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Results 1 - 5 of 5
EC Number BRENDA No. Title Journal Volume Pages Year Organism PubMed ID
Show all pathways known for 4.1.2.54Display the reaction diagram Show all sequences 4.1.2.54722316 An evolutionary conserved D-galacturonic acid metabolic pathway operates across filamentous fungi capable of pectin degradation Fungal Genet. Biol. 45 1449-1457 2008 Trichoderma reesei 18768163
Show all pathways known for 4.1.2.54Display the reaction diagram Show all sequences 4.1.2.54722316 An evolutionary conserved D-galacturonic acid metabolic pathway operates across filamentous fungi capable of pectin degradation Fungal Genet. Biol. 45 1449-1457 2008 Aspergillus niger 18768163
Show all pathways known for 4.1.2.54Display the reaction diagram Show all sequences 4.1.2.54722316 An evolutionary conserved D-galacturonic acid metabolic pathway operates across filamentous fungi capable of pectin degradation Fungal Genet. Biol. 45 1449-1457 2008 Aspergillus niger CBS 120.49 18768163
Show all pathways known for 4.1.2.54Display the reaction diagram Show all sequences 4.1.2.54722316 An evolutionary conserved D-galacturonic acid metabolic pathway operates across filamentous fungi capable of pectin degradation Fungal Genet. Biol. 45 1449-1457 2008 Trichoderma reesei CBS 383.78 (QM6a) 18768163
Show all pathways known for 4.1.2.54Display the reaction diagram Show all sequences 4.1.2.54722654 The missing link in the fungal D-galacturonate pathway: identification of the L-threo-3-deoxy-hexulosonate aldolase J. Biol. Chem. 282 26195-26201 2007 Trichoderma reesei 17609199
Results 1 - 5 of 5