catechol has been researched along with tryptophan in 10 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 2 (20.00) | 18.7374 |
1990's | 0 (0.00) | 18.2507 |
2000's | 4 (40.00) | 29.6817 |
2010's | 2 (20.00) | 24.3611 |
2020's | 2 (20.00) | 2.80 |
Authors | Studies |
---|---|
Bellows, DS; Clarke, ID; Diamandis, P; Dirks, PB; Graham, J; Jamieson, LG; Ling, EK; Sacher, AG; Tyers, M; Ward, RJ; Wildenhain, J | 1 |
Austin, CP; Fidock, DA; Hayton, K; Huang, R; Inglese, J; Jiang, H; Johnson, RL; Su, XZ; Wellems, TE; Wichterman, J; Yuan, J | 1 |
Ansari, MM; Sridhar, R | 1 |
PALLERONI, NJ; STANIER, RY | 1 |
HATANAKA, M; HAYAISHI, O; KUNO, S; KURIHARA, N; NAKAJIMA, M; TANIUCHI, H | 1 |
Djikanović, D; Jeremić, M; Kalauzi, A; Mutavdzić, D; Radotić, K | 1 |
Liu, W; Xiao, X; Yin, G; Yu, S; Zhang, Y; Zhao, N | 1 |
Manjula, R; Padmanabhan, B; Strange, RW; Wright, GSA | 1 |
Kumar, K | 1 |
Liu, F; Zhang, J | 1 |
10 other study(ies) available for catechol and tryptophan
Article | Year |
---|---|
Chemical genetics reveals a complex functional ground state of neural stem cells.
Topics: Animals; Cell Survival; Cells, Cultured; Mice; Molecular Structure; Neoplasms; Neurons; Pharmaceutical Preparations; Sensitivity and Specificity; Stem Cells | 2007 |
Genetic mapping of targets mediating differential chemical phenotypes in Plasmodium falciparum.
Topics: Animals; Antimalarials; ATP Binding Cassette Transporter, Subfamily B, Member 1; Chromosome Mapping; Crosses, Genetic; Dihydroergotamine; Drug Design; Drug Resistance; Humans; Inhibitory Concentration 50; Mutation; Plasmodium falciparum; Quantitative Trait Loci; Transfection | 2009 |
Some tryptophan pathways in the phytopathogen Xanthomonas oryzae pv. oryzae.
Topics: Catechols; Chromatography, High Pressure Liquid; Indoleacetic Acids; Kynurenine; ortho-Aminobenzoates; Plant Diseases; Tryptophan; Xanthomonas | 2000 |
REGULATORY MECHANISMS GOVERNING SYNTHESIS OF THE ENZYMES FOR TRYPTOPHAN OXIDATION BY PSEUDOMONAS FLUORESCENS.
Topics: Amidohydrolases; Catechols; Enzymes; Hydrolases; Kynurenine; Lactones; ortho-Aminobenzoates; Proteins; Pseudomonas; Pseudomonas fluorescens; Pyrroles; Tryptophan | 1964 |
ENZYMATIC FORMATION OF CATECHOL FROM ANTHRANILIC ACID.
Topics: Benzene; Benzoates; Carbon Isotopes; Catechols; Glycols; Kynurenic Acid; Levulinic Acids; Metabolism; Mixed Function Oxygenases; NAD; NADP; ortho-Aminobenzoates; Oxidoreductases; Pseudomonas; Research; Salicylic Acid; Tryptophan | 1964 |
Application of asymmetric model in analysis of fluorescence spectra of biologically important molecules.
Topics: Algorithms; Benzene Derivatives; Catechols; Hydroquinones; Luminescent Measurements; Models, Theoretical; Phenols; Phenylalanine; Probability; Spectrometry, Fluorescence; Tryptophan | 2007 |
A novel initialization method for nonnegative matrix factorization and its application in component recognition with three-dimensional fluorescence spectra.
Topics: Algorithms; Catechols; Spectrometry, Fluorescence; Tryptophan; Tyrosine | 2012 |
Assessment of ligand binding at a site relevant to SOD1 oxidation and aggregation.
Topics: Binding Sites; Catechols; Crystallography, X-Ray; Dimerization; Humans; Ligands; Mutation; Naphthalenes; Oxidation-Reduction; Protein Binding; Protein Conformation; Superoxide Dismutase-1; Surface Plasmon Resonance; Tryptophan | 2018 |
Analysis of Tryptophan and Tyrosine in the Presence of Other Bioactive Molecules Using Generalized Rank Annihilation Method on Excitation-emission Fluorescence Spectroscopic Data Sets.
Topics: Catechols; Fluorescence; Fluorescent Dyes; Hydroquinones; Indoles; Molecular Conformation; Spectrometry, Fluorescence; Tryptophan; Tyrosine | 2020 |
Nano-second protein dynamics of key residue at Position 38 in catechol-O-methyltransferase system: a time-resolved fluorescence study.
Topics: Catalytic Domain; Catechol O-Methyltransferase; Catechols; Fluorescence; Humans; Mutagenesis, Site-Directed; Mutation; Recombinant Proteins; S-Adenosylmethionine; Structure-Activity Relationship; Tryptophan | 2020 |