Conserved glycine residues in the cytoplasmic domain of the aspartate receptor play essential roles in kinase coupling and on-off switching
Journal Article
Overview
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Adaptation, Biological - Adaptation, Physiological
Alanine
Amino Acids - Cysteine
Amino Acids, Acidic - Aspartic Acid
Amino Acids, Dicarboxylic - Aspartic Acid
Amino Acids, Neutral - Cysteine
Anions - Disulfides
Bacterial Proteins
Bacterial Proteins - Methyl-Accepting Chemotaxis Proteins
Behavior, Animal - Chemotaxis
Biochemical Phenomena - Enzyme Activation
Biochemical Phenomena - Signal Transduction
Cell Physiological Phenomena - Chemotaxis
Cell Physiological Phenomena - Signal Transduction
Conserved Sequence
Cytoplasm
Escherichia coli Proteins
Excitatory Amino Acids - Aspartic Acid
Gammaproteobacteria - Escherichia coli
Gammaproteobacteria - Salmonella typhimurium
Glycine
Gram-Negative Facultatively Anaerobic Rods - Escherichia coli
Gram-Negative Facultatively Anaerobic Rods - Salmonella typhimurium
Histidine Kinase
Inorganic Chemicals - Disulfides
Membrane Proteins
Metabolism - Enzyme Activation
Musculoskeletal Physiological Phenomena - Chemotaxis
Mutagenesis - Amino Acid Substitution
Mutagenesis, Site-Directed
Organic Chemicals - Cysteine
Organic Chemicals - Disulfides
Peptides - Methyl-Accepting Chemotaxis Proteins
Physiological Phenomena - Adaptation, Physiological
Physiological Phenomena - Chemotaxis
Protein Engineering - Amino Acid Substitution
Protein Structure, Tertiary
Proteins - Methyl-Accepting Chemotaxis Proteins
Receptors, Amino Acid
Receptors, Cell Surface - Methyl-Accepting Chemotaxis Proteins
Spatial Behavior - Chemotaxis
Sulfhydryl Compounds - Cysteine
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Date in CU Experts
September 6, 2013 4:37 AM
Full Author List
Coleman MD; Bass RB; Mehan RS; Falke JJ
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