-08-9
  • 别名:
  • 分子式:C8H7ClF3N3
  • 分子量:237.61
  • EINESC号:

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Purification and mechanism of action of sucrose phosphorylase.R Silverstein et al.The Journal of biological chemistry, 242(6), 1338-1346 (1967-03-25) Structural rearrangements of sucrose phosphorylase from Bifidobacterium adolescentis during sucrose conversionMirza O, et al. Test (2006) Structural rearrangements of sucrose phosphorylase from Bifidobacterium adolescentis during sucrose conversionMirza O, et al. The Journal of biological chemistry (2006) Levansucrase and sucrose phoshorylase contribute to raffinose, stachyose, and verbascose metabolism by lactobacilli.Januana S Teixeira et al.Food microbiology, 31(2), 278-284 (2012-05-23) Positively charged mini-protein Zbasic2 as a highly efficient silica binding module: opportunities for enzyme immobilization on unmodified silica supports.Juan M Bolivar et al.Langmuir : the ACS journal of surfaces and colloids, 28(26), 10040-10049 (2012-06-07) Transglucosylation potential of six sucrose phosphorylases toward different classes of acceptors.Dirk Aerts et al.Carbohydrate research, 346(13), 1860-1867 (2011-07-30) Single-step enzymatic synthesis of (R)-2-O-alpha-D-glucopyranosyl glycerate, a compatible solute from micro-organisms that functions as a protein stabiliser.Thornthan Sawangwan et al.Organic & biomolecular chemistry, 7(20), 4267-4270 (2009-10-02) Increasing the thermostability of sucrose phosphorylase by a combination of sequence- and structure-based mutagenesis.An Cerdobbel et al.Protein engineering, design & selection : PEDS, 24(11), 829-834 (2011-09-09) Dissecting differential binding of fructose and phosphate as leaving group/nucleophile of glucosyl transfer catalyzed by sucrose phosphorylase.Mario Mueller et al.FEBS letters, 581(20), 3814-3818 (2007-07-31) Cloning and expression of the sucrose phosphorylase gene in Bacillus subtilis and synthesis of kojibiose using the recombinant enzymeWangM, et al Microbial cell factories, 17(1), 23-23 (2018) Enzyme assays with boronic acid appended bipyridinium salts.Boaz Vilozny et al.Analytica chimica acta, 649(2), 246-251 (2009-08-25) Regioselective O-glucosylation by sucrose phosphorylase: a promising route for functional diversification of a range of 1,2-propanediols.Christiane Luley-Goedl et al.Carbohydrate research, 345(12), 1736-1740 (2010-07-06) Phosphorolytic cleavage of sucrose by sucrose-grown ruminal bacterium Pseudobutyrivibrio ruminis strain k3.K Stan-Glasek et al.Folia microbiologica, 55(4), 383-385 (2010-08-04) Mechanistic differences among retaining disaccharide phosphorylases: insights from kinetic analysis of active site mutants of sucrose phosphorylase and alpha,alpha-trehalose phosphorylase.Christiane Goedl et al.Carbohydrate research, 343(12), 2032-2040 (2008-03-19) Sucrose phosphorylase of the rumen bacterium Pseudobutyrivibrio ruminis strain A.A Kasperowicz et al.Journal of applied microbiology, 107(3), 812-820 (2009-03-27) Structural rearrangements of sucrose phosphorylase from Bifidobacterium adolescentis during sucrose conversionMirza O, et al. The Journal of Biological Chemistry (2006) Sucrose phosphorylase harbouring a redesigned, glycosyltransferase-like active site exhibits retaining glucosyl transfer in the absence of a covalent intermediate.Christiane Goedl et al.Chembiochem : a European journal of chemical biology, 10(14), 2333-2337 (2009-08-20) Functional characterization of sucrose phosphorylase and scrR, a regulator of sucrose metabolism in Lactobacillus reuteri.Januana S Teixeira et al.Food microbiology, 36(2), 432-439 (2013-09-10) Enzymatic synthesis of sucrose and other disaccharides.W Z HASSID et al.Advances in carbohydrate chemistry, 5, 29-48 (1950-01-01) Increasing the thermostability of sucrose phosphorylase by multipoint covalent immobilization.An Cerdobbel et al.Journal of biotechnology, 150(1), 125-130 (2010-08-10) Aromatic interactions at the catalytic subsite of sucrose phosphorylase: their roles in enzymatic glucosyl transfer probed with Phe52→Ala and Phe52→Asn mutants.Patricia Wildberger et al.FEBS letters, 585(3), 499-504 (2011-01-12) Genotypic variation in water-soluble carbohydrate accumulation in wheatRuuska SA, et al. Functional plant biology, 33(9), 799-809 (2006) Small-molecule glucosylation by sucrose phosphorylase: structure-activity relationships for acceptor substrates revisited.Christiane Luley-Goedl et al.Carbohydrate research, 345(10), 1492-1496 (2010-04-27) Recombinant sucrose phosphorylase from Leuconostoc mesenteroides: characterization, kinetic studies of transglucosylation, and application of immobilised enzyme for production of alpha-D-glucose 1-phosphate.Christiane Goedl et al.Journal of biotechnology, 129(1), 77-86 (2007-01-12) A new method of synthesis of alkyl beta-glycosides using sucrose as sugar donor.Kuniki Kino et al.Bioscience, biotechnology, and biochemistry, 72(9), 2415-2417 (2008-09-09) A novel sucrose phosphorylase from the metagenomes of sucrose-rich environment: isolation and characterization.Liqin Du et al.World journal of microbiology & biotechnology, 28(9), 2871-2878 (2012-07-19) Cloning and expression of the sucrose phosphorylase gene from Leuconostoc mesenteroides in Escherichia coli.Jin-Ha Lee et al.Biotechnology letters, 30(4), 749-754 (2007-11-27) Consensus engineering of sucrose phosphorylase: the outcome reflects the sequence input.Dirk Aerts et al.Biotechnology and bioengineering, 110(10), 2563-2572 (2013-04-25) In vitro metabolic engineering of hydrogen production at theoretical yield from sucroseMyung S, et al. Metabolic engineering, 24, 70-77 (2014) Acid-base catalysis in Leuconostoc mesenteroides sucrose phosphorylase probed by site-directed mutagenesis and detailed kinetic comparison of wild-type and Glu237-->Gln mutant enzymes.Alexandra Schwarz et al.The Biochemical journal, 403(3), 441-449 (2007-01-20) Sucrose phosphorylase as cross-linked enzyme aggregate: improved thermal stability for industrial applications.An Cerdobbel et al.Biotechnology journal, 5(11), 1192-1197 (2010-09-28) Glucosylation of acetic acid by sucrose phosphorylase.Koji Nomura et al.Bioscience, biotechnology, and biochemistry, 72(1), 82-87 (2008-01-08) Enzymatic synthesis of stable, odorless, and powdered furanone glucosides by sucrose phosphorylase.S Kitao et al.Bioscience, biotechnology, and biochemistry, 64(1), 134-141 (2000-03-08) Novel transglucosylating reaction of sucrose phosphorylase to carboxylic compounds such as benzoic acid.Kazuhisa Sugimoto et al.Journal of bioscience and bioengineering, 104(1), 22-29 (2007-08-19) One-pot enzymatic production of beta-D-galactopyranosyl-(1-->3)-2-acetamido-2-deoxy-D-galactose (galacto-N-biose) from sucrose and 2-acetamido-2-deoxy-D-galactose (N-acetylgalactosamine).Mamoru Nishimoto et al.Carbohydrate research, 344(18), 2573-2576 (2009-10-24) β-Fructofuranosidase and sucrose phosphorylase of rumen bacterium Pseudobutyrivibrio ruminis strain 3.Anna Kasperowicz et al.World journal of microbiology & biotechnology, 28(3), 1271-1279 (2012-07-19) The role of Asp-295 in the catalytic mechanism of Leuconostoc mesenteroides sucrose phosphorylase probed with site-directed mutagenesis.Mario Mueller et al.FEBS letters, 581(7), 1403-1408 (2007-03-14)
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