5.4.99.1: methylaspartate mutase
This is an abbreviated version!
For detailed information about methylaspartate mutase, go to the full flat file.
Word Map on EC 5.4.99.1
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5.4.99.1
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adenosylcobalamin
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adenosylcobalamin-dependent
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homolysis
-
b12-dependent
-
cobiialamin
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tetanomorphum
-
cobalt-carbon
-
cochlearium
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s-glutamate
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b12-binding
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2s,3s-3-methylaspartate
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5'-deoxyadenosine
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corrin
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adenosyl
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cobalamin-binding
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cobalamin-dependent
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methylmalonyl
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isomerizations
-
mutases
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5\'-deoxyadenosyl
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2-methyleneglutarate
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mesaconate
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dimethylbenzimidazole
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synthesis
- 5.4.99.1
- adenosylcobalamin
-
adenosylcobalamin-dependent
-
homolysis
-
b12-dependent
-
cobiialamin
- tetanomorphum
-
cobalt-carbon
- cochlearium
-
s-glutamate
-
b12-binding
-
2s,3s-3-methylaspartate
- 5'-deoxyadenosine
-
corrin
-
adenosyl
-
cobalamin-binding
-
cobalamin-dependent
-
methylmalonyl
-
isomerizations
- mutases
-
5\'-deoxyadenosyl
- 2-methyleneglutarate
- mesaconate
- dimethylbenzimidazole
- synthesis
Reaction
Synonyms
AdoCbl-dependent glutamate mutase, Glm, GlmS, Glutamate isomerase, Glutamate mutase, Glutamic acid isomerase, Glutamic acid mutase, Glutamic isomerase, Glutamic mutase, Methylaspartic acid mutase, Mutase, methylaspartate, mutE, mutS, SanU, SanV
ECTree
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Molecular Weight
Molecular Weight on EC 5.4.99.1 - methylaspartate mutase
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14000
-
1 * 53700 + 1 * 14000, two weakly-associating subunits, MutS and MutE, combine with adenosylcobalamin to form the active holoenzyme
18000
-
x * 18000, SDS-PAGE, x * 18370, calcultated, subunit SanU, x * 48000, SDS-PAGE, x * 47850, calculated, subunit SanV
18370
-
x * 18000, SDS-PAGE, x * 18370, calcultated, subunit SanU, x * 48000, SDS-PAGE, x * 47850, calculated, subunit SanV
47850
-
x * 18000, SDS-PAGE, x * 18370, calcultated, subunit SanU, x * 48000, SDS-PAGE, x * 47850, calculated, subunit SanV
48000
-
x * 18000, SDS-PAGE, x * 18370, calcultated, subunit SanU, x * 48000, SDS-PAGE, x * 47850, calculated, subunit SanV
53700
53700
-
1 * 53700 + 1 * 14000, two weakly-associating subunits, MutS and MutE, combine with adenosylcobalamin to form the active holoenzyme