| Entry |
|
| Name |
Pentose and glucuronate interconversions - Hippea maritima
|
| Class |
Metabolism; Carbohydrate metabolism
 |
| Pathway map |
| Pentose and glucuronate interconversions |

  |
| Module |
| Glucuronate pathway (uronate pathway) [PATH: hmr00040] | | | | | | Ascorbate biosynthesis, animals, glucose-1P => ascorbate [PATH: hmr00040] |
|
| Organism |
|
| Gene |
| | | UTP-glucose-1-phosphate uridylyltransferase; K00963 UTP--glucose-1-phosphate uridylyltransferase [EC: 2.7.7.9] [KO: K00963] [EC: 2.7.7.9] | | ribulose-phosphate 3-epimerase; K01783 ribulose-phosphate 3-epimerase [EC: 5.1.3.1] [KO: K01783] [EC: 5.1.3.1] |
|
| Compound |
| Pyruvate | | 2-Oxoglutarate | | UDP-glucose | | D-Fructose 6-phosphate | | D-Glucose 1-phosphate | | Glycerone phosphate | | D-Glyceraldehyde 3-phosphate | | UDP-glucuronate | | D-Xylose | | D-Glucuronate | | D-Ribulose 5-phosphate | | 2-Dehydro-3-deoxy-D-gluconate | | D-Xylulose 5-phosphate | | L-Arabinose | | Glycolaldehyde | | D-Ribulose | | D-Xylulose | | L-Xylulose | | D-Galacturonate | | Xylitol | | 2,5-Dioxopentanoate | | Pectate | | Ribitol | | D-Lyxose | | D-Xylonate | | L-Ribulose | | D-Mannonate | | L-Arabitol | | D-Tagaturonate | | 3-Dehydro-L-gulonate | | Pectin | | CDP-ribitol | | L-Gulonate | | D-Altronate | | D-Fructuronate | | D-Ribitol 5-phosphate | | L-Ribulose 5-phosphate | | L-Lyxose | | D-Arabitol | | D-Xylonolactone | | Digalacturonate | | beta-D-Glucuronoside | | L-Xylulose 5-phosphate | | 2-Dehydro-3-deoxy-D-xylonate | | 5-Dehydro-4-deoxy-D-glucuronate | | (4S)-4,6-Dihydroxy-2,5-dioxohexanoate | | 2-Dehydro-3-deoxy-6-phospho-D-gluconate | | (4R,5S)-4,5,6-Trihydroxy-2,3-dioxohexanoate | | D-Glucuronate 1-phosphate | | L-Xylonate | | L-Lyxonate | | D-arabino-Hex-3-ulose 6-phosphate | | 4-(4-Deoxy-alpha-D-gluc-4-enuronosyl)-D-galacturonate | | L-Xylulose 1-phosphate | | 3-Dehydro-L-gulonate 6-phosphate |
|
| Reference |
|
| Authors |
Yew WS, Gerlt JA. |
| Title |
Utilization of L-ascorbate by Escherichia coli K-12: assignments of functions to products of the yjf-sga and yia-sgb operons. |
| Journal |
J Bacteriol 184:302-6 (2002) |
| Reference |
|
| Authors |
Yew WS, Akana J, Wise EL, Rayment I, Gerlt JA. |
| Title |
Evolution of enzymatic activities in the orotidine 5'-monophosphate decarboxylase suprafamily: enhancing the promiscuous D-arabino-hex-3-ulose 6-phosphate synthase reaction catalyzed by 3-keto-L-gulonate 6-phosphate decarboxylase. |
| Journal |
Biochemistry 44:1807-15 (2005) |
| Reference |
|
| Authors |
Yasueda H, Kawahara Y, Sugimoto S. |
| Title |
Bacillus subtilis yckG and yckF encode two key enzymes of the ribulose monophosphate pathway used by methylotrophs, and yckH is required for their expression. |
| Journal |
J Bacteriol 181:7154-60 (1999) |
| Reference |
|
| Authors |
Ibanez E, Gimenez R, Pedraza T, Baldoma L, Aguilar J, Badia J. |
| Title |
Role of the yiaR and yiaS genes of Escherichia coli in metabolism of endogenously formed L-xylulose. |
| Journal |
J Bacteriol 182:4625-7 (2000) |
| Reference |
|
| Authors |
Orita I, Yurimoto H, Hirai R, Kawarabayasi Y, Sakai Y, Kato N |
| Title |
The archaeon Pyrococcus horikoshii possesses a bifunctional enzyme for formaldehyde fixation via the ribulose monophosphate pathway. |
| Journal |
J Bacteriol 187:3636-42 (2005) |
| KO pathway |
|