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FEBS letters, ISSN 0014-5793, 2001, Volume 496, Issue 1, pp. 44 - 48
The specificity of 4,5,6,7-tetrabromo-2-azabenzimidazole (TBB), an ATP/GTP competitive inhibitor of protein kinase casein kinase-2 (CK2... 
Casein kinase | Inhibitor | Casein kinase-2 | Protein phosphorylation | Protein kinase | nCK, native casein kinase | OA, okadaic acid | PRAK, p38-regulated/activated kinase | CSK, C-terminal Src kinase | AMPK, AMP-activated protein kinase | CHK, checkpoint kinase | JNK, c-Jun N-terminal kinase | MAPKAP, MAPK-activated protein kinase | p70S6K, p70 ribosomal protein S6 kinase | CK, casein kinase | SAPK, stress-activated protein kinase | PDK, 3-phosphoinositide-dependent kinase | ROCK, Rho-dependent protein kinase | CDK, cyclin-dependent kinase | G-CK, Golgi casein kinase | PKC, protein kinase C | MKK, MAPK kinase (also called MEK) | PKA, cAMP-dependent protein kinase | DRB, 1-(β-D-ribofuranosyl)-5,6-dichlorobenzimidazole | PHK, phosphorylase kinase | GSK3, glycogen synthase kinase 3 | PKB, protein kinase B (also called Akt) | rCK, recombinant casein kinase | ERK, extracellular signal-regulated kinase | HS1, hematopoietic lineage cell-specific protein 1 | MSK, mitogen- and stress-activated protein kinase | TBB, 4,5,6,7-tetrabromo-2-azabenzimidazole or 4,5,6,7-tetrabromobenzotriazole | MAPK, mitogen-activated protein kinase | SGK, serum- and glucocorticoid-induced kinase | Biochemistry & Molecular Biology | Biophysics | Life Sciences & Biomedicine | Science & Technology | Cell Biology | Protein Kinases - metabolism | Jurkat Cells - cytology | Protein Kinases - drug effects | Casein Kinase II | Emodin - pharmacology | Jurkat Cells - metabolism | Humans | Enzyme Inhibitors - pharmacology | Protein-Serine-Threonine Kinases - genetics | Substrate Specificity | Adenosine Triphosphate | Binding Sites - genetics | Binding, Competitive - drug effects | Triazoles - pharmacology | Triazoles - metabolism | Protein-Serine-Threonine Kinases - antagonists & inhibitors | Binding Sites - drug effects | Protein-Serine-Threonine Kinases - metabolism | Staurosporine - pharmacology | Amino Acid Substitution | Jurkat Cells - drug effects | Index Medicus
Journal Article
2012, 1. Aufl., Current topics in microbiology and immunology, ISBN 3642282954, Volume 355., x, 234
...” and still the backbone of most cancer treatment regimens, are increasingly being complemented by or replaced with kinase inhibitors... 
Chemotherapy | Antineoplastic Protocols | Cancer | Protein kinases | Inhibitors
Book
PloS one, ISSN 1932-6203, 05/2015, Volume 10, Issue 5, pp. e0127885 - e0127885
...) increases macrophage phagocytosis through adenosine monophosphate-activated protein kinase (AMPK... 
Science & Technology - Other Topics | Multidisciplinary Sciences | Science & Technology | AMP-Activated Protein Kinases - metabolism | Apoptosis - drug effects | Apoptosis - genetics | Male | Phagocytosis - genetics | Aminoimidazole Carboxamide - pharmacology | Gene Knockdown Techniques | Ribonucleotides - pharmacology | Phosphorylation - genetics | p38 Mitogen-Activated Protein Kinases - metabolism | Phosphorylation - drug effects | MAP Kinase Kinase Kinases - antagonists & inhibitors | Phagocytosis - drug effects | MAP Kinase Kinase Kinases - genetics | AMP-Activated Protein Kinases - antagonists & inhibitors | Macrophages, Peritoneal - enzymology | p38 Mitogen-Activated Protein Kinases - genetics | Imidazoles - pharmacology | MAP Kinase Kinase Kinases - metabolism | Enzyme Activation - drug effects | Animals | Aminoimidazole Carboxamide - analogs & derivatives | p38 Mitogen-Activated Protein Kinases - antagonists & inhibitors | Mice | Mice, Inbred BALB C | Pyridines - pharmacology | Enzyme Activation - genetics | AMP-Activated Protein Kinases - genetics | Bone morphogenetic proteins | Inflammation | Adenylic acid | Macrophages | Transforming growth factors | Mitogens | Protein kinases | Apoptosis | Phosphorylation | Transforming growth factor-b | Homeostasis | AKT protein | Kinases | AMP-activated protein kinase | Medical schools | Proteins | Phagocytes | Cell activation | Pain | Penicillin | Cell cycle | Inhibition | Growth factors | Adenosine | Adenosine monophosphate | AMP | TAK1 protein | Neutrophils | Dipyridamole | MAP kinase | Leukocytes (neutrophilic) | siRNA | 1-Phosphatidylinositol 3-kinase | Medicine | Studies | Inhibitors | Thymocytes | Lungs | Adenosine kinase | Stem cells | Anesthesiology | Laboratory animals | Transporter | Phagocytosis | Index Medicus
Journal Article
Journal Article
Autophagy, ISSN 1554-8635, 10/2014, Volume 10, Issue 11, pp. 1937 - 1952
Lipopolysaccharide (LPS)-induced activation of TLR4 (toll-like receptor 4) is followed by a subsequent overwhelming inflammatory response, a hallmark of the... 
ACTB, actin, beta | MYD88, myeloid differentiation primary response 88 | PELI3 | CHX, cycloheximide | BECN1, Beclin 1, autophagy related | TICAM1, toll-like receptor adaptor molecule 1 | LPS | RIPK1, receptor (TNFRSF)-interacting serine-threonine kinase 1 | TUBB, tubulin, beta class I | PRRs, pattern recognition receptors | UBB, ubiquitin B | IRAKs, interleukin-1 receptor-associated kinases | HBSS, Hank's balanced salt solution | ATG7, autophagy-related 7 | MAP1LC3B, microtubule-associated protein 1 light chain 3 beta | TLRs, toll-like receptors | Baf A1, bafilomycin A | WT, wildtype | autophagy | TNF, tumor necrosis factor | MAPK14, mitogen-activated protein kinase 14 | NFKB, nuclear factor of kappa light polypeptide gene enhancer in B-cells | MAPK1/3, mitogen-activated protein kinase 1/3 | Epoxo, epoxomycin | TRAF6, TNF receptor-associated factor 6, E3 ubiquitin protein ligase | IL1B, interleukin 1, beta | MTOR, mechanistic target of rapamycin (serine/threonine kinase) | TABs, TGF-beta activated kinase 1/MAP3K7 binding protein 1/2/3 | Wortm, wortmannin | PELI3, pellino E3 ubiquitin protein ligase family member 3 | MAPK8/9, mitogen-activated protein kinase 8/9 | SQSTM1, sequestosome 1 | NFE2L2, nuclear factor, erythroid 2-like 2 | NLRP3, NLR family, pyrin domain containing 3 | LAMP2, lysosomal-associated membrane protein 2 | LPS, lipopolysaccharide | MAP3K14, mitogen-activated protein kinase kinase kinase 14 | MΦ, macrophages | Rapa, rapamycin | SQSTM1 | TBK1, TANK-binding kinase 1 | Torin2 | MAP3K7, mitogen-activated protein kinase kinase kinase 7 | Autophagy | Life Sciences & Biomedicine | Science & Technology | Cell Biology | Cell Line | Cytokines - metabolism | Signal Transduction | Ubiquitin - metabolism | Ubiquitin-Protein Ligases - metabolism | Adenosine Triphosphatases - metabolism | Lipopolysaccharides - metabolism | Inflammation | Immunity, Innate | RNA, Messenger - metabolism | Toll-Like Receptor 4 - metabolism | Point Mutation | Macrophages - metabolism | Animals | Interleukin-1beta - metabolism | Sepsis - metabolism | Mice | Naphthyridines - metabolism | RNA, Small Interfering - metabolism | Index Medicus
Journal Article
Nature (London), ISSN 1476-4687, 05/2013, Volume 497, Issue 7448, pp. 217 - 223
The mammalian target of rapamycin (mTOR), a phosphoinositide 3-kinase-related protein kinase, controls cell growth in response to nutrients and growth factors and is frequently deregulated in cancer... 
Science & Technology - Other Topics | Multidisciplinary Sciences | Science & Technology | Adaptor Proteins, Signal Transducing - chemistry | Catalytic Domain - drug effects | TOR Serine-Threonine Kinases - metabolism | Pyridines - chemistry | Furans - pharmacology | Humans | Crystallography, X-Ray | Structure-Activity Relationship | Pyrimidines - chemistry | TOR Serine-Threonine Kinases - antagonists & inhibitors | Indoles - metabolism | Furans - chemistry | Adenosine Triphosphate - metabolism | Indoles - pharmacology | Tacrolimus Binding Protein 1A - pharmacology | Naphthyridines - chemistry | Ribosomal Protein S6 Kinases, 70-kDa - metabolism | Purines - metabolism | Purines - pharmacology | MTOR Associated Protein, LST8 Homolog | Tacrolimus Binding Protein 1A - chemistry | Models, Molecular | Magnesium - metabolism | Pyrimidines - pharmacology | Sirolimus - metabolism | Sirolimus - pharmacology | Magnesium - chemistry | Purines - chemistry | TOR Serine-Threonine Kinases - chemistry | Tacrolimus Binding Protein 1A - metabolism | Pyridines - pharmacology | Sirolimus - chemistry | Adaptor Proteins, Signal Transducing - metabolism | Adenosine Triphosphate - chemistry | Indoles - chemistry | Naphthyridines - pharmacology | Naphthyridines - metabolism | Protein Structure, Tertiary - drug effects | Proteins | Enzymes | Kinases | Crystal structure | Index Medicus
Journal Article
Biochemical journal, ISSN 0264-6021, 02/2010, Volume 426, Issue 1, pp. 109 - 118
Activation of AMPK (AMP-activated protein kinase) by phosphorylation at Thr(172) is catalysed by at least two distinct upstream kinases, i.e... 
calmodulin-dependent protein kinase (CaMK) | AMP-activated protein kinase-related kinase (ARK) | calmodulin-dependent protein kinase kinase (CaMKK) | AMP-activated protein kinase (AMPK) | Life Sciences & Biomedicine | Biochemistry & Molecular Biology | Science & Technology | Amino Acid Sequence | Cell Line | AMP-Activated Protein Kinases - metabolism | Immunoprecipitation | Calcium - metabolism | Humans | Molecular Sequence Data | Calcimycin - pharmacology | Phenformin - pharmacology | Cyclic AMP - pharmacology | Sequence Homology, Amino Acid | Calcium - physiology | Adenosine Triphosphate - metabolism | Calcium-Calmodulin-Dependent Protein Kinase Kinase - metabolism | Protein Binding | Adenosine Diphosphate - metabolism | HeLa Cells | Phosphorylation - drug effects | Ionophores - pharmacology | Index Medicus | ACC, acetyl-CoA carboxylase | calmodulin-dependent protein kinase kinase | HEK, human embryonic kidney | MARK, microtubule affinity-regulating kinase | AMPK, AMP-activated protein kinase | TBS, Tris-buffered saline | BRSK, brain-specific kinase | UBA, ubiquitin-associated | MO25, mouse protein 25 | CaMK, Ca2 | ARK, AMPK-related kinase | NUAK, SNF1 (sucrose-non-fermenting kinase-1)-like kinase | AMPactivated protein kinase-related kinase (ARK) | GST, glutathione transferase | STRAD, Ste20-related adaptor | GFP, green fluorescent protein | calmodulin-dependent protein kinase | SIK, salt-inducible kinase | calmodulindependent protein kinase (CaMK) | Ca2 | AICAR, 5-amino-4-imidazolecarboxamide riboside | FBS, foetal bovine serum | CaMKK, Ca2
Journal Article
PloS one, ISSN 1932-6203, 09/2014, Volume 9, Issue 9, pp. e108201 - e108201
.... Methods and Results: We generated cardiac-specific kinase-dead (kd) calcium/calmodulin-dependent protein kinase kinase-beta (CaMKK beta) transgenic... 
Science & Technology - Other Topics | Multidisciplinary Sciences | Science & Technology | Up-Regulation | Phosphorylation | Mitochondria, Heart - metabolism | Heart Failure - physiopathology | Myosin Heavy Chains - genetics | Male | Adenosine Triphosphate | Ventricular Dysfunction, Left - genetics | Ventricular Remodeling - genetics | Mitochondria, Heart - genetics | Heart Failure - etiology | Heart Ventricles - pathology | Disease Models, Animal | Heart Failure - mortality | Promoter Regions, Genetic | Magnetic Resonance Spectroscopy | Signal Transduction | Gene Expression Regulation | Mice, Transgenic | Heart Failure - metabolism | Calcium-Calmodulin-Dependent Protein Kinase Kinase - genetics | Ventricular Dysfunction, Left - physiopathology | Animals | Calcium-Calmodulin-Dependent Protein Kinase Kinase - metabolism | Heart Ventricles - metabolism | Mice | Phosphates | Heart | Systems science | Calcium | Biosynthesis | Glucose | Kinases | Creatine | Magnetic resonance spectroscopy | Proteins | Morphogenesis | Mitochondria | Transgenic animals | Rodents | Calcium-binding protein | Myosin | Aorta | Ca2+/calmodulin-dependent protein kinase | Heart diseases | Informatics | Stretching | Calmodulin | Heart failure | Spectroscopy | Damage assessment | Adenosine monophosphate | AMP | Magnetic resonance | Transgenic mice | Phosphocreatine | Pressure | Medicine | Signaling | Adenosine kinase | Coronary vessels | Ventricle | Laboratory animals | Index Medicus
Journal Article