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adenosine monophosphate and aluminum fluoride

adenosine monophosphate has been researched along with aluminum fluoride in 5 studies

Research

Studies (5)

TimeframeStudies, this research(%)All Research%
pre-19900 (0.00)18.7374
1990's1 (20.00)18.2507
2000's4 (80.00)29.6817
2010's0 (0.00)24.3611
2020's0 (0.00)2.80

Authors

AuthorsStudies
Imanaga, I; Inoue, M1
Daiho, T; Danko, S; Suzuki, H; Toyoshima, C; Yamasaki, K1
Daiho, T; Danko, S; Suzuki, H; Yamasaki, K1
Lee, SY; McCullagh, E; Roberts, A; Silversmith, RE; Wemmer, DE1
Buck, M; Joly, N; Rappas, M; Zhang, X1

Other Studies

5 other study(ies) available for adenosine monophosphate and aluminum fluoride

ArticleYear
ADP indirectly supports activation of non-selective cation channels by AlF complex in guinea-pig chromaffin cells.
    Brain research, 1996, Jan-29, Volume: 707, Issue:2

    Topics: Adenosine Diphosphate; Adenosine Monophosphate; Adenosine Triphosphate; Aluminum Compounds; Animals; Cations; Cells, Cultured; Chromaffin System; Fluorides; GTP-Binding Proteins; Guinea Pigs; Ion Channels; Nucleosides; Patch-Clamp Techniques; Phosphocreatine

1996
Organization of cytoplasmic domains of sarcoplasmic reticulum Ca(2+)-ATPase in E(1)P and E(1)ATP states: a limited proteolysis study.
    FEBS letters, 2001, Sep-07, Volume: 505, Issue:1

    Topics: Adenosine Monophosphate; Adenosine Triphosphate; Aluminum Compounds; Animals; Calcium-Transporting ATPases; Cytoplasm; Endopeptidases; Fluorides; Magnesium; Nucleotides; Protein Structure, Tertiary; Rabbits; Sarcoplasmic Reticulum

2001
Distinct natures of beryllium fluoride-bound, aluminum fluoride-bound, and magnesium fluoride-bound stable analogues of an ADP-insensitive phosphoenzyme intermediate of sarcoplasmic reticulum Ca2+-ATPase: changes in catalytic and transport sites during ph
    The Journal of biological chemistry, 2004, Apr-09, Volume: 279, Issue:15

    Topics: Adenosine Diphosphate; Adenosine Monophosphate; Aluminum Compounds; Animals; Beryllium; Biochemical Phenomena; Biochemistry; Calcimycin; Calcium; Calcium-Transporting ATPases; Catalytic Domain; Cell Membrane; Chelating Agents; Crystallography, X-Ray; Cytoplasm; Dose-Response Relationship, Drug; Fluorides; Hydrogen-Ion Concentration; Hydrolysis; Magnesium Compounds; Models, Chemical; Muscle, Skeletal; Phosphorylation; Protein Binding; Protein Conformation; Protein Structure, Tertiary; Rabbits; Sarcoplasmic Reticulum; Sarcoplasmic Reticulum Calcium-Transporting ATPases; Spectrometry, Fluorescence; Thapsigargin; Time Factors; Tryptophan; Vanadates

2004
YbiV from Escherichia coli K12 is a HAD phosphatase.
    Proteins, 2005, Mar-01, Volume: 58, Issue:4

    Topics: Adenosine Monophosphate; Aluminum Compounds; Amino Acid Sequence; Beryllium; Binding Sites; Catalysis; Cloning, Molecular; Crystallography, X-Ray; Databases, Protein; Escherichia coli; Escherichia coli Proteins; Fluorides; Fluorine; Genomics; Hydrolases; Hydrolysis; Kinetics; Models, Chemical; Models, Molecular; Models, Statistical; Molecular Sequence Data; Phosphoprotein Phosphatases; Phosphoric Monoester Hydrolases; Phosphorylation; Protein Binding; Protein Folding; Protein Structure, Secondary; Protein Structure, Tertiary; Proteomics; Sequence Homology, Amino Acid; Substrate Specificity

2005
Trapping of a transcription complex using a new nucleotide analogue: AMP aluminium fluoride.
    Journal of molecular biology, 2008, Feb-01, Volume: 375, Issue:5

    Topics: Adenosine Diphosphate; Adenosine Monophosphate; Adenosine Triphosphatases; Aluminum Compounds; Crystallography, X-Ray; Escherichia coli Proteins; Fluorides; Magnesium Chloride; Models, Chemical; Nucleotides; Organometallic Compounds; Promoter Regions, Genetic; RNA Polymerase Sigma 54; Sinorhizobium meliloti; Spectrum Analysis, Raman; Trans-Activators; Transcription, Genetic; X-Ray Diffraction

2008