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Catalytic triad

  • Part One Amino Acids As Building Blocks

    Part One Amino Acids As Building Blocks

  • CUMMINGS-DISSERTATION.Pdf (4.094Mb)

    CUMMINGS-DISSERTATION.Pdf (4.094Mb)

  • Structural Enzymology of Sulfide Oxidation by Persulfide Dioxygenase and Rhodanese

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  • Proteolytic Cleavage—Mechanisms, Function

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  • Intrinsic Evolutionary Constraints on Protease Structure, Enzyme

    Intrinsic Evolutionary Constraints on Protease Structure, Enzyme

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  • Solutions to Problem Set 9 (PDF)

    Solutions to Problem Set 9 (PDF)

  • Crystal Structure of Bacterial Cystathionine -Lyase in The

    Crystal Structure of Bacterial Cystathionine -Lyase in The

  • Families and Clans of Cysteine Peptidases

    Families and Clans of Cysteine Peptidases

  • The Efficiency of Enzymatic L-Cysteine Oxidation in Mammalian Systems Derives from the Optimal Organization of the Active Site of Cysteine Dioxygenase

    The Efficiency of Enzymatic L-Cysteine Oxidation in Mammalian Systems Derives from the Optimal Organization of the Active Site of Cysteine Dioxygenase

  • The Role of Active-Site Aromatic and Polar Residues in Catalysis And

    The Role of Active-Site Aromatic and Polar Residues in Catalysis And

  • Repurposing the Mcoti-II Rigid Molecular Scaffold in to Inhibitor of ‘Papain Superfamily’ Cysteine Proteases

    Repurposing the Mcoti-II Rigid Molecular Scaffold in to Inhibitor of ‘Papain Superfamily’ Cysteine Proteases

  • A Disulfide-Stabilized Conformer of Methionine Synthase Reveals an Unexpected Role for the Histidine Ligand of the Cobalamin Cofactor

    A Disulfide-Stabilized Conformer of Methionine Synthase Reveals an Unexpected Role for the Histidine Ligand of the Cobalamin Cofactor

  • Serine Proteases Enrico Di Cera Department of Biochemistry and Molecular Biophysics, Washington University School of Medicine, Box 8231, St

    Serine Proteases Enrico Di Cera Department of Biochemistry and Molecular Biophysics, Washington University School of Medicine, Box 8231, St

  • Unexpected Lipase-Catalysed Deprotection of N-Acyl Amino Acids 91

    Unexpected Lipase-Catalysed Deprotection of N-Acyl Amino Acids 91

  • Papain-Like Proteases: Applications of Their Inhibitors

    Papain-Like Proteases: Applications of Their Inhibitors

  • Understanding the Relationship Between Enzyme Structure and Catalysis

    Understanding the Relationship Between Enzyme Structure and Catalysis

  • Critical Steps in Methionine Biosynthesis

    Critical Steps in Methionine Biosynthesis

Top View
  • Beta;-Lactone Natural Products and Derivatives Inactivate
  • III. Metabolism Fatty Acid Catabolism
  • BIOINFORMATICS DOI: 10.1093/Bioinformatics/Bth912
  • Molecular Mechanisms of Enzyme Activation by Monovalent Cations*
  • Identification, Classification and Expression Pattern Analysis of Sugarcane Cysteine Proteinases
  • Reversed Proteolysis—Proteases As Peptide Ligases
  • Designed to Mimic Trypsin (Protein Design/Serine Proteases/Synthetic Peptides) JAMES A
  • Therapeutic Proteases from Plants: Biopharmaceuticals with Multiple Applications
  • Enoyl Thioester Reductases—Enzymes of Fatty Acid Synthesis and Degradation in Mitochondria
  • Midterm II Guide for Chem109c (Kahn, Spring 2007) Midterm II Will
  • Papain, a Plant Enzyme of Biological Importance: a Review
  • Recognition of Active and Inactive Catalytic Triads: a Template Based Approach
  • Catalytic Triad of A-Lytic Protease (13C NMR/Enzyme Mechanisms/Biosynthetic Isotopic Enrichment/Histidine Auxotroph/Charge-Relay System) WILLIAM W
  • The Geometry and Evolution of Catalytic Sites and Metal Binding Sites
  • Occurrence and Properties of Proteases in Plant Latices
  • Serine Proteases Substrate Specificity
  • Catalytic Properties of the Caspases
  • Chapter 25 LIPID METABOLISM


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