adenosine monophosphate has been researched along with imidazole in 8 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 2 (25.00) | 18.7374 |
1990's | 2 (25.00) | 18.2507 |
2000's | 1 (12.50) | 29.6817 |
2010's | 2 (25.00) | 24.3611 |
2020's | 1 (12.50) | 2.80 |
Authors | Studies |
---|---|
Kitagawa, H; Saha, AR; Satoh, T; Ueno, K | 1 |
Chattoraj, S; Majumder, AL | 1 |
Weber, AL | 1 |
Chattoraj-Bhattacharyya, S; Majumder, AL | 1 |
Callahan, BP; Lomino, JV; Wolfenden, R | 1 |
Burcar, BT; Cassidy, LM; Coari, KM; Joshi, PC; McGown, LB; Moriarty, EM | 1 |
Iwai, S; Katsube, S; Miyagishi, M; Yamamoto, J; Yamasaki, K; Zhao, J | 1 |
Chen, J; Huo, X; Li, P; Wang, M; Wu, Z; Yuan, Q; Zhang, L; Zhang, W; Zhang, Z; Zou, Y | 1 |
8 other study(ies) available for adenosine monophosphate and imidazole
Article | Year |
---|---|
Effects of heptaminol AMP amidate (HAA) on cyclic AMP level and mitogen-induced proliferation of murine spleen cells.
Topics: Adenosine Monophosphate; Amino Alcohols; Animals; Cell Division; Cells, Cultured; Concanavalin A; Cyclic AMP; Drug Interactions; Heptaminol; Imidazoles; Male; Mice; Mice, Inbred BALB C; Mitogens; Phytohemagglutinins; Spleen; Theophylline | 1990 |
Modification of brain fructose-1,6-bisphosphatase activity by chelators: "induction" of 5'-AMP sensitivity.
Topics: Adenosine Monophosphate; Animals; Binding Sites; Brain; Cations, Divalent; Edetic Acid; Fishes; Fructose-Bisphosphatase; Histidine; Hydrogen-Ion Concentration; Imidazoles; Rats; Subtilisins; Zinc | 1986 |
Stereoselective formation of a 2'(3')-aminoacyl ester of a nucleotide.
Topics: Adenosine Monophosphate; Imidazoles; Kinetics; Serine; Stereoisomerism | 1987 |
Divalent cations and chelators as regulators of brain fructose-1,6-bisphosphatase.
Topics: Adenosine Monophosphate; Animals; Brain; Cations, Divalent; Chelating Agents; Citrates; Citric Acid; Dialysis; Edetic Acid; Enzyme Activation; Fishes; Fructose-Bisphosphatase; Histidine; Imidazoles; Manganese; Rats; Zinc | 1995 |
Nanomolar inhibition of the enterobactin biosynthesis enzyme, EntE: synthesis, substituent effects, and additivity.
Topics: Adenosine Monophosphate; Binding, Competitive; Catechols; Enterobactin; Enzyme Inhibitors; Escherichia coli; Escherichia coli Proteins; Hydrogen; Hydroxamic Acids; Hydroxybenzoates; Imidazoles; Ligases; Structure-Activity Relationship | 2006 |
Potential pitfalls in MALDI-TOF MS analysis of abiotically synthesized RNA oligonucleotides.
Topics: Adenosine Monophosphate; Aluminum Silicates; Bentonite; Clay; Evolution, Chemical; Guanosine Monophosphate; Imidazoles; Oligonucleotides; Polymerization; RNA; Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization | 2013 |
Analysis of ATP and AMP binding to a DNA aptamer and its imidazole-tethered derivatives by surface plasmon resonance.
Topics: Adenosine Monophosphate; Adenosine Triphosphate; Aptamers, Nucleotide; Base Sequence; Binding Sites; DNA; Imidazoles; Spectrometry, Mass, Electrospray Ionization; Surface Plasmon Resonance | 2015 |
Catalytic Asymmetric Synthesis of the anti-COVID-19 Drug Remdesivir.
Topics: Adenosine Monophosphate; Alanine; Antiviral Agents; Catalysis; COVID-19; COVID-19 Drug Treatment; Humans; Imidazoles; Kinetics; Molecular Conformation; SARS-CoV-2; Stereoisomerism | 2020 |