Page last updated: 2024-08-17

histidine and phenylglyoxal

histidine has been researched along with phenylglyoxal in 19 studies

Research

Studies (19)

TimeframeStudies, this research(%)All Research%
pre-19905 (26.32)18.7374
1990's11 (57.89)18.2507
2000's3 (15.79)29.6817
2010's0 (0.00)24.3611
2020's0 (0.00)2.80

Authors

AuthorsStudies
Schuldiner, S; Stern-Bach, Y; Suchi, R1
Cheon, HG; Hanna, PE1
Davis, JP; Van Etten, RL; Zhang, ZY1
Caine, JM; McLeish, MJ1
Rao, NA; Vijayalakshmi, D1
Kim, YS; Park, C1
Holohan, PD; Ross, CR; Sokol, PP1
Davis, DJ; Vieira, BJ1
Appaji Rao, N; Manohar, R1
Everson, B; Jentoft, J; Ratnoff, OD; Ryder, J1
Antón, LC; Barrio, E; Gavilanes, F; Marqués, G; Ruiz, S; Sánchez, A; Vivanco, F1
Andersson, C; Bergman, T; Ekström, L; Morgenstern, R; Raza, H; Weinander, R1
Bjerrum, MJ; Borders, CL; Oliver, SG; Schirmer, MA1
Guan, H; Imparl-Radosevich, JM; Keeling, PL1
Kim, H; Yang, CH1
Deyrup, AT; Krishnan, S; Lyle, S; Schwartz, NB; Singh, B1
Baringhaus, KH; Corsiero, D; Girbig, F; König, W; Kramer, W; Kurz, M; Lange, G; Sauber, K; Stengelin, S; Weyland, C1
Adak, S; Bandyopadhyay, D; Bandyopadhyay, U; Banerjee, RK1
Bollettini, M; Lupidi, G; Marmocchi, F; Rotilio, G; Venardi, G1

Other Studies

19 other study(ies) available for histidine and phenylglyoxal

ArticleYear
Modification of arginyl or histidyl groups affects the energy coupling of the amine transporter.
    Biochemistry, 1992, Dec-15, Volume: 31, Issue:49

    Topics: Animals; Arginine; Biogenic Amines; Biological Transport; Diethyl Pyrocarbonate; Glycoproteins; Histidine; Hydrogen-Ion Concentration; In Vitro Techniques; Ketanserin; Membrane Glycoproteins; Membrane Transport Proteins; Neuropeptides; Phenylglyoxal; Reserpine; Structure-Activity Relationship; Vesicular Biogenic Amine Transport Proteins

1992
Effect of group-selective modification reagents on arylamine N-acetyltransferase activities.
    Biochemical pharmacology, 1992, May-28, Volume: 43, Issue:10

    Topics: Animals; Arginine; Arylamine N-Acetyltransferase; Binding Sites; Cricetinae; Cysteine; Diethyl Pyrocarbonate; Enzyme Activation; Ethylmaleimide; Histidine; Hydroxylamine; Hydroxylamines; Liver; Male; Mesocricetus; Phenylglyoxal

1992
Covalent modification and active site-directed inactivation of a low molecular weight phosphotyrosyl protein phosphatase.
    Biochemistry, 1992, Feb-18, Volume: 31, Issue:6

    Topics: Animals; Arginine; Arsenicals; Binding Sites; Binding, Competitive; Cattle; Cyclohexanones; Cysteine; Epoxy Compounds; Glutathione; Histidine; Hydrogen-Ion Concentration; Iodoacetamide; Iodoacetates; Iodoacetic Acid; Kinetics; Molecular Weight; Phenylglyoxal; Protein Tyrosine Phosphatases

1992
Chemical modification of PABA synthase.
    Biochemistry international, 1991, Volume: 24, Issue:6

    Topics: Arginine; Cysteine; Diethyl Pyrocarbonate; Escherichia coli; Folic Acid; Histidine; Iodoacetamide; Phenylglyoxal; Sulfhydryl Reagents; Tetranitromethane; Transaminases; Tyrosine

1991
Identification of amino acid residues at the active site of human liver serine hydroxymethyltransferase.
    Biochemistry international, 1989, Volume: 19, Issue:3

    Topics: Amino Acids; Arginine; Binding Sites; Bromosuccinimide; Diethyl Pyrocarbonate; Glycine Hydroxymethyltransferase; Histidine; Humans; Hydroxylamine; Hydroxylamines; Liver; Phenylglyoxal; Transferases; Tryptophan

1989
Inactivation of Acinetobacter calcoaceticus acetate kinase by diethylpyrocarbonate.
    Biochimica et biophysica acta, 1988, Sep-21, Volume: 956, Issue:2

    Topics: 4-Chloromercuribenzenesulfonate; Acetate Kinase; Acinetobacter; Binding Sites; Diethyl Pyrocarbonate; Dithionitrobenzoic Acid; Ethylmaleimide; Formates; Histidine; Hydrogen-Ion Concentration; Kinetics; Phenylglyoxal; Phosphotransferases

1988
Arginyl and histidyl groups are essential for organic anion exchange in renal brush-border membrane vesicles.
    The Journal of biological chemistry, 1988, May-25, Volume: 263, Issue:15

    Topics: Aldehydes; Animals; Arginine; Butanones; Diacetyl; Diethyl Pyrocarbonate; Dithiothreitol; Dogs; Formates; Histidine; Hydroxylamine; Hydroxylamines; Kidney Cortex; Kinetics; Microvilli; p-Aminohippuric Acid; Phenylglyoxal

1988
Interaction of ferredoxin with ferredoxin:NADP reductase: effects of chemical modification of ferredoxin.
    Archives of biochemistry and biophysics, 1986, May-15, Volume: 247, Issue:1

    Topics: Arginine; Chemical Phenomena; Chemistry; Ethyldimethylaminopropyl Carbodiimide; Ferredoxin-NADP Reductase; Ferredoxins; Glycine; Histidine; NADH, NADPH Oxidoreductases; Phenylglyoxal; Plants

1986
Identification of active-site residues of sheep liver serine hydroxymethyltransferase.
    The Biochemical journal, 1984, Dec-15, Volume: 224, Issue:3

    Topics: Animals; Arginine; Binding Sites; Cysteine; Diethyl Pyrocarbonate; Ethylmaleimide; Glycine Hydroxymethyltransferase; Histidine; Kinetics; Liver; Phenylglyoxal; Sheep; Spectrophotometry; Transferases

1984
The effect of chemical modification of basic amino acid residues on the activation and amidolytic activity of Hageman factor (factor XII).
    The Journal of laboratory and clinical medicine, 1993, Volume: 122, Issue:6

    Topics: Amides; Amino Acids; Arginine; Diethyl Pyrocarbonate; Factor XII; Factor XIIa; Histidine; Humans; Lysine; Phenylglyoxal; Serum Albumin, Bovine; Structure-Activity Relationship; Trinitrobenzenesulfonic Acid

1993
Arginine residues of the globular regions of human C1q involved in the interaction with immunoglobulin G.
    The Journal of biological chemistry, 1993, May-15, Volume: 268, Issue:14

    Topics: Amino Acid Sequence; Animals; Antigen-Antibody Complex; Arginine; Binding Sites, Antibody; Chromatography, High Pressure Liquid; Complement C1q; Cyclohexanones; Diethyl Pyrocarbonate; Histidine; Humans; Hydroxylamine; Hydroxylamines; Immunoglobulin G; Kinetics; Macromolecular Substances; Molecular Sequence Data; Peptide Fragments; Phenylglyoxal; Protein Conformation; Rabbits

1993
Structural and functional aspects of rat microsomal glutathione transferase. The roles of cysteine 49, arginine 107, lysine 67, histidine, and tyrosine residues.
    The Journal of biological chemistry, 1997, Apr-04, Volume: 272, Issue:14

    Topics: Amino Acid Sequence; Animals; Arginine; Cysteine; Enzyme Inhibitors; Glutathione Transferase; Histidine; Indicators and Reagents; Lysine; Male; Microsomes, Liver; Molecular Sequence Data; Mutagenesis, Site-Directed; Phenylglyoxal; Rats; Rats, Sprague-Dawley; Structure-Activity Relationship; Trinitrobenzenesulfonic Acid; Tyrosine

1997
Characterization of recombinant Saccharomyces cerevisiae manganese-containing superoxide dismutase and its H30A and K170R mutants expressed in Escherichia coli.
    Biochemistry, 1998, Aug-11, Volume: 37, Issue:32

    Topics: Alanine; Amino Acid Substitution; Arginine; Enzyme Activation; Enzyme Stability; Escherichia coli; Genetic Vectors; Histidine; Hot Temperature; Lysine; Manganese; Mutagenesis, Site-Directed; Phenylglyoxal; Recombinant Proteins; Saccharomyces cerevisiae; Superoxide Dismutase; Trinitrobenzenesulfonic Acid

1998
Essential arginine residues in maize starch synthase IIa are involved in both ADP-glucose and primer binding.
    FEBS letters, 1999, Sep-03, Volume: 457, Issue:3

    Topics: Adenosine Diphosphate; Amino Acid Sequence; Amylopectin; Arginine; Binding Sites; Catalytic Domain; Circular Dichroism; Conserved Sequence; Enzyme Activation; Enzyme Inhibitors; Glucose; Glucosyltransferases; Glycogen; Histidine; Isoenzymes; Molecular Sequence Data; Mutagenesis, Site-Directed; Mutation; Phenylglyoxal; Plant Proteins; Recombinant Proteins; Starch Synthase; Zea mays

1999
Active site determination of yeast geranylgeranyl protein transferase type I expressed in Escherichia coli.
    European journal of biochemistry, 1999, Oct-01, Volume: 265, Issue:1

    Topics: Alkyl and Aryl Transferases; Catalytic Domain; Chitin Synthase; Diethyl Pyrocarbonate; Escherichia coli; Fungal Proteins; Histidine; Models, Chemical; Mutagenesis, Site-Directed; Phenylglyoxal; Polyisoprenyl Phosphates; Protein Prenylation; Recombinant Proteins; Saccharomyces cerevisiae Proteins; Substrate Specificity; Transferases; Yeasts

1999
Chemical modification and site-directed mutagenesis of conserved HXXH and PP-loop motif arginines and histidines in the murine bifunctional ATP sulfurylase/adenosine 5'-phosphosulfate kinase.
    The Journal of biological chemistry, 1999, Oct-08, Volume: 274, Issue:41

    Topics: Amino Acid Sequence; Animals; Arginine; Chondrosarcoma; Conserved Sequence; Diethyl Pyrocarbonate; Histidine; Kinetics; Mice; Molecular Sequence Data; Multienzyme Complexes; Mutagenesis, Site-Directed; Phenylglyoxal; Sequence Alignment; Spectrophotometry; Sulfate Adenylyltransferase

1999
Identification of the bile acid-binding site of the ileal lipid-binding protein by photoaffinity labeling, matrix-assisted laser desorption ionization-mass spectrometry, and NMR structure.
    The Journal of biological chemistry, 2001, Mar-09, Volume: 276, Issue:10

    Topics: Amino Acid Sequence; Animals; Arginine; Bile Acids and Salts; Binding Sites; Carrier Proteins; Cholagogues and Choleretics; Electrophoresis, Polyacrylamide Gel; Histidine; Humans; Immunoblotting; Magnetic Resonance Spectroscopy; Models, Molecular; Molecular Sequence Data; Organic Anion Transporters, Sodium-Dependent; Phenylglyoxal; Photoaffinity Labels; Protein Binding; Rabbits; Recombinant Proteins; Sequence Analysis, DNA; Sequence Homology, Amino Acid; Serine; Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization; Symporters; Taurocholic Acid; Threonine

2001
An essential role of active site arginine residue in iodide binding and histidine residue in electron transfer for iodide oxidation by horseradish peroxidase.
    Molecular and cellular biochemistry, 2001, Volume: 218, Issue:1-2

    Topics: Arginine; Binding Sites; Carbon Radioisotopes; Circular Dichroism; Cyclohexanones; Diacetyl; Diethyl Pyrocarbonate; Electron Transport; Histidine; Horseradish Peroxidase; Hydroxamic Acids; Iodides; Kinetics; Oxidation-Reduction; Phenylglyoxal; Spectrophotometry; Thermodynamics

2001
Functional residues on the enzyme active site of glyoxalase I from bovine brain.
    Preparative biochemistry & biotechnology, 2001, Volume: 31, Issue:3

    Topics: Animals; Arginine; Binding Sites; Brain; Cattle; Diethyl Pyrocarbonate; Dimerization; Epoxy Compounds; Erythrocytes; Histidine; Humans; Kinetics; Lactoylglutathione Lyase; Molecular Weight; Phenylglyoxal; Spectrometry, Fluorescence; Structure-Activity Relationship; Titrimetry; Tryptophan; Yeasts

2001