Multi Step Enzyme Catalysis Biotransformations and Chemoenzymatic Synthesis 1st Edition by Eduardo Garcia Junceda – Ebook PDF Instant Download/Delivery: 3527319212, 9783527319213
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Product details:
ISBN 10: 3527319212
ISBN 13: 9783527319213
Author: Eduardo Garcia Junceda
Multi Step Enzyme Catalysis Biotransformations and Chemoenzymatic Synthesis 1st Table of contents:
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1. Asymmetric Transformations by Coupled Enzyme and Metal Catalysis: Dynamic Kinetic Resolution
- 1.1 Introduction
- 1.2 Some Fundamentals for DKR
- 1.3 Enzymes for Kinetic Resolution
- 1.4 Metal Catalysts for Racemization
- 1.5 Enzyme-Metal Combination for DKR
- 1.6 Conclusions
- References
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2. Chemoenzymatic Routes to Enantiomerically Pure Amino Acids and Amines
- 2.1 Introduction
- 2.2 Amino Acids
- 2.3 Amines
- References
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3. Oxidizing Enzymes in Multi-Step Biotransformation Processes
- 3.1 Oxidizing Enzymes in Biocatalysis
- 3.2 Classes of Oxidizing Enzymes
- 3.3 Mechanisms of Biological Oxidation and Implications for Multi-Enzyme Biocatalysis
- 3.4 Multi-Step Biotransformation Processes Involving Oxidation
- 3.5 Design and Development of New Multi-Enzyme Oxidizing Processes
- 3.6 Examples of Multi-Enzyme Biotransformation Processes Involving Oxidation
- References
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4. Aldolases Catalyzed C–C Bond Formation in the Core of Multi-Step Processes
- 4.1 Introduction
- 4.2 DHAP-Dependent Aldolases
- 4.3 Fructose-6-Phosphate Aldolase: An Alternative to DHAP-Dependent Aldolases?
- 4.4 Combined Use of Aldolases and Isomerases for the Synthesis of Natural and Unnatural Sugars
- 4.5 Conclusions
- References
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5. Multi-Enzyme Systems for the Synthesis of Glycoconjugates
- 5.1 Introduction
- 5.2 In Vitro and In Vivo Multi-Enzyme Systems
- 5.3 Combinatorial Biocatalysis
- 5.4 Synthesis and In Situ Regeneration of Nucleotide Sugars
- 5.5 Synthesis of Oligosaccharides, Glycopeptides and Glycolipids
- 5.6 Combinatorial Biosynthesis
- 5.7 Synthesis of Oligosaccharides with Metabolically Engineered Cells
- 5.8 Conclusions
- References
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6. Enzyme-Catalyzed Cascade Reactions
- 6.1 Introduction
- 6.2 Enzyme Immobilization
- 6.3 Reaction Types: General Considerations
- 6.4 Chiral Alcohols
- 6.5 Chiral Amines
- 6.6 Chiral Carboxylic Acid Derivatives
- 6.7 C–C Bond Formation: Aldolases
- 6.8 Oxidations with O2 and H2O2
- 6.9 Conclusions and Prospects
- References
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7. Multi-modular Synthases as Tools of the Synthetic Chemist
- 7.1 Introduction
- 7.2 Excised Domains for Chemical Transformations
- 7.3 Conclusions
- References
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8. Modifying the Glycosylation Pattern in Actinomycetes by Combinatorial Biosynthesis
- 8.1 Bioactive Natural Products in Actinomycetes
- 8.2 Deoxy Sugar Biosynthesis and Gene Clusters
- 8.3 Characterization of Sugar Biosynthesis Enzymes
- 8.4 Strategies for the Generation of Novel Glycosylated Derivatives
- 8.5 Generation of Glycosylated Derivatives of Bioactive Compounds
- References
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9. Microbial Production of DNA Building Blocks
- 9.1 Introduction
- 9.2 Screening of Acetaldehyde-Tolerant Deoxyriboaldolase and Its Application for DR5P Synthesis
- 9.3 Construction of Deoxyriboaldolase-Overexpressing E. coli as a Whole-Cell Catalyst
- 9.4 Biochemical Retrosynthesis of 2′-Deoxyribonucleosides from Glucose, Acetaldehyde and a Nucleobase: Three-Step Multi-Enzyme-Catalyzed Synthesis
- 9.5 One-Pot Multi-Step Enzymatic Synthesis of 2′-Deoxyribonucleoside from Glucose, Acetaldehyde and a Nucleobase
- 9.6 Improvement of the One-Pot Multi-Step Enzymatic Process for Practical Production of 2′-Deoxyribonucleoside from Glucose, Acetaldehyde and a Nucleobase
- 9.7 Conclusions
- References
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10. Combination of Biocatalysis and Chemical Catalysis for the Preparation of Pharmaceuticals Through Multi-Step Syntheses
- 10.1 Introduction: Biocatalysis and Chemical Catalysis
- 10.2 Pharmaceuticals with Hydrolases
- 10.3 Pharmaceuticals with Oxidoreductases
- 10.4 Pharmaceuticals with Lyases
- 10.5 Conclusions
- References
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