EC |
1.1.1.420 |
Accepted name: |
D-apiose dehydrogenase |
Reaction: |
D-apiofuranose + NAD+ = D-apionolactone + NADH + H+ |
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For diagram of erythronate and threonate catabolism, click here |
Other name(s): |
apsD (gene name) |
Systematic name: |
D-apiofuranose:NAD+ 1-oxidoreductase |
Comments: |
The enzyme, characterized from several bacterial species, is involved in a catabolic pathway for D-apiose. |
Links to other databases: |
BRENDA, EXPASY, KEGG, MetaCyc, PDB |
References: |
1. |
Carter, M.S., Zhang, X., Huang, H., Bouvier, J.T., Francisco, B.S., Vetting, M.W., Al-Obaidi, N., Bonanno, J.B., Ghosh, A., Zallot, R.G., Andersen, H.M., Almo, S.C. and Gerlt, J.A. Functional assignment of multiple catabolic pathways for D-apiose. Nat. Chem. Biol. 14 (2018) 696–705. [DOI] [PMID: 29867142] |
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[EC 1.1.1.420 created 2019] |
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EC |
3.1.1.115 |
Accepted name: |
D-apionolactonase |
Reaction: |
D-apionolactone + H2O = D-apionate |
Glossary: |
D-apionolactone = (3R,4R)-3,4-dihydroxy-4-(hydroxymethyl)oxolan-2-one |
Other name(s): |
apnL (gene name) |
Systematic name: |
D-apionolactone lactonohydrolase |
Comments: |
The enzyme, characterized from several bacterial species, is involved in a catabolic pathway for D-apiose. |
Links to other databases: |
BRENDA, EXPASY, KEGG, MetaCyc |
References: |
1. |
Carter, M.S., Zhang, X., Huang, H., Bouvier, J.T., Francisco, B.S., Vetting, M.W., Al-Obaidi, N., Bonanno, J.B., Ghosh, A., Zallot, R.G., Andersen, H.M., Almo, S.C. and Gerlt, J.A. Functional assignment of multiple catabolic pathways for D-apiose. Nat. Chem. Biol. 14 (2018) 696–705. [DOI] [PMID: 29867142] |
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[EC 3.1.1.115 created 2020] |
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