Page last updated: 2024-08-17

lysine and glutaminase

lysine has been researched along with glutaminase in 13 studies

Research

Studies (13)

TimeframeStudies, this research(%)All Research%
pre-19907 (53.85)18.7374
1990's2 (15.38)18.2507
2000's2 (15.38)29.6817
2010's2 (15.38)24.3611
2020's0 (0.00)2.80

Authors

AuthorsStudies
Oki, T; Oshima, M; Shirai, M; Soda, K; Yamamoto, T1
Perheentupa, J; Simell, O; Visakorpi, JK1
Simell, O1
Jagenburg, R; Lindstedt, G; Malmquist, J1
Christophe, J; Hebbelinck, M; Kutzner, R; Winand, J1
Benbough, JE; Blazek, R1
Liao, M; Lusty, CJ1
Kaneko, T; Mizuno, N1
Bearne, SL; Hewitt, KA; Iyengar, A; Lunn, F; Simard, D1
BENCARERRAF, B; KANTOR, FS; OJEDA, A1
Feng, L; Sheppard, K; Söll, D; Tumbula-Hansen, D1
Acheff, E; Curthoys, NP; Kennedy, R; McDonald, CJ; Taylor, L1
Brown, WC; Harms, E; Smith, AM; Smith, JL1

Other Studies

13 other study(ies) available for lysine and glutaminase

ArticleYear
Antitumor activities of bacterial leucine dehydrogenase and glutaminase A.
    FEBS letters, 1973, Jul-15, Volume: 33, Issue:3

    Topics: Alanine; Alcaligenes; Amino Acid Isomerases; Amino Acid Oxidoreductases; Animals; Aspartate Aminotransferases; Bacillus; Body Weight; Carcinoma, Ehrlich Tumor; Cattle; Glutamate Dehydrogenase; Glutaminase; Isoenzymes; Ketoglutaric Acids; Kinetics; Leucine; Liver; Lysine; Mice; Pseudomonas; Pseudomonas aeruginosa; Time Factors; Transaminases

1973
Leukocyte and liver glutaminase in lysinuric protein intolerance.
    Pediatric research, 1972, Volume: 6, Issue:10

    Topics: Adolescent; Adult; Amino Acid Metabolism, Inborn Errors; Ammonia; Child; Child, Preschool; Glutaminase; Humans; Infant; Leukocyte Count; Leukocytes; Liver; Lysine

1972
Effect of low protein diet and hyperammonemia on liver glutaminase activity in the rat.
    Experientia, 1974, Apr-15, Volume: 30, Issue:4

    Topics: Acetates; Amino Acid Metabolism, Inborn Errors; Ammonia; Animals; Body Weight; Dietary Proteins; Disease Models, Animal; Glutaminase; Liver; Lysine; Quaternary Ammonium Compounds; Time Factors

1974
Familial protein intolerance. Possible nature of enzyme defect.
    The New England journal of medicine, 1971, May-06, Volume: 284, Issue:18

    Topics: Adult; Alanine; Amino Acid Metabolism, Inborn Errors; Amino Acids; Ammonia; Atrophy; Biological Transport; Blood Cell Count; Blood Glucose; Blood Urea Nitrogen; Bone Diseases; Brain Diseases; Dietary Proteins; Female; Glutaminase; Glutamine; Hemoglobins; Humans; Intellectual Disability; Kidney; Kidney Function Tests; Lysine; Metabolism, Inborn Errors; Nitrogen; Proteins; Specific Gravity; Urea; Urine

1971
Amino acid levels in plasma, liver, muscle, and kidney during and after exercise in fasted and fed rats.
    The American journal of physiology, 1971, Volume: 221, Issue:2

    Topics: Acidosis; Alanine; Amino Acids; Animals; Aspartic Acid; Fasting; Gluconeogenesis; Glutamates; Glutaminase; Glutamine; Glycine; Kidney; Liver; Lysine; Male; Muscles; Physical Exertion; Rats; Serine; Swimming

1971
Improvement in the persistence of microbial asparaginase and glutaminase in the circulation of the rat by chemical modifications.
    Biochimica et biophysica acta, 1981, Oct-12, Volume: 677, Issue:2

    Topics: Alcaligenes; Alkylation; Animals; Antineoplastic Agents; Asparaginase; Chemical Phenomena; Chemistry; Erwinia; Escherichia coli; Glutaminase; Half-Life; Lysine; Rats

1981
Substitution of Glu841 by lysine in the carbamate domain of carbamyl phosphate synthetase alters the catalytic properties of the glutaminase subunit.
    Biochemistry, 1993, Feb-09, Volume: 32, Issue:5

    Topics: Amino Acid Sequence; Carbamoyl-Phosphate Synthase (Ammonia); Carbamoyl-Phosphate Synthase (Glutamine-Hydrolyzing); Escherichia coli; Genes, Bacterial; Glutamates; Glutamic Acid; Glutaminase; Hydrogen-Ion Concentration; Kinetics; Lysine; Macromolecular Substances; Mathematics; Recombinant Proteins

1993
Spiny stellate neurones in layer VI of the rat cerebral cortex.
    Neuroreport, 1996, Oct-02, Volume: 7, Issue:14

    Topics: Animals; Calbindins; Cell Size; Cerebral Cortex; Glutaminase; Lysine; Nerve Tissue Proteins; Neurons; Parvalbumins; Rats; Rats, Wistar; S100 Calcium Binding Protein G

1996
Limited proteolysis of Escherichia coli cytidine 5'-triphosphate synthase. Identification of residues required for CTP formation and GTP-dependent activation of glutamine hydrolysis.
    European journal of biochemistry, 2003, Volume: 270, Issue:10

    Topics: Amino Acid Sequence; Arginine; Binding Sites; Carbon-Nitrogen Ligases; Catalysis; Circular Dichroism; Cytidine Triphosphate; Dimerization; Dose-Response Relationship, Drug; Electrophoresis, Polyacrylamide Gel; Enzyme Activation; Escherichia coli; Glutaminase; Glutamine; Guanosine Triphosphate; Hydrolysis; Kinetics; Lysine; Models, Chemical; Models, Genetic; Molecular Sequence Data; Mutagenesis, Site-Directed; Mutation; Plasmids; Protein Binding; Protein Structure, Secondary; Protein Structure, Tertiary; Proteins; Sequence Homology, Amino Acid; Time Factors; Trypsin

2003
Studies on artifical antigens. I. Antigenicity of DNP-polylysine and DNP copolymer of lysine and glutamic acid in guinea pigs.
    The Journal of experimental medicine, 1963, Jan-01, Volume: 117

    Topics: Animals; Antibodies; Antigen-Antibody Reactions; Antigens; Dinitrobenzenes; Dinitrophenols; Glutamic Acid; Glutaminase; Guinea Pigs; Lysine; Nitrophenols; Polylysine

1963
Gln-tRNAGln formation from Glu-tRNAGln requires cooperation of an asparaginase and a Glu-tRNAGln kinase.
    The Journal of biological chemistry, 2005, Mar-04, Volume: 280, Issue:9

    Topics: Adenosine Triphosphate; Ammonium Chloride; Archaea; Asparaginase; Aspartic Acid; Binding Sites; Chromatography, Thin Layer; Cloning, Molecular; Enzyme Activation; Glutamate-Ammonia Ligase; Glutamic Acid; Glutaminase; Glutamine; Hydrolysis; Lysine; Methanobacteriaceae; Models, Chemical; Mutation; Phosphorylation; Protein Biosynthesis; Protein Kinases; Pyrrolidonecarboxylic Acid; RNA, Transfer; RNA, Transfer, Gln; Threonine

2005
Effect of lysine to alanine mutations on the phosphate activation and BPTES inhibition of glutaminase.
    Neurochemistry international, 2015, Volume: 88

    Topics: Alanine; Dose-Response Relationship, Drug; Enzyme Activation; Glutaminase; Humans; Lysine; Mutation; Phosphates; Sulfides; Thiadiazoles

2015
Crystal structures capture three states in the catalytic cycle of a pyridoxal phosphate (PLP) synthase.
    The Journal of biological chemistry, 2015, Feb-27, Volume: 290, Issue:9

    Topics: Ammonia; Aspartic Acid; Bacterial Proteins; Biocatalysis; Biosynthetic Pathways; Catalytic Domain; Crystallography, X-Ray; Geobacillus stearothermophilus; Glutaminase; Glutamine; Glyceraldehyde 3-Phosphate; Kinetics; Lysine; Models, Molecular; Molecular Structure; Mutation; Protein Conformation; Pyridoxal Phosphate; Ribosemonophosphates; Spectrometry, Mass, Electrospray Ionization

2015