lysine has been researched along with cholecystokinin in 20 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 4 (20.00) | 18.7374 |
1990's | 5 (25.00) | 18.2507 |
2000's | 4 (20.00) | 29.6817 |
2010's | 6 (30.00) | 24.3611 |
2020's | 1 (5.00) | 2.80 |
Authors | Studies |
---|---|
Turner, DS | 1 |
Jaffe, BM; McGuigan, JE; Newton, WT | 1 |
Jorpes, JE; Mutt, V | 1 |
Grendell, JH; Rothman, SS; Tseng, HC | 1 |
Liu, WL; Shipley, MT | 1 |
Asin, KE; Bednarz, L; Bennett, MJ; Bianchi, BR; Gore, PA; Miller, TR; Nikkel, AL; Stashko, M; Wang, SS; Witte, DG | 1 |
Din, N; Johnsen, AH; Petersen, JG; Rehfeld, JF; Rourke, IJ | 1 |
Blundell, TL; Cawley, NX; Chen, HC; Guruprasad, K; Loh, YP; Olsen, V | 1 |
Coates, D; Corvol, P; Isaac, RE; Keen, JN; Michaud, A; Wetsel, WC; Williams, TA | 1 |
Cobden, PM; Cope, DW; Maccaferri, G; Márton, LF; Roberts, JD; Somogyi, P | 1 |
Andjelic, S; Badr, S; Cauli, B; Gallopin, T; Hill, EL; Hu, E; Lambolez, B; Roux, L; Tamás, G | 1 |
Chhatwal, JP; Hammack, SE; Jasnow, AM; Rainnie, DG; Ressler, KJ | 1 |
Alger, BE; Karson, MA; Milner, TA; Tang, AH | 1 |
Ali, AB; Todorova, M | 1 |
Brunner, J; Chen, K; Soltesz, I; Szabadics, J; Varga, C | 1 |
Buttle, L; Espe, M; Jordal, AE; Lai, HV; Nguyen, MV; Rønnestad, I | 1 |
Barron, SC; Chittajallu, R; Craig, MT; Erkkila, B; Gerfen, S; Jeffries, BW; Liang, BJ; Lopez, CM; McBain, CJ; McFarland, A; Pelkey, KA; Tricoire, L; Yuan, X | 1 |
Bartos, M; Booker, SA; Elgueta, C; Meyer, T; Savanthrapadian, S; Vida, I | 1 |
Proddutur, A; Santhakumar, V; Swietek, B; Yu, J | 1 |
Masiques, NE; Müller, M; Navarro, M; Roura, E; Tilbrook, A; van Barneveld, R; Xu, C | 1 |
20 other study(ies) available for lysine and cholecystokinin
Article | Year |
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Intestinal hormones and insulin release: in vitro studies using rabbit pancreas.
Topics: Animals; Arginine; Cholecystokinin; Drug Antagonism; Drug Synergism; Glucagon; Glucose; Heptoses; In Vitro Techniques; Insulin; Insulin Secretion; Intestinal Mucosa; Islets of Langerhans; Ketones; Leucine; Lysine; Male; Pancreas; Rabbits; Radioimmunoassay; Secretin; Swine | 1969 |
The effect of carriers on the production of antibodies to the gastrin tetrapeptide.
Topics: Alanine; Animals; Antibody Formation; Antigen-Antibody Reactions; Antigens; Blood Proteins; Cattle; Cholecystokinin; Gastrins; Glutamates; Goats; Haptens; Imides; Immunochemistry; Iodine Isotopes; Lysine; Peptides; Rabbits | 1970 |
Structure of porcine cholecystokinin-pancreozymin. 1. Cleavage with thrombin and with trypsin.
Topics: Amino Acids; Animals; Arginine; Autoanalysis; Chemical Phenomena; Chemistry; Cholecystokinin; Chromatography, Ion Exchange; Digestive System; Electrophoresis; Lysine; Peptides; Spectrophotometry; Swine; Thrombin; Trypsin; Valine | 1968 |
Regulation of digestion. I. Effects of glucose and lysine on pancreatic secretion.
Topics: alpha-Amylases; Animals; Cholecystokinin; Glucose; Lysine; Male; Pancreatic Juice; Rats; Secretory Rate; Trypsinogen | 1984 |
Intrabulbar associational system in the rat olfactory bulb comprises cholecystokinin-containing tufted cells that synapse onto the dendrites of GABAergic granule cells.
Topics: Animals; Biological Transport; Brain Mapping; Cholecystokinin; Dendrites; gamma-Aminobutyric Acid; Immunohistochemistry; Lysine; Male; Microscopy, Electron; Neural Pathways; Olfactory Bulb; Rats; Rats, Sprague-Dawley; Synapses | 1994 |
CCK-A-selective tetrapeptides containing lys(N epsilon)-amide residues: favorable in vivo and in vitro effects of N-methylation at the aspartyl residue.
Topics: Amino Acid Sequence; Animals; Appetite Depressants; Aspartic Acid; Cerebral Cortex; Cholecystokinin; Eating; Guinea Pigs; Hydrolysis; Lysine; Methylation; Molecular Sequence Data; Oligopeptides; Pancreas; Phosphatidylinositols; Rats; Receptors, Cholecystokinin; Structure-Activity Relationship; Tetragastrin | 1994 |
Heterologous expression of human cholecystokinin in Saccharomyces cerevisiae. Evidence for a lysine-specific endopeptidase in the yeast secretory pathway.
Topics: Amino Acid Sequence; Cholecystokinin; Chromatography, Gel; Humans; Kinetics; Lysine; Mass Spectrometry; Metalloendopeptidases; Molecular Sequence Data; Peptide Fragments; Protein Processing, Post-Translational; Saccharomyces cerevisiae | 1997 |
Cleavage efficiency of the novel aspartic protease yapsin 1 (Yap3p) enhanced for substrates with arginine residues flanking the P1 site: correlation with electronegative active-site pockets predicted by molecular modeling.
Topics: Alanine; Amino Acid Sequence; Animals; Arginine; Aspartic Acid Endopeptidases; Binding Sites; Cholecystokinin; Kinetics; Lysine; Models, Molecular; Molecular Sequence Data; Rats; Sequence Alignment | 1998 |
Hydrolysis by somatic angiotensin-I converting enzyme of basic dipeptides from a cholecystokinin/gastrin and a LH-RH peptide extended at the C-terminus with gly-Arg/Lys-arg, but not from diarginyl insulin.
Topics: Animals; Arginine; Cholecystokinin; Dipeptides; Female; Gastrins; Glycine; Gonadotropin-Releasing Hormone; Humans; Hydrolysis; Insulin; Lysine; Mice; Peptidyl-Dipeptidase A; Substrate Specificity | 1999 |
Cholecystokinin-immunopositive basket and Schaffer collateral-associated interneurones target different domains of pyramidal cells in the CA1 area of the rat hippocampus.
Topics: Action Potentials; Aging; Animals; Animals, Newborn; Axons; Calbindins; Cholecystokinin; gamma-Aminobutyric Acid; Hippocampus; Immunohistochemistry; Interneurons; Lysine; Male; Neural Inhibition; Organ Culture Techniques; Pyramidal Cells; Rats; Rats, Wistar; S100 Calcium Binding Protein G; Synaptic Transmission | 2002 |
Glutamatergic nonpyramidal neurons from neocortical layer VI and their comparison with pyramidal and spiny stellate neurons.
Topics: Animals; Animals, Newborn; Cholecystokinin; Electric Stimulation; Gene Expression; Glutamate Decarboxylase; Glutamic Acid; In Vitro Techniques; Lysine; Membrane Potentials; Neocortex; Nerve Tissue Proteins; Neurons; Patch-Clamp Techniques; Rats; Rats, Wistar; RNA, Messenger; Vesicular Glutamate Transport Protein 1 | 2009 |
Distinct subtypes of cholecystokinin (CCK)-containing interneurons of the basolateral amygdala identified using a CCK promoter-specific lentivirus.
Topics: Amygdala; Animals; Biophysical Phenomena; Biophysics; Cells, Cultured; Cholecystokinin; Cluster Analysis; Green Fluorescent Proteins; In Vitro Techniques; Interneurons; Lentivirus; Lysine; Male; Membrane Potentials; Patch-Clamp Techniques; Promoter Regions, Genetic; Rats; Rats, Sprague-Dawley; RNA, Messenger | 2009 |
Synaptic cross talk between perisomatic-targeting interneuron classes expressing cholecystokinin and parvalbumin in hippocampus.
Topics: Acetylcholine; Action Potentials; Animals; Axons; Biophysics; Cholecystokinin; Electric Stimulation; gamma-Aminobutyric Acid; Hippocampus; Inhibitory Postsynaptic Potentials; Interneurons; Lysine; Male; Microscopy, Immunoelectron; Neural Inhibition; Parvalbumins; Patch-Clamp Techniques; Rats; Rats, Sprague-Dawley; Synapses; Synaptophysin | 2009 |
Asynchronous release of GABA via tonic cannabinoid receptor activation at identified interneuron synapses in rat CA1.
Topics: Animals; Animals, Newborn; Arachidonic Acids; CA1 Region, Hippocampal; Cannabinoid Receptor Modulators; Chelating Agents; Cholecystokinin; Dendrites; Egtazic Acid; Endocannabinoids; gamma-Aminobutyric Acid; In Vitro Techniques; Inhibitory Postsynaptic Potentials; Interneurons; Lysine; Male; Neural Inhibition; Neural Pathways; Patch-Clamp Techniques; Piperidines; Polyunsaturated Alkamides; Pyrazoles; Rats; Rats, Wistar; Receptor, Cannabinoid, CB1; Synapses | 2010 |
Granule cells in the CA3 area.
Topics: Animals; Animals, Newborn; CA3 Region, Hippocampal; Calbindins; Cannabinoid Receptor Modulators; Cholecystokinin; Excitatory Amino Acid Agonists; Excitatory Amino Acid Antagonists; Excitatory Postsynaptic Potentials; gamma-Aminobutyric Acid; Homeodomain Proteins; In Vitro Techniques; Lysine; Membrane Potentials; Microscopy, Electron, Transmission; Nerve Net; Neurons; Neuropeptide Y; Patch-Clamp Techniques; Quinoxalines; Rats; Rats, Wistar; S100 Calcium Binding Protein G; Synapses; Tumor Suppressor Proteins | 2010 |
Feed intake and brain neuropeptide Y (NPY) and cholecystokinin (CCK) gene expression in juvenile cobia fed plant-based protein diets with different lysine to arginine ratios.
Topics: Amino Acid Sequence; Animals; Arginine; Brain; Cholecystokinin; Diet; Eating; Gene Expression; Lysine; Molecular Sequence Data; Neuropeptide Y; Perciformes; Plant Proteins, Dietary; Sequence Alignment | 2013 |
Dual origins of functionally distinct O-LM interneurons revealed by differential 5-HT(3A)R expression.
Topics: Action Potentials; Age Factors; Animals; Animals, Newborn; Basic Helix-Loop-Helix Transcription Factors; Cell Movement; Cholecystokinin; Embryo, Mammalian; Female; Gene Expression Regulation, Developmental; Hippocampus; In Vitro Techniques; Interneurons; Luminescent Proteins; Lysine; Male; Mice; Mice, Transgenic; Neural Pathways; Neurotransmitter Agents; Nuclear Proteins; Receptors, Serotonin, 5-HT3; Somatostatin; Thyroid Nuclear Factor 1; Transcription Factors; Vasoactive Intestinal Peptide | 2013 |
Synaptic properties of SOM- and CCK-expressing cells in dentate gyrus interneuron networks.
Topics: Animals; Animals, Newborn; Channelrhodopsins; Cholecystokinin; Dentate Gyrus; Green Fluorescent Proteins; In Vitro Techniques; Inhibitory Postsynaptic Potentials; Interneurons; Lysine; Membrane Potentials; Mice, Transgenic; Mutation; Nerve Net; Parvalbumins; Patch-Clamp Techniques; Rats; Rats, Wistar; Somatostatin; Synapses | 2014 |
Dentate total molecular layer interneurons mediate cannabinoid-sensitive inhibition.
Topics: Action Potentials; Animals; Biophysics; Cannabinoid Receptor Modulators; Cannabinoids; Cholecystokinin; Dentate Gyrus; Electric Stimulation; In Vitro Techniques; Interneurons; Lysine; Male; Neural Inhibition; Parvalbumins; Patch-Clamp Techniques; Piperidines; Pyrazoles; Rats; Rats, Wistar; Receptor, Cannabinoid, CB1; Statistics, Nonparametric; Synapses | 2015 |
Leucine (and lysine) increased plasma levels of the satiety hormone cholecystokinin (CCK), and phenylalanine of the incretin glucagon-like peptide 1 (GLP-1) after oral gavages in pigs.
Topics: Animals; Cholecystokinin; Glucagon-Like Peptide 1; Glucose; Incretins; Leucine; Lysine; Male; Phenylalanine; Satiation; Swine | 2023 |