ml 9 has been researched along with tetradecanoylphorbol acetate in 10 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 1 (10.00) | 18.7374 |
1990's | 5 (50.00) | 18.2507 |
2000's | 4 (40.00) | 29.6817 |
2010's | 0 (0.00) | 24.3611 |
2020's | 0 (0.00) | 2.80 |
Authors | Studies |
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Austin, CP; Fidock, DA; Hayton, K; Huang, R; Inglese, J; Jiang, H; Johnson, RL; Su, XZ; Wellems, TE; Wichterman, J; Yuan, J | 1 |
Bellows, DS; Clarke, ID; Diamandis, P; Dirks, PB; Graham, J; Jamieson, LG; Ling, EK; Sacher, AG; Tyers, M; Ward, RJ; Wildenhain, J | 1 |
Ishida, E; Ito, M; Sato, A; Shigeta, S; Takami, Y; Tanabe, F | 1 |
Begum, N; Srinivasan, M | 1 |
Badwey, JA; Curnutte, JT; Ding, J; Erickson, RW; Heyworth, PG | 1 |
Itoh, M; Joh, T; Kato, T; Miyamoto, T; Okayama, N | 1 |
Hidaka, H; Iguchi, A; Niki, A; Niki, H; Niki, I; Okazaki, K; Saitoh, M; Tamagawa, T | 1 |
Packer, CS; Rhoades, RA; Zhao, Y | 1 |
Bosch, RJ; Díez-Marqués, ML; García-Escribano, C; Rodríguez-Puyol, D; Rodríguez-Puyol, M; Torrecillas, G | 1 |
Aass, H; Andersen, GØ; Osnes, JB; Qvigstad, E; Schiander, I; Skomedal, T | 1 |
10 other study(ies) available for ml 9 and tetradecanoylphorbol acetate
Article | Year |
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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 |
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 |
Possible involvement of microfilaments in protein kinase C translocation.
Topics: Actin Cytoskeleton; Animals; Azepines; Biological Transport; Calcimycin; Calmodulin; Cytochalasin B; Cytoskeleton; Cytosol; Female; Male; Mice; Mice, Inbred C57BL; Myosin-Light-Chain Kinase; Neutrophils; Protein Kinase C; Sulfonamides; Tetradecanoylphorbol Acetate | 1989 |
Stimulation of protein phosphatase-1 activity by phorbol esters. Evaluation of the regulatory role of protein kinase C in insulin action.
Topics: Alkaloids; Animals; Azepines; Benzophenanthridines; Blotting, Western; Calcium-Calmodulin-Dependent Protein Kinases; Cell Line; Cytosol; Enzyme Activation; Homeostasis; Insulin; Isoenzymes; Kinetics; Muscles; Naphthalenes; Phenanthridines; Phosphoprotein Phosphatases; Phosphorylation; Polycyclic Compounds; Protein Kinase C; Protein Phosphatase 1; Rats; Tetradecanoylphorbol Acetate | 1994 |
Naphthalenesulphonamides block neutrophil superoxide production by intact cells and in a cell-free system: is myosin light chain kinase responsible for these effects?
Topics: 1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine; Animals; Azepines; Cell-Free System; Enzyme Inhibitors; Guinea Pigs; Humans; Isoquinolines; Myosin-Light-Chain Kinase; Naphthalenes; Neutrophils; Octoxynol; Piperazines; Sulfonamides; Superoxides; Tetradecanoylphorbol Acetate | 1995 |
Role of myosin light-chain kinase and protein kinase C in pepsinogen secretion from guinea pig gastric chief cells in monolayer culture.
Topics: 1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine; Animals; Azepines; Calcium; Carbachol; Cells, Cultured; Colforsin; Gastric Mucosa; Guinea Pigs; Immunoenzyme Techniques; Ionomycin; Isoquinolines; Male; Microscopy, Electron; Myosin-Light-Chain Kinase; Pepsinogens; Piperazines; Protein Kinase C; Rabbits; Stimulation, Chemical; Tetradecanoylphorbol Acetate | 1994 |
Presence and possible involvement of Ca/calmodulin-dependent protein kinases in insulin release from the rat pancreatic beta cell.
Topics: 1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine; Animals; Azepines; Benzylamines; Calcium-Calmodulin-Dependent Protein Kinases; Colforsin; Immunoblotting; In Vitro Techniques; Insulin; Insulin Secretion; Islets of Langerhans; Isoquinolines; Kinetics; Male; Myosin-Light-Chain Kinase; Myosins; Phosphates; Phosphorus Radioisotopes; Piperazines; Protein Kinase Inhibitors; Protein Kinases; Rats; Rats, Wistar; Sulfonamides; Tetradecanoylphorbol Acetate | 1993 |
Hypoxia-induced pulmonary arterial contraction appears to be dependent on myosin light chain phosphorylation.
Topics: Angiotensin II; Animals; Azepines; Enzyme Inhibitors; Hypoxia; In Vitro Techniques; Kinetics; Male; Muscle Contraction; Muscle, Smooth, Vascular; Myosin Light Chains; Myosin-Light-Chain Kinase; Naphthalenes; Phenylephrine; Phosphorylation; Potassium Chloride; Pulmonary Artery; Rats; Rats, Sprague-Dawley; Tetradecanoylphorbol Acetate; Time Factors | 1996 |
Mechanisms of cGMP-dependent mesangial-cell relaxation: a role for myosin light-chain phosphatase activation.
Topics: Angiotensin II; Animals; Azepines; Calcium; Calcium Signaling; Cell Size; Cells, Cultured; Dibutyryl Cyclic GMP; Dose-Response Relationship, Drug; Enzyme Activation; Glomerular Mesangium; Marine Toxins; Myosin Light Chains; Myosin-Light-Chain Kinase; Myosin-Light-Chain Phosphatase; Oxazoles; Phosphoprotein Phosphatases; Phosphorylation; Protein Kinase C; Rats; Rats, Wistar; Staurosporine; Tetradecanoylphorbol Acetate | 2000 |
Alpha(1)-AR-induced positive inotropic response in heart is dependent on myosin light chain phosphorylation.
Topics: Animals; Azepines; Calcium-Calmodulin-Dependent Protein Kinase Type 2; Calcium-Calmodulin-Dependent Protein Kinases; Carcinogens; Cardiotonic Agents; Endothelin-1; Enzyme Inhibitors; Humans; In Vitro Techniques; Intracellular Signaling Peptides and Proteins; Isoproterenol; MAP Kinase Signaling System; Myocardial Contraction; Myosin Light Chains; Papillary Muscles; Phenylephrine; Phosphatidylinositol 3-Kinases; Phosphoinositide-3 Kinase Inhibitors; Phosphorylation; Protein Kinase C; Protein Serine-Threonine Kinases; Rats; Receptors, Adrenergic, alpha-1; Receptors, Endothelin; rho-Associated Kinases; Tetradecanoylphorbol Acetate | 2002 |