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1 use homologues of both Glu144 and Glu164 in crotonase.
2 id/base catalysis in a second family member, crotonase.
3 applicable to other related enzymes such as crotonase.
4 ce of the crt gene indicates that it encodes crotonase, a protein with 261 amino acid residues and a
6 erized members of the crotonase superfamily (crotonase and dienoyl CoA isomerase), MMCD is a hexamer
8 f coenzyme A-independent activity within the crotonases and provide further evidence of a wider supra
11 tyryl-coenzyme A (CoA) dehydrogenase (BHBD), crotonase, and butyryl-CoA dehydrogenase (BCD) from Clos
12 lu164 but not of Glu144 in rat mitochondrial crotonase are encoded by operons of which the functions
13 ive-site residue contrasts with the paradigm crotonases as well as with the recently identified mamma
17 d hbd and also in a gene predicted to encode crotonase (croA), which is involved in fatty acid degrad
18 ), 3-hydroxybutyryl-CoA dehydrogenase (Hbd), crotonase (Crt), and trans-enoyl-CoA reductase (Ter) fro
20 splays sequence homology with members of the crotonase family including enoyl-CoA hydratase (crotonas
22 prafamily of enzymes that have recruited the crotonase fold for the catalysis of reactions other than
23 that methylmalonyl-CoA mutase, an R-specific crotonase, isobutyryl-CoA dehydrogenase, and a GTPase ar
24 12S domains are structurally similar to the crotonase/isomerase superfamily, although only domain 1
25 eral acid/base Glu 144 in the active site of crotonase, its carboxylate side chain is hydrogen bonded
26 anobacterium Anabaena sp. PCC 7120 encodes a crotonase orthologue that displays beta-diketone hydrola
27 id dehalogenase, enolase, amidohydrolase and crotonase superfamilies and to the serine proteases.
28 er structurally characterized members of the crotonase superfamily (crotonase and dienoyl CoA isomera
29 sults reveal the potential of the ubiquitous crotonase superfamily as adaptable catalysts for the con
30 yl]acetic acid, a reaction unusual among the crotonase superfamily as the substrate is not an acyl-Co
32 xylase (MMCD), a newly defined member of the crotonase superfamily encoded by the Escherichia coli ge
33 The results demonstrate the utility of the crotonase superfamily enzymes for stereoselective biocat
36 as a particularly interesting member of the crotonase superfamily that combines in one net reaction
37 rboxymethylproline synthases, members of the crotonase superfamily, aimed at enabling stereoselective
38 erase activities are known activities of the crotonase superfamily, Bcam0581 is the first protein sho
46 the enolase, amidohydrolase, thiyl radical, crotonase, vicinal-oxygen-chelate, and Fe-dependent oxid
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