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Glutamate/glutamic acid

L-Glutamic acid "glutamic acid bacteria" such as Corymb, glutamicum Brerib. Jlavum Brevib. lactojermentum Microb. ammoniaphilum wild penicillin is added, or biotm is limited >100, 50% 21... [Pg.287]

DPN+ see recommended abbreviation NAD+ Glu Glutamic acid, glutamate, or glutamyl... [Pg.806]

Glutamic Acid A non-essential amino acid naturally occurring in the L-form. Glutamic acid (glutamate) is the most common excitatory neurotransmitter in the central nervous system. [Pg.82]

Poly(amino acids) are usually copolymers due to the difficulty of producing polyamide sequences poly(glutamic acid-glutamate). The degradation of poly(glutamic acid-glutamate) is dependent on the copolymer ratio, as shown in Figure 7.26, which controls the hydrophi-licity of the polymer. [Pg.477]

FIGURE 7.26 Degradation of poly(glutamic acid-glutamate). [Graph reconstructed from data by Sidman et al., J. Memb. Sci., 7, 277 (1980).]... [Pg.478]

The amino acids GABA and glutamic acid (glutamate) (Figs. 4 and 5, respectively) are major inhibitory and excitatory neurotransmitters, respectively, in the central nervous system, and a requisite balance between the two operates in normal brain. Aberrations in the functions of one or both of these neurotransmitters have been implicated in the pathogenesis of several neurological and psychiatric disorders, which include depression (36-38). [Pg.2317]

Monosodium glutamate (MSG), a compound represented by the formula C5H8NNa04 H2O, is a sodium salt of the naturally occurring glutamic acid. Glutamic acid, first isolated in 1886, became an important industrial chemical when its sodium salt was found to enhance... [Pg.414]

Due to the difference of the polymer adsorption onto different faces of different crystal forms, polymer adsorption onto the crystal face has played an important role in crystal polymorphic transformationJ Garti and Zour have studied the effects of surfactants on the polymorphic transformation of glutamic acid. Glutamic acid has two crystal forms, a and p, with the p-form being more stable than the ot-form. Those surfactants that preferentially adsorb onto the surface of the ot-growing crystals retard the transformation of the ot-form to the p-form. A Langmuir analysis indicates that the kinetic coefficient of crystal polymorphic transformation is related to the volume of the surfactant adsorbed at the crystal surface. [Pg.42]

A Aspartic acid Aspartic acid Glutamic acid Glutamic acid... [Pg.1397]

Three fragments of the delicious peptide sequence lysine-glycine, serine-leucine-alanine and aspartic acid-glutamic acid-glutamic acid possess separately umami/salty, bitter and sour taste respectively but mixtures or combinations of them produce a similar taste of that corresponding to the complete octapeptide. The synthesis of CBZ-Lys-Gly-OMe and CBZ-Ser-Leu-OMe were carried out using immobilized trypsin and thermolysin. We have studied the influence of reaction medium (pH, temperature and substrate concentration) on the yield and initial reaction rate of synthesis. [Pg.658]

Glutamic acid (glutamate) is an ot amino acid found in proteins. In mammals, glutamic acid is a non-essential amino acid, meaning it does not need to be present in the diet. Glutamic acid (surprise ) is classified as an acidic amino acid. [Pg.58]

Glutacid. See L-Glutamic acid Glutamate magnesium. See Magnesium glutamate... [Pg.1891]

L-Glutamic acid, N-(l-oxohexadecyl)- Glutamic acid palmitamide. See Palmitoyl glutamic acid Glutamic acid, reaction prods, with glucose. [Pg.1893]

Cocoyl glutamic acid Glutamic acid Amisoft CA Ajinomoto 1 (p. 14) 2 (p. 1821) ... [Pg.272]

The synthesis of N-labeled glutamic acid (glutamate [Glu, E]) has been reported to be effectively accomplished by mixing 2-ketoglutaric acid (a-ketoglutaric acid) in aqueous solution with N-enriched ammonium chloride and dilute sodium hydroxide. Then, as shown in Scheme 12.31, when that mixture is added dropwise over a period of about 5h to a suspension of reduced platinum oxide in water,... [Pg.1160]

Glutamic acid Glutamate oxidase and horseradish peroxidase PAni [111]... [Pg.110]


See other pages where Glutamate/glutamic acid is mentioned: [Pg.9]    [Pg.158]    [Pg.21]    [Pg.32]    [Pg.33]    [Pg.508]    [Pg.181]    [Pg.20]    [Pg.158]    [Pg.22]    [Pg.157]    [Pg.154]    [Pg.314]    [Pg.460]    [Pg.1274]    [Pg.460]    [Pg.34]    [Pg.584]    [Pg.182]    [Pg.477]    [Pg.58]    [Pg.625]    [Pg.176]    [Pg.24]    [Pg.344]    [Pg.173]    [Pg.129]    [Pg.27]   
See also in sourсe #XX -- [ Pg.16 , Pg.75 , Pg.142 , Pg.145 , Pg.161 , Pg.162 , Pg.357 ]

See also in sourсe #XX -- [ Pg.208 , Pg.271 , Pg.272 ]




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67-kDa isoform of glutamic acid decarboxylase

7- Carboxy glutamic Acid

8-Aminolevulinic acid formation from glutamate-1semialdehyde

A glutamic acid

Acid, acetic glutamic

Adsorption glutamic acid

Amide glutamic acid

Amino acid degradation glutamate dehydrogenase

Amino acid degradation glutamate oxidative deamination

Amino acid glutamate dehydrogenase

Amino acid glutamate family

Amino acid glutamine synthetase/glutamate

Amino acid metabolism glutamate dehydrogenase

Amino acid synthetase/glutamate

Amino acid transmitters Aspartate, GABA, Glutamate

Amino acids L-glutamate

Amino acids aspartic and glutamic acid

Amino acids glutamic acid

Amino acids, glutamate

Anaplerotic Reactions in Glutamic Acid Overproduction

Anti-glutamic acid decarboxylase

Antibody glutamic acid decarboxylase

Arabinose with glutamic acid

Aspartic and Glutamic Acids

Azobenzene-containing Poly(L-glutamic acid)

BOC-L-Glutamic acid

Bacillus anthracis glutamic acid

Bacillus anthracis, poly-/?-glutamic acid

Biosynthesis from glutamic acid

Biosynthesis of Glutamic Acid in C. glutamicum

Brain glutamic acid decarboxylase

Branched chain amino acid glutamate

Branched chain amino acid glutamate transaminase

Carbobenzoxy-glutamic acid

Chemicals, biomass glutamic acid

Chlorella cell glutamic acid

Cyclization of -glutamic acid

Cysteine condensation with glutamic acid

D-Glutamic acid

DL-Glutamic acid

Dansyl-D-glutamic acid

Discovery of C. glutamicum, a Glutamic Acid-Producing Bacterium

Effects of glutamic acid

Enzymes, decarboxylation glutamic acid

Excitatory Amino Acid Neurotransmitters Glutamate

Excitatory amino acid: glutamate

F-4 Theoretical routes for conversion of glutamic acid-derived aminopyridines to possible tobacco smoke components

Fermentation glutamic acid

Flavor enhancers glutamic acid

Formimino glutamic acid

Formimino-L-glutamic acid

From -glutamic acid

GABA from glutamic acid

Geometry glutamic acid

Glucose glutamic acid

Glucose with glutamic acid

Glucoside Glutamic Acid

Glutamate acid decarboxylase

Glutamate amino acid synthesis

Glutamate amino acids derived from

Glutamate as a precursor to other amino acids

Glutamate dehydrogenase amino acid composition

Glutamate receptors arachidonic acid

Glutamate semialdehyde amino acid synthesis

Glutamate synthase amino acids

Glutamate/glutamic acid degradation

Glutamate/glutamic acid ionic properties

Glutamate/glutamic acid synthase

Glutamate/glutamic acid synthesis

Glutamate/glutamic acid transmitter function

Glutamic Acid Production by Corynebacterium Glutamicum and Its Molecular Mechanism

Glutamic Acid Receptors

Glutamic Acid Secretion in C. glutamicum

Glutamic Acid as a Building Block

Glutamic Acid mucosa

Glutamic Acids and Glutamines

Glutamic acid

Glutamic acid (Glu

Glutamic acid (Glu pKa value

Glutamic acid 1,5-anhydrides

Glutamic acid 1,5-anhydrides 2-pyrrolidones, 5-carboxy

Glutamic acid 1,5-anhydrides derivatives

Glutamic acid Cotton effects

Glutamic acid absorption spectrum

Glutamic acid acetylation

Glutamic acid action

Glutamic acid ammonium salt

Glutamic acid analogs

Glutamic acid asymmetric synthesis

Glutamic acid bacteria

Glutamic acid biochemical structure

Glutamic acid biosynthesis

Glutamic acid carbon catabolism

Glutamic acid carboxylase

Glutamic acid catabolism

Glutamic acid chemical structure

Glutamic acid cleavage

Glutamic acid coffee

Glutamic acid conformation study

Glutamic acid constitution

Glutamic acid conversion

Glutamic acid cyclization

Glutamic acid cytochrome

Glutamic acid decarboxylase

Glutamic acid decarboxylase (GAD

Glutamic acid decarboxylase and

Glutamic acid decarboxylase inhibitor

Glutamic acid decarboxylation

Glutamic acid degradation

Glutamic acid dehydrogenase

Glutamic acid dehydrogenase, optical

Glutamic acid derivatives

Glutamic acid diamine

Glutamic acid diethyl ester

Glutamic acid dimethyl ester

Glutamic acid discovery

Glutamic acid enantiomers

Glutamic acid folding

Glutamic acid formation

Glutamic acid from reductive amination

Glutamic acid glutathione synthesis

Glutamic acid helical content

Glutamic acid helix-coil transition

Glutamic acid hemoglobin

Glutamic acid hydrochloride

Glutamic acid inhibitors

Glutamic acid interconversion

Glutamic acid into optical isomers

Glutamic acid ionization

Glutamic acid isoelectric point

Glutamic acid isolation

Glutamic acid labeled with ammonium

Glutamic acid light scattering

Glutamic acid lysine-, polypeptide

Glutamic acid manufacture

Glutamic acid mechanism

Glutamic acid metabolic engineering

Glutamic acid metabolism

Glutamic acid metal activation

Glutamic acid metal complexes

Glutamic acid molasses

Glutamic acid molecular mechanism

Glutamic acid monoesters

Glutamic acid monosodium salt

Glutamic acid monosodium salt monohydrate

Glutamic acid occurrence

Glutamic acid optical rotation

Glutamic acid oxidase

Glutamic acid oxidation

Glutamic acid oxidative deamination

Glutamic acid pathways

Glutamic acid peptides

Glutamic acid peptides inhibitors

Glutamic acid plasma concentration

Glutamic acid polypeptide

Glutamic acid production by Corynebacterium glutamicum

Glutamic acid properties

Glutamic acid racemase

Glutamic acid reaction

Glutamic acid reduction

Glutamic acid relative hydrophobicity

Glutamic acid residues

Glutamic acid residues, reactivity

Glutamic acid rotation

Glutamic acid salts

Glutamic acid semialdehyde

Glutamic acid sensor

Glutamic acid side-chain reactions

Glutamic acid sidechains

Glutamic acid sodium glutamate

Glutamic acid solubility

Glutamic acid stereochemistry

Glutamic acid structural classification

Glutamic acid structure

Glutamic acid synthesis

Glutamic acid synthesis via conjugate addition

Glutamic acid taste

Glutamic acid titration curve

Glutamic acid transport

Glutamic acid transporter

Glutamic acid tyrocidine

Glutamic acid tyrosine copolymer

Glutamic acid via reductive amination

Glutamic acid with detergents

Glutamic acid, 95, Table

Glutamic acid, acyl derivatives

Glutamic acid, and

Glutamic acid, brain

Glutamic acid, brain decarboxylase inhibition

Glutamic acid, carboxymetal complexes

Glutamic acid, characteristics

Glutamic acid, chromatographic separation

Glutamic acid, conformation

Glutamic acid, determination

Glutamic acid, glutamate (Glu

Glutamic acid, labelled

Glutamic acid, liberation from proteins

Glutamic acid, organic structure

Glutamic acid, posttranslational carboxylation

Glutamic acid, purification

Glutamic acid, pyrolysis products

Glutamic acid, sodium salt

Glutamic acid, structure and

Glutamic acid, structure and properties

Glutamic acid, transamination

Glutamic acid/glutamine

Glutamic acid/glutamine mixtures

Glutamic acids, antitumor activities

Glutamic amino acids

Glutamic and Aspartic Acid Residues

Glutamic-acid-rich proteins

Glutamic-oxalacetic acid transaminase

Glutamic-pyruvic acid transaminase

Glutamine, Glutamate, and Other Amino Acids

Glycyl-L-glutamic acid

Grain glutamic acid

Hippocampus glutamic acid

Human glutamic acid decarboxylase

Hydroxy glutamic acid

Industrial Process of Glutamic Acid Production

Kainic acid-binding glutamate

Kainic acid-binding glutamate receptors

L Glutamic acid

L-Glutamic Acid Hydrochloride

L-Glutamic acid decarboxylase

L-Glutamic acid dehydrogenase

L-Glutamic acid derivatives

L-Glutamic acid diethyl ester

Ligand binding glutamic acids

Metabolic Flux Analysis in Glutamic Acid Production

Metabolic engineering of glutamic acid production

Metabolic glutamic acid fermentation

Monatin [4-hydroxy-4- glutamic acid

Monosodium glutamic acid

N- -glutamic acid

Of L-glutamic acid

Of glutamic acid

Of glutamic acid peptides

Performic acid, glutamate dehydrogenase

Phthaloyl glutamic acid

Plasma glutamic acid

Poly glutamic acid

Poly-D-glutamic acid

Poly-L-glutamic acid

Poly-L-glutamic acid conjugates

Poly-a,L-glutamic acid

Poly-y-glutamic acid

Polyfy-glutamic acid)

Polypeptide glutamic acid, influence

Production of Other Chemicals from Glutamic Acid

Protein. . 53 glutamic acid released from

Proteins free glutamic acid accumulation

Pteroyl-/-glutamic acid

Pyrrolidine from/-glutamic acid

Racemase, alanine glutamic acid

Racemization glutamic acids

Simple amino acids glutamate

Subject glutamic acid

Sulfur mustard glutamic acid

Synthetase 12 Glutamic Acid Decarboxylase

The Carboxyl Groups of Aspartic and Glutamic Acids

The Glutamate Family of Amino Acids and Nitrogen Fixation

The Glutamate System in Depression Quinolinic Acid as a Depressiogenic Substance

The Glutamate System in Schizophrenia Kynurenic Acid as a Schizophrenogenic Substance

Tricarboxylic acid cycle glutamate

Tyrosine glutamic acid polypeptide

Urine glutamic acid

Y- -L-glutamic acid

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