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Chorismate mutase

  • Yeast Genome Gazetteer P35-65

    Yeast Genome Gazetteer P35-65

  • Exploring the Chemistry and Evolution of the Isomerases

    Exploring the Chemistry and Evolution of the Isomerases

  • (10) Patent No.: US 8119385 B2

    (10) Patent No.: US 8119385 B2

  • Amino Acid Residue. Chorismate Mutase by Variation of a Single

    Amino Acid Residue. Chorismate Mutase by Variation of a Single

  • O O2 Enzymes Available from Sigma Enzymes Available from Sigma

    O O2 Enzymes Available from Sigma Enzymes Available from Sigma

  • Syntheses of Chorismate Analogs for Investigation of Structural Requirements for Chorismate Mutase

    Syntheses of Chorismate Analogs for Investigation of Structural Requirements for Chorismate Mutase

  • Building Microbial Factories for The

    Building Microbial Factories for The

  • POLSKIE TOWARZYSTWO BIOCHEMICZNE Postępy Biochemii

    POLSKIE TOWARZYSTWO BIOCHEMICZNE Postępy Biochemii

  • Saccharomyces Cerevisiae—An Interesting Producer of Bioactive Plant Polyphenolic Metabolites

    Saccharomyces Cerevisiae—An Interesting Producer of Bioactive Plant Polyphenolic Metabolites

  • The Chemistry and Evolution of Enzyme Function

    The Chemistry and Evolution of Enzyme Function

  • A Glutamate Residue in the Catalytic Center of the Yeast Chorismate

    A Glutamate Residue in the Catalytic Center of the Yeast Chorismate

  • All Enzymes in BRENDA™ the Comprehensive Enzyme Information System

    All Enzymes in BRENDA™ the Comprehensive Enzyme Information System

  • Insight Into the Evolution of Microbial Metabolism from the Deep- 2 Branching Bacterium, Thermovibrio Ammonificans 3 4 5 Donato Giovannelli1,2,3,4*, Stefan M

    Insight Into the Evolution of Microbial Metabolism from the Deep- 2 Branching Bacterium, Thermovibrio Ammonificans 3 4 5 Donato Giovannelli1,2,3,4*, Stefan M

  • Vhe Aromatic Amino Acid Pathway Branches at L-Arogenate In,Uglena Gracilisl7j3, GRAHAM S

    Vhe Aromatic Amino Acid Pathway Branches at L-Arogenate In,Uglena Gracilisl7j3, GRAHAM S

  • Tracing the Repertoire of Promiscuous Enzymes Along the Metabolic Pathways in Archaeal Organisms

    Tracing the Repertoire of Promiscuous Enzymes Along the Metabolic Pathways in Archaeal Organisms

  • (12) Patent Application Publication (10) Pub. No.: US 2015/0240226A1 Mathur Et Al

    (12) Patent Application Publication (10) Pub. No.: US 2015/0240226A1 Mathur Et Al

  • Chapter 14 Essential Questions • Before This Class, Ask Your Self the Following Questions: – How Fast an Enzyme Could Accelerate a Reaction? Reginald H

    Chapter 14 Essential Questions • Before This Class, Ask Your Self the Following Questions: – How Fast an Enzyme Could Accelerate a Reaction? Reginald H

  • From Structure to Function

    From Structure to Function

Top View
  • Springer Handbook of Enzymes
  • Anthranilate Synthase and Chorismate Mutase Activities In
  • Chorismate Mutase – an Introduction to Biological Pericyclic Reactions
  • Electrostatic Transition State Stabilization Rather Than Reactant Destabilization Provides the Chemical Basis for Efficient Chorismate Mutase Catalysis
  • Mechanistic Studies of a Chorismate Mutase from Bacillus Subtilis
  • In Vivo Catalysis of a Metabolically Essential Reaction by an Antibody YING TANG, JAMES B
  • Fig. S1. Phylogenetic Trees Based on the Entire Gene Sequences of Adk
  • Bifunctional Phosphomannose Isomerase/GDP-D-Mannose
  • Emergence of Symbiosis in Peptide Self-Replication Through a Hypercyclic Network the Complete Genome Sequence of the Hyperthermo
  • The Enzyme List Class 5 — Isomerases
  • Regulation of Aromatic Amino Acid Biosynthesis in Higher Plants: I
  • 3. Enzyme Engineering by in Silico Design and in Vivo Selection with the Minimized Amino Acid Set IKEA 25 3.1
  • Chorismate Mutase/Prephenate Dehydratase JENNIFER NELMS,1 R
  • Amino Acid Biosynthesis
  • Supplementaltable S2. Complete Information of Amino Acid Biosynthesis Enzymes in This Study
  • An Alternative Pathway Contributes to Phenylalanine Biosynthesis in Plants Via a Cytosolic Tyrosine:Phenylpyruvate Aminotransferase
  • Evolution-Based Design of Chorismate Mutase Enzymes
  • Biochemical Characterization of Tyra Dehydrogenases from Saccharomyces Cerevisiae


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