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Polyhydroxybutyrate production in halophilic marine bacteria Vibrio proteolyticus isolated from the Korean peninsula.
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- Bioprocess & Biosystems Engineering, 2019, v. 42, n. 4, p. 603, doi. 10.1007/s00449-018-02066-6
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- Article
The role of NdgR in glycerol metabolism in Streptomyces coelicolor.
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- Bioprocess & Biosystems Engineering, 2017, v. 40, n. 10, p. 1573, doi. 10.1007/s00449-017-1813-z
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- Article
Application of acetyl-CoA acetyltransferase (AtoAD) in Escherichia coli to increase 3-hydroxyvalerate fraction in poly(3-hydroxybutyrate- co-3-hydroxyvalerate).
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- Bioprocess & Biosystems Engineering, 2017, v. 40, n. 5, p. 781, doi. 10.1007/s00449-017-1743-9
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- Article
Downfield chemical shifts at α-protons and carbons of β-propiothiolactones.
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- Magnetic Resonance in Chemistry, 2000, v. 38, n. 6, p. 468, doi. 10.1002/1097-458X(200006)38:6<468::AID-MRC675>3.0.CO;2-F
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- Article
Engineering aromatic L-amino acid transaminase for the asymmetric synthesis of constrained analogs of L-phenylalanine.
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- Biotechnology & Bioengineering, 2006, v. 94, n. 5, p. 842, doi. 10.1002/bit.20902
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Enzymatic resolution for the preparation of enantiomerically enriched D-β-heterocyclic alanine derivatives using Escherichia coli aromatic L-amino acid transaminase.
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- Biotechnology & Bioengineering, 2004, v. 88, n. 4, p. 512, doi. 10.1002/bit.20280
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- Article
Deletion of an architectural unit, leucyl aminopeptidase (SCO2179), in Streptomyces coelicolor increases actinorhodin production and sporulation.
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- Applied Microbiology & Biotechnology, 2013, v. 97, n. 15, p. 6823, doi. 10.1007/s00253-013-4847-4
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- Article
Characterization of a new ScbR-like γ-butyrolactone binding regulator (SlbR) in Streptomyces coelicolor.
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- Applied Microbiology & Biotechnology, 2012, v. 96, n. 1, p. 113, doi. 10.1007/s00253-011-3803-4
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- Article
Inactivation of phosphomannose isomerase gene abolishes sporulation and antibiotic production in Streptomyces coelicolor.
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- Applied Microbiology & Biotechnology, 2012, v. 93, n. 4, p. 1685, doi. 10.1007/s00253-011-3581-z
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- Article
Furanone derivatives as quorum-sensing antagonists of Pseudomonas aeruginosa.
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- Applied Microbiology & Biotechnology, 2008, v. 80, n. 1, p. 37, doi. 10.1007/s00253-008-1474-6
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Exploring sequence space: Profile analysis and protein-ligand docking to screen ω-aminotransferases with expanded substrate specificity.
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- Biotechnology Journal, 2008, v. 3, n. 5, p. 676, doi. 10.1002/biot.200700264
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- Article
Expanding substrate specificity of GT-B fold glycosyltransferase via domain swapping and high-throughput screening.
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- Biotechnology & Bioengineering, 2009, v. 102, n. 4, p. 988, doi. 10.1002/bit.22150
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- Article
Redesigning the substrate specificity of ω-aminotransferase for the kinetic resolution of aliphatic chiral amines.
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- Biotechnology & Bioengineering, 2008, v. 99, n. 2, p. 275, doi. 10.1002/bit.21591
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Production of Low Molecular Weight P(3HB-co-3HV) by Butyrateacetoacetate CoA-transferase (cftAB) in Escherichia coli.
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- Biotechnology & Bioprocess Engineering, 2020, v. 25, n. 2, p. 279, doi. 10.1007/s12257-019-0366-1
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Whole-cell Immobilization of Engineered Escherichia coli JY001 with Barium-alginate for Itaconic Acid Production.
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- Biotechnology & Bioprocess Engineering, 2018, v. 23, n. 4, p. 442, doi. 10.1007/s12257-018-0170-3
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Structural basis for the substrate specificity of 3-hydroxybutyrate dehydrogenase.
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- Biotechnology & Bioprocess Engineering, 2016, v. 21, n. 3, p. 364, doi. 10.1007/s12257-016-0233-2
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- Article
Effect of His-tag location on the catalytic activity of 3-hydroxybutyrate dehydrogenase.
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- Biotechnology & Bioprocess Engineering, 2014, v. 19, n. 5, p. 798, doi. 10.1007/s12257-014-0089-2
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- Article
Lipase catalyzed reaction of L-ascorbic acid with cinnamic acid esters and substituted cinnamic acids.
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- Biotechnology & Bioprocess Engineering, 2012, v. 17, n. 1, p. 50, doi. 10.1007/s12257-011-0071-1
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Aminotransferase-catalyzed asymmetric synthesis of benazepril intermediate.
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- Biotechnology & Bioprocess Engineering, 2011, v. 16, n. 4, p. 625, doi. 10.1007/s12257-011-0066-y
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- Article
Putative Role of a Streptomyces coelicolor-Derived α-Mannosidase in Deglycosylation and Antibiotic Production.
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- Applied Biochemistry & Biotechnology, 2014, v. 172, n. 3, p. 1639, doi. 10.1007/s12010-013-0635-y
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Identification and Functional Characterization of an α-Amylase with Broad Temperature and pH Stability from Paenibacillus sp.
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- Applied Biochemistry & Biotechnology, 2013, v. 170, n. 2, p. 359, doi. 10.1007/s12010-013-0197-z
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High-Throughput Identification of Substrate Specificity for Protein Kinase by Using an Improved One-Bead-One-Compound Library Approach.
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- Angewandte Chemie International Edition, 2007, v. 46, n. 28, p. 5408, doi. 10.1002/anie.200700195
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- Article