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Enzyme Handbook 13: Class 2.5 - EC 2.7.1.104 Transferases

Editat de Dietmar Schomburg, Dörte Stephan
en Limba Engleză Paperback – 25 iun 1997
Today, as the large international genome sequence projects are gaining a great amount of public attention and huge sequence data bases are created it be­ comes more and more obvious that we are very limited in our ability to access functional data for the gene products - the proteins, in particular for enzymes. Those data are inherently very difficult to collect, interpret and standardize as they are highly distributed among journals from different fields and are often sub­ ject to experimental conditions. Nevertheless a systematic collection is essential for our interpretation of the genome information and more so for possible appli­ cations of that knowledge in the fields of medicine, agriculture, etc .. Recent pro­ gress on enzyme immobilization, enzyme production, enzyme inhibition, coen­ zyme regeneration and enzyme engineering has opened up fascinating new fields for the potential application of enzymes in a large range of different areas. It is the functional profile of an enzyme that enables a biologist of physician to analyze a metabolic pathway and its disturbance; it is the substrate specificity of an enzyme which tells an analytical biochemist how to design an assay; it is the stability, specificity and efficiency of an enzyme which determines its usefulness in the biotechnical transformation of a molecule. And the sum of all these data will have to be considered when the designer of artificial biocatalysts has to choose the optimum prototype to start with.
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Specificații

ISBN-13: 9783540626084
ISBN-10: 3540626085
Ilustrații: XII, 1097 p.
Dimensiuni: 155 x 235 mm
Greutate: 1.52 kg
Editura: Springer Berlin, Heidelberg
Colecția Springer
Locul publicării:Berlin, Heidelberg, Germany

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Research

Descriere

Today, as the large international genome sequence projects are gaining a great amount of public attention and huge sequence data bases are created it be­ comes more and more obvious that we are very limited in our ability to access functional data for the gene products - the proteins, in particular for enzymes. Those data are inherently very difficult to collect, interpret and standardize as they are highly distributed among journals from different fields and are often sub­ ject to experimental conditions. Nevertheless a systematic collection is essential for our interpretation of the genome information and more so for possible appli­ cations of that knowledge in the fields of medicine, agriculture, etc .. Recent pro­ gress on enzyme immobilization, enzyme production, enzyme inhibition, coen­ zyme regeneration and enzyme engineering has opened up fascinating new fields for the potential application of enzymes in a large range of different areas. It is the functional profile of an enzyme that enables a biologist of physician to analyze a metabolic pathway and its disturbance; it is the substrate specificity of an enzyme which tells an analytical biochemist how to design an assay; it is the stability, specificity and efficiency of an enzyme which determines its usefulness in the biotechnical transformation of a molecule. And the sum of all these data will have to be considered when the designer of artificial biocatalysts has to choose the optimum prototype to start with.

Cuprins

Dimethylallyltranstransferase.- Thiamine pyridinylase.- Thiamine-phosphate pyrophosphorylase.- Adenosylmethionine cyclotransferase.- Galactose-6-sulfurylase.- Methionine adenosyltransferase.- UDP-N-acetylglucosamine 1-carboxyvinyltransferase.- tRNA isopentenyltransferase.- Riboflavin synthase.- Geranyltranstransferase.- trans-Octaprenyltranstransferase.- Dihydropteroate synthase.- Spermidine synthase.- Cob(I)alamin adenosyltransferase.- Glutathione transferase.- 3-Phosphoshikimate 1-carboxyvinyltransferase.- Rubber cis-polyprenylcistransferase.- Farnesyl-diphosphate farnesyltransferase.- Spermine synthase.- Sym-Norspermidine synthase.- Discadenine synthase.- tRNA-uridine aminocarboxypropyltransferase.- Alkylglycerone-phosphate synthase.- Adenylate isopentenyltransferase.- Dimethylallylcistransferase.- Farnesyltranstransferase.- trans-Hexaprenyltranstransferase.- di-trans,poly-cis-Decaprenylcistransferase.- Geranylgeranyl-diphosphate geranylgeranyltransferase.- trans-Pentaprenyltranstransferase.- Tryptophan dimethylallyltransferase.- Aspulvinone dimethylallyltransferase.- Trihydroxypterocarpan dimethylallyltransferase.- Leukotriene-C4 synthase.- Isonocardicin synthase.- 4-Hydroxybenzoate nonaprenyltransferase.- Aristolochene synthase.- Phosphoglycerol geranylgeranyltransferase.- Geranylgeranylglycerol-phosphate geranylgeranyltransferase.- Aspartate transaminase.- Alanine transaminase.- Cysteine transaminase.- Glycine transaminase.- Tyrosine transaminase.- Leucine transaminase.- Kynurenine-oxoglutarate transaminase.- 2,5-Diaminovalerate transaminase.- Histidinol-phosphate transaminase.- Acetylornithine transaminase.- Alanine-oxo-acid transaminase.- Ornithine-oxo-acid transaminase.- Asparagine-oxo-acid transaminase.- Glutamine-pyruvate transaminase.- Glutamine-fructose-6-phosphate transaminase (isomerizing).- Succinyldiaminopimelate transaminase.- beta-Alanine-pyruvate transaminase.- 4-Aminobutyrate transaminase.- D-Alanine transaminase.- (S)-3-Amino-2-methylpropionate transaminase.- 4-Hydroxyglutamate transaminase.- Diiodotyrosine transaminase.- Thyroid-hormone transaminase.- Tryptophan transaminase.- Tryptophan-phenylpyruvate transaminase.- Diamine transaminase.- Pyridoxamine-pyruvate transaminase.- Pyridoxamine-oxaloacetate transaminase.- Valine-3-methyl-2-oxovalerate transaminase.- dTDP-4-amino-4,6-dideoxy-D-glucose transaminase.- UDP-2-acetamido-4-amino-2,4,6-trideoxyglucose transaminase.- Glycine-oxaloacetate transaminase.- L-Lysine 6-transaminase.- (2-Aminoethyl)phosphonate-pyruvate transaminase.- Histidine transaminase.- 2-Aminoadipate transaminase.- (R)-3-Amino-2-methylpropionate-pyruvate transaminase.- D-Methionine-pyruvate transaminase.- Branched-chain-amino-acid transaminase.- Aminolevulinate transaminase.- Alanine-glyoxylate transaminase.- Serine-glyoxylate transaminase.- Diaminobutyrate-pyruvate transaminase.- Alanine-oxomalonate transaminase.- 5-Aminovalerate transaminase.- Dihydroxyphenylalanine transaminase.- Glutamine-scyllo-inosose transaminase.- Serine-pyruvate transaminase.- Phosphoserine transaminase.- Pyridoxamine-phosphate transaminase.- Taurine transaminase.- 1D-1-Guanidino-3-amino-1,3-dideoxy-scyllo-inositol transaminase.- Aromatic-amino-acid transaminase.- Phenylalanine(histidine) transaminase.- dTDP-4-amino-4,6-dideoxygalactose transaminase.- Aromatic-amino-acid-glyoxylate transaminase.- (R)-3-Amino-2-methylpropionate transaminase.- Adenosylmethionine-8-amino-7-oxononanoate transaminase.- Kynurenine-glyoxylate transaminase.- Glutamine-phenylpyruvate transaminase.- N6-Acetyl-beta-lysine transaminase.- Valine-pyruvate transaminase.- 2-Aminohexanoate transaminase.- Ornithine(lysine) transaminase.- N2-Acetylornithine 5-transaminase.- Aspartate-phenylpyruvate transaminase.- Lysine-pyruvate 6-transaminase.- D-4-Hydroxyphenylglycine transaminase.- Methionine-glyoxylate transaminase.- Cephalosporin-C transaminase.- Cysteine-conjugate transaminase.- Oximinotransferase.- dATP(dGTP)-DNA purinetransferase.- Hexokinase.- Glucokinase.- Ketohexokinase.- Fructokinase.- Rhamnulokinase.- Galactokinase.- Mannokinase.- Glucosamine kinase.- Phosphoglucokinase.- 6-Phosphofructokinase.- Gluconokinase.- Dehydrogluconokinase.- Sedoheptulokinase.- Ribokinase.- Ribulokinase.- Xylulokinase.- Phosphoribokinase.- Phosphoribulokinase.- Adenosine kinase.- Thymidine kinase.- Ribosylnicotinamide kinase.- NAD+ kinase.- Dephospho-CoA kinase.- Adenylylsulfate kinase.- Riboflavin kinase.- Erythritol kinase.- Triokinase.- Glycerone kinase.- Glycerol kinase.- Glycerate kinase.- Choline kinase.- Pantothenate kinase.- Pantetheine kinase.- Pyridoxal kinase.- Mevalonate kinase.- Protein kinase.- Phosphorylase kinase.- Homoserine kinase.- Pyruvate kinase.- Glucose-1-phosphate phosphodismutase.- Riboflavin phosphotransferase.- Glucuronokinase.- Galacturonokinase.- 2-Dehydro-3-deoxygluconokinase.- L-Arabinokinase.- D-Ribulokinase.- Uridine kinase.- Hydroxymethylpyrimidine kinase.- Hydroxyethylthiazole kinase.- L-Fuculokinase.- Fucokinase.- L-Xylulokinase.- D-Arabinokinase.- Allose kinase.- 1-Phosphofructokinase.- 2-Dehydro-3-deoxygalactonokinase.- N-Acetylglucosamine kinase.- N-Acylmannosamine kinase.- Acyl-phosphate-hexose phosphotransferase.- Phosphoramidate-hexose phosphotransferase.- Polyphosphate-glucose phosphotransferase.- myo-Inositol 1-kinase.- scyllo-Inosamine 4-kinase.- Undecaprenol kinase.- 1-Phosphatidylinositol 4-kinase.- 1-Phosphatidylinositol-4-phosphate 5-kinase.- Protein-Npi-phosphohistidine-sugar phosphotransferase.- Protamine kinase.- Shikimate kinase.- Streptomycin 6-kinase.- Inosine kinase.- Deoxycytidine kinase.- Deoxyadenosine kinase.- Nucleoside phosphotransferase.- Polynucleotide 5’-hydroxyl-kinase.- Pyrophosphate-glycerol phosphotransferase.- Pyrophosphate-serine phosphotransferase.- Hydroxylysine kinase.- Ethanolamine kinase.- Pseudouridine kinase.- Alkylglycerone kinase.- beta-Glucoside kinase.- NADH kinase.- Streptomycin 3”-kinase.- Dihydrostreptomycin-6-phosphate 3’alpha-kinase.- Thiamine kinase.- Pyrophosphate-fructose-6-phosphate 1-phosphotransferase.- Sphinganine kinase.- 5-Dehydro-2-deoxygluconokinase.- Alkylglycerol kinase.- Acylglycerol kinase.- Kanamycin kinase.- [Pyruvate dehydrogenase (lipoamide)] kinase.- 5-Methylthioribose kinase.- Tagatose kinase.- Hamamelose kinase.- Viomycin kinase.- Pyrophosphate-protein phosphotransferase.