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Results 1 - 24 of 24
EC Number
Reaction Type
Commentary
Organism
Primary Accession No.
assimilatory sulfite reductase (NADPH)
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sodium salts of thiosulfate and sulfate do not serve as the electron acceptor for reduced F420 oxidation by Fsr. Also, Fsr can not use NADH and NADPH for the reduction of sulfite.; the N-terminal half of Fsr represents a H2F420 dehydrogenase and the C-terminal half a dissimilatory-type siroheme sulfite reductase, and Fsr catalyzes the corresponding partial reactions
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assimilatory sulfite reductase (ferredoxin)
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sodium salts of thiosulfate and sulfate does not serve as the electron acceptor for reduced F420 oxidation by Fsr. Also, Fsr can not use NADH and NADPH for the reduction of sulfite.; the N-terminal half of Fsr represents a H2F420 dehydrogenase and the C-terminal half a dissimilatory-type siroheme sulfite reductase, and Fsr catalyzes the corresponding partial reactions
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[pyruvate dehydrogenase (acetyl-transferring)]-phosphatase
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PDP activity and protein content is higher in fast-twitch oxidative glycolytic muscles, food deprivation decreases PDP activity in all muscle types, PDP2 declines in fast-twitch oxidative glycolytic muscle
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phosphoenolpyruvate phosphatase
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PEP phosphatase increases as active Fe decreases
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protein-synthesizing GTPase
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anti-association activity for splitted 70S ribosomes subunits; together with ribosome recycling factor and GTP transient split of 70S ribosomes into subunits
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nitrile hydratase
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a new biocatalytic mechanism is proposed, that is based on crystallographic data of the active center
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heparin lyase
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random endolytic attack
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3-dehydroquinate synthase
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DHQS itself is of interest because it apparently catalyzes five individual reactions, alcohol oxidation, phosphate omega-elimination, carbonyl reduction, ring opening and intramolecular aldol condensation, in a single active site as well as being a drug target
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germacradienol synthase
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germacradienol/geosmin synthase is a bifunctional enzyme in which the N-terminal domain of the protein converts farnesyl diphosphate, while the C-terminal domain catalyzes the transformation of germacradienol to geosmin
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germacradienol synthase
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putative function is as a germacradienol synthase/terpene cyclase
B0FLN6
cysteine-S-conjugate beta-lyase
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1-aminocyclopropane-1-carboxylate synthase
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14-3-3 protein may inhibit binding to ethylene overproducer 1 proteins, resulting in 1-aminocyclopropane-1-carboxylate and ethylene synthesis
Q10DK7
1-aminocyclopropane-1-carboxylate synthase
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two introns are in the genomic DNA sequence, Southern blot analysis suggests that there might be a multi-gene family encoding for ACC synthase, alignment analysis shows a close association with the wound-inducible ACS of citrus
A9NIT9
1-aminocyclopropane-1-carboxylate synthase
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by Agrobacterium mediated transformation, two transgenic pineapple lines have been produced containing co-suppression constructs designed to down-regulate the expression of the ACACS2 gene
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1-aminocyclopropane-1-carboxylate synthase
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high levels of expression of CyACS1 in the necrotic inflorescences of wild-type Cymbidium at high temperatures, no bud necrosis in the mericlone mutant, but application of exogenous ACC or ethephon to the young inflorescences of nhn restored the high-temperature necrosis response
A0JBY6
1-aminocyclopropane-1-carboxylate synthase
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LE-ACS3 shows a strong interaction with the protein ethylene overproducer 1, the C-terminal tail of ACS is essential for the interaction with ethylene overproducer 1 and signals the proteasome-dependent protein destabilization
Q42881
1-aminocyclopropane-1-carboxylate synthase
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LE-ACS3 shows a strong interaction with the protein ethylene overproducer 1, the C-terminal tail of ACS is essential for the interaction with ethylene overproducer 1 and signals the proteasome-dependent protein destabilization
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S-ribosylhomocysteine lyase
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Bacillus subtilis can use methionine as sole sulfur source, the BsluxS knockout mutant grows poorly in the presence of methionine compared to the wild-type strain, methionine utilization requires first its conversion to homocysteine
O34667
aliphatic aldoxime dehydratase
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electronic absorption, resonance Raman spectroscopy, electronic paramagnetic resonance and rapid scanning spectroscopy shows that ferric OxdB contains a six-coordinate high-spin heme, the substrate is bound to the ferric heme via its oxygen atom, the coordination structure of the heme-aldoxime complex changes redox-dependent
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aliphatic aldoxime dehydratase
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electronic absorption, resonance Raman spectroscopy, electronic paramagnetic resonance and rapid scanning spectroscopy shows that ferric OxdB contains a six-coordinate high-spin heme, the substrate is bound to the ferric heme via its oxygen atom, the coordination structure of the heme-aldoxime complex changes redox-dependent
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aliphatic aldoxime dehydratase
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resonance Raman spectroscopy shows that an reaction intermediate of the hemecontaining enzyme with a highly oxidized heme is formed concomitantly upon direct binding of a substrate
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UDP-glucose 4-epimerase
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catalyses the interconversion of UDP-Gal and UDPGlc; HvUGE also catalyses the interconversion of UDP-GalNAc and UDP-GlcNAc, although it is not known if this has any biological significance.
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UDP-glucose 4-epimerase
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catalyses the interconversion of UDP-Gal and UDPGlc; HvUGE also catalyses the interconversion of UDP-GalNAc and UDP-GlcNAc, although it is not known if this has any biological significance.
Q58IJ6
biotin-[acetyl-CoA-carboxylase] ligase
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biotinylation, mediates attachment of biotin to a fusion protein of a biotin acceptor peptide and GLuc, EC 1.13.12.5
P06709
Results 1 - 24 of 24