imidazole has been researched along with tyrosine in 12 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 1 (8.33) | 18.7374 |
1990's | 2 (16.67) | 18.2507 |
2000's | 7 (58.33) | 29.6817 |
2010's | 2 (16.67) | 24.3611 |
2020's | 0 (0.00) | 2.80 |
Authors | Studies |
---|---|
Debus, RJ; Golbeck, JH; Hays, AM; Vassiliev, IR | 1 |
Baldi, B; Indiani, C; Neri, F; Smulevich, G; Vind, J; Welinder, KG | 1 |
Aono, S; Ishikawa, H; Ishimori, K; Kitagawa, T; Mizutani, Y; Morishima, I; Nakajima, H; Uchida, T | 1 |
ANDERSON, BM | 1 |
Chishiro, T; Liu, JG; Naruta, Y; Tachi, Y; Tani, F | 1 |
Collman, JP; Costanzo, S; Decréau, RA | 1 |
Coriolan, JD; Fattal, MH; Melo, LF; Mundle, ST; O'Regan, NE; Strauss, PR | 1 |
Patel, HN; Rosenow, MA; Wachter, RM | 1 |
Pesavento, RP; Pratt, DA; van der Donk, WA | 1 |
Badawi, A; Huang, H; Van Horn, JD; Xie, W | 1 |
Blanco-Rodríguez, AM; Sýkora, J; Towrie, M; Vlček, A; Záliš, S | 1 |
Bieńko, A; Daszkiewicz, M; Ozarowski, A; Staszak, Z; Trusz-Zdybek, A; Wojciechowska, A | 1 |
12 other study(ies) available for imidazole and tyrosine
Article | Year |
---|---|
Role of D1-His190 in proton-coupled electron transfer reactions in photosystem II: a chemical complementation study.
Topics: Cyanobacteria; Electron Transport; Histidine; Imidazoles; Kinetics; Mutagenesis, Site-Directed; Oxidation-Reduction; Phenylalanine; Photolysis; Photosynthetic Reaction Center Complex Proteins; Protons; Spectrophotometry; Spectroscopy, Near-Infrared; Tyrosine | 1998 |
Role of the distal phenylalanine 54 on the structure, stability, and ligand binding of Coprinus cinereus peroxidase.
Topics: Binding Sites; Coprinus; Enzyme Stability; Fungal Proteins; Glycine; Hydrogen-Ion Concentration; Imidazoles; Ligands; Mutagenesis, Site-Directed; Peroxidase; Phenylalanine; Sodium Fluoride; Spectrophotometry; Spectrum Analysis, Raman; Structure-Activity Relationship; Titrimetry; Tryptophan; Tyrosine; Valine | 1999 |
Identification of histidine 77 as the axial heme ligand of carbonmonoxy CooA by picosecond time-resolved resonance Raman spectroscopy.
Topics: Bacterial Proteins; Carbon Monoxide; Escherichia coli; Escherichia coli Proteins; Fimbriae Proteins; Heme; Histidine; Imidazoles; Iron; Ligands; Mutagenesis, Site-Directed; Myoglobin; Photolysis; Spectrum Analysis, Raman; Tyrosine | 2000 |
Imidazole catalysis of hydroxylamine reactions with tyrosine esters.
Topics: Catalysis; Esters; Hydroxylamine; Hydroxylamines; Imidazoles; Tyrosine | 1962 |
Formation and spectroscopic characterization of the dioxygen adduct of a heme-Cu complex possessing a cross-linked tyrosine-histidine mimic: modeling the active site of cytochrome c oxidase.
Topics: Binding Sites; Copper; Electron Transport Complex IV; Heme; Histidine; Imidazoles; Molecular Mimicry; Molecular Structure; Oxygen; Phenols; Porphyrins; Spectrophotometry, Ultraviolet; Spectrum Analysis, Raman; Tyrosine | 2004 |
Appending a tris-imidazole ligand with a Tyr 244 mimic on the distal face of bromoacetamidoporphyrin.
Topics: Binding Sites; Copper; Electron Transport Complex IV; Imidazoles; Ligands; Models, Molecular; Molecular Conformation; Porphyrins; Tyrosine | 2004 |
Novel role of tyrosine in catalysis by human AP endonuclease 1.
Topics: Amino Acid Substitution; Base Sequence; Catalysis; Catalytic Domain; Cations, Divalent; Conserved Sequence; DNA; DNA Repair; DNA-(Apurinic or Apyrimidinic Site) Lyase; Enzyme Activation; Humans; Hydrogen-Ion Concentration; Imidazoles; In Vitro Techniques; Kinetics; Models, Molecular; Mutagenesis, Site-Directed; Protein Conformation; Tyrosine | 2004 |
Oxidative chemistry in the GFP active site leads to covalent cross-linking of a modified leucine side chain with a histidine imidazole: implications for the mechanism of chromophore formation.
Topics: Amino Acid Substitution; Animals; Binding Sites; Cross-Linking Reagents; Crystallography, X-Ray; Green Fluorescent Proteins; Histidine; Hydrozoa; Imidazoles; Leucine; Oxidation-Reduction; Peptides, Cyclic; Tyrosine; Water | 2005 |
Model studies of the histidine-tyrosine cross-link in cytochrome C oxidase reveal the flexible substituent effect of the imidazole moiety.
Topics: Electron Transport Complex IV; Histidine; Imidazoles; Models, Theoretical; Molecular Conformation; Molecular Structure; Oxidation-Reduction; Structure-Activity Relationship; Tyrosine | 2005 |
Solution interactions between the uranyl cation [UO2(2+)] and histidine, N-acetyl-histidine, tyrosine, and N-acetyl-tyrosine.
Topics: Cations, Divalent; Histidine; Hydrolysis; Imidazoles; Solutions; Spectrophotometry, Ultraviolet; Tyrosine; Uranium Compounds | 2009 |
Photoinduced intramolecular tryptophan oxidation and excited-state behavior of [Re(L-AA)(CO)3(α-diimine)](+) (L = pyridine or imidazole, AA = tryptophan, tyrosine, phenylalanine).
Topics: Carbon Monoxide; Imidazoles; Imines; Molecular Structure; Organometallic Compounds; Oxidation-Reduction; Phenylalanine; Photochemical Processes; Pyridines; Quantum Theory; Rhenium; Stereoisomerism; Tryptophan; Tyrosine | 2011 |
Synthesis, crystal structure, spectroscopic, magnetic, theoretical, and microbiological studies of a nickel(II) complex of L-tyrosine and imidazole, [Ni(Im)2(L-tyr)2]·4H2O.
Topics: Anti-Infective Agents; Bacteria; Bacterial Infections; Coordination Complexes; Crystallography, X-Ray; Fungi; Imidazoles; Models, Molecular; Mycoses; Nickel; Spectrum Analysis; Tyrosine | 2011 |