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There are several matches for 'glnA'.
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9391 matches
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organism
protein
1)
Escherichia coli K12
glnA
- Glutamine synthetase; Catalyzes the ATP-dependent biosynthesis of glutamine from glutamate and ammonia.
2)
Abiotrophia defectiva
GlnA
- KEGG: efa:EF2159 7.9e-171
glnA
; glutamine synthetase, type I K01915; Psort location: Cytoplasmic, score: 9.26.
3)
Absiella dolichum
glnA
- Glutamate--ammonia ligase, catalytic domain protein; KEGG: tte:TTE0821 2.0e-188
glnA
; Glutamine synthase K01915; COG: COG3968 Uncharacterized protein related to glutamine synthetase; Psort location: Cytoplasmic, score:8.87.
4)
Acaryochloris marina
glnA
- Glutamine synthetase, type I.
5)
Accumulibacter aalborgensis
glnA
- Glutamine synthetase; Function of homologous gene experimentally demonstrated in an other organism; enzyme.
6)
Acetobacter aceti
glnA
- Forms a homododecamer; forms glutamine from ammonia and glutamate with the conversion of ATP to ADP and phosphate; also functions in the assimilation of ammonia; highly regulated protein controlled by the addition/removal of adenylyl groups by adenylyltransferase from specific tyrosine residues; addition of adenylyl groups results in inactivation of the enzyme; Derived by automated computational analysis using gene prediction method: Protein Homology.
7)
Acetobacter ascendens
glnA
- Type I glutamate--ammonia ligase; Derived by automated computational analysis using gene prediction method: Protein Homology.
8)
Acetobacter ghanensis
glnA
- Glutamine synthetase.
9)
Acetobacter malorum
glnA
- Glutamine synthetase type I.
10)
Acetobacter okinawensis
glnA
- Unannotated protein.
11)
Acetobacter orleanensis
glnA
- Forms a homododecamer; forms glutamine from ammonia and glutamate with the conversion of ATP to ADP and phosphate; also functions in the assimilation of ammonia; highly regulated protein controlled by the addition/removal of adenylyl groups by adenylyltransferase from specific tyrosine residues; addition of adenylyl groups results in inactivation of the enzyme; Derived by automated computational analysis using gene prediction method: Protein Homology.
12)
Acetobacter oryzifermentans
glnA
- Forms a homododecamer; forms glutamine from ammonia and glutamate with the conversion of ATP to ADP and phosphate; also functions in the assimilation of ammonia; highly regulated protein controlled by the addition/removal of adenylyl groups by adenylyltransferase from specific tyrosine residues; addition of adenylyl groups results in inactivation of the enzyme; Derived by automated computational analysis using gene prediction method: Protein Homology.
13)
Acetobacter persici
glnA
- Forms a homododecamer; forms glutamine from ammonia and glutamate with the conversion of ATP to ADP and phosphate; also functions in the assimilation of ammonia; highly regulated protein controlled by the addition/removal of adenylyl groups by adenylyltransferase from specific tyrosine residues; addition of adenylyl groups results in inactivation of the enzyme; Derived by automated computational analysis using gene prediction method: Protein Homology.
14)
Acetobacter tropicalis
glnA
- Glutamine synthetase type I.
15)
Acholeplasma axanthum
glnA
- Unannotated protein.
16)
Acholeplasma brassicae
glnA
- Glutamine synthetase.
17)
Acholeplasma hippikon
glnA
- Unannotated protein.
18)
Acholeplasma oculi
glnA
- Glutamine synthetase type I.
19)
Acholeplasma palmae
glnA
- Glutamine synthetase.
20)
Achromobacter denitrificans
glnA
- Type I glutamate--ammonia ligase; Derived by automated computational analysis using gene prediction method: Protein Homology.
9391 matches
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