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Accounts of Chemical Research, ISSN 0001-4842, 08/2018, Volume 51, Issue 8, pp. 1850 - 1857
Journal Article
Current Medicinal Chemistry, ISSN 0929-8673, 2017, Volume 24, Issue 16, pp. 1 - 16
The old-fashioned anticancer approaches, aiming at arresting cancer cell proliferation interfering with non-specific targets (e.g. DNA), have been replaced, in... 
Tumor microenvironment | Fda-Approved drugs | Multitargeted drugs | Anticancer agents | Polypharmacology | Tyrosine kinase receptors | Oncogene addiction | CHRONIC MYELOGENOUS LEUKEMIA | CHEMISTRY, MEDICINAL | GROWTH-FACTOR-RECEPTOR | TARGETED-THERAPY | TYROSINE KINASE | BIOCHEMISTRY & MOLECULAR BIOLOGY | REGORAFENIB BAY 73-4506 | BCR-ABL INHIBITOR | anticancer agents | FDA-approved drugs | CELL LUNG-CANCER | tyrosine kinase receptors | oncogene addiction | polypharmacology | PHILADELPHIA-CHROMOSOME | COLORECTAL-CANCER | PHARMACOLOGY & PHARMACY | tumor microenvironment | GASTROINTESTINAL STROMAL TUMORS | Neoplasms - metabolism | Niacinamide - analogs & derivatives | Anilides - therapeutic use | Pyrazoles - therapeutic use | Pyridines - chemistry | Humans | Anilides - chemistry | Imidazoles - chemistry | Imatinib Mesylate - therapeutic use | Protein Kinase Inhibitors - chemistry | Pyrazoles - chemistry | Niacinamide - chemistry | Phenylurea Compounds - chemistry | Receptor Protein-Tyrosine Kinases - antagonists & inhibitors | Imidazoles - therapeutic use | Pyrroles - therapeutic use | Quinazolines - chemistry | Pyridazines - therapeutic use | Pyridines - therapeutic use | Piperidines - chemistry | Niacinamide - therapeutic use | Phenylurea Compounds - therapeutic use | Receptor Protein-Tyrosine Kinases - metabolism | Imatinib Mesylate - chemistry | Neoplasms - drug therapy | Pyridazines - chemistry | Piperidines - therapeutic use | Protein Kinase Inhibitors - therapeutic use | Quinazolines - therapeutic use | Pyrroles - chemistry | Indoles - therapeutic use | Neoplasms - pathology | Indoles - chemistry | Tyrosine | Cell proliferation | Drugs | Medical research | Phenotypes | Clinical trials | Kinases | Proteins | Inhibitors | Modulation | Protein-tyrosine kinase | Deoxyribonucleic acid--DNA | Cancer
Journal Article
PloS one, ISSN 1932-6203, 2012, Volume 7, Issue 8, p. e41922
To improve our understanding of uranium toxicity, the determinants of uranyl affinity in proteins must be better characterized. In this work, we analyzed the... 
SPECTROSCOPY | AMINO-ACIDS | PROTEIN-KINASE CK2 | COMPLEXES | CALCIUM | BIOLOGY | GAS-PHASE | COORDINATION | URANYL-ION | SPECTRA | AQUEOUS-SOLUTION | Protein Structure, Tertiary | Recombinant Proteins - metabolism | Calmodulin - genetics | Arabidopsis Proteins - genetics | Phosphorylation | Arabidopsis - chemistry | Calmodulin - metabolism | Recombinant Proteins - chemistry | Recombinant Proteins - genetics | Casein Kinase II - genetics | Uranium - metabolism | Arabidopsis - metabolism | Arabidopsis - genetics | Arabidopsis Proteins - metabolism | Uranium - toxicity | Casein Kinase II - chemistry | Arabidopsis Proteins - chemistry | Protein Engineering | Protein Binding | Uranium - chemistry | Calmodulin - chemistry | Casein Kinase II - metabolism | Hydrogen-Ion Concentration | Arabidopsis thaliana | Tyrosine | Uranium | Analysis | Physiological aspects | Fluorescence | Protein kinases | Calmodulin | Protein binding | Protein kinase C | Peptides | Calcium | Toxicity | Physical chemistry | Amino acids | Biochemistry | Kinases | pH effects | Casein kinase II | Proteins | Spectrometry | Hydrogen ions | Calcium-binding protein | Catalysis | Dissociation | Uranium dioxide | Vibration | Threonine | Chromatography | Ion-exchange chromatography | EF-hand | Homogeneity | Affinity | Ligands | Binding sites | Life Sciences | Biomolecules | Environmental Engineering | Biochemistry, Molecular Biology | Environmental Sciences
Journal Article
Biometals, ISSN 1572-8773, 2017, Volume 30, Issue 4, pp. 517 - 527
Journal Article
Journal Article