Reference on EC 5.5.1.5 - Carboxy-cis,cis-muconate cyclase
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Thatcher, D.R.; Cain, R.B.
Metabolism of aromatic compounds by fungi. 1. Purification and physical properties of 3-carboxy-cis-cis-muconate cyclase from Aspergillus niger
Eur. J. Biochem.
48
549-556
1974
Aspergillus niger
Thatcher, D.R.; Cain, R.B.
Metabolism of aromatic compounds by fungi. 2. Subunit structure of the 3-carboxy-cis-cis-muconate cyclase of Aspergillus niger
Eur. J. Biochem.
48
557-562
1974
Aspergillus niger
Cook, K.A.; Cain, R.B.
Regulation of aromatic metabolism in the fungi: metabolic control of the 3-oxoadipate pathway in the yeast Rhodotorula mucilaginosa
J. Gen. Microbiol.
85
37-50
1974
Rhodotorula mucilaginosa
Huber, T.J.; Street, J.R.; Bull, A.T.; Cook, K.A.; Cain, R.B.
Aromatic metabolism in the fungi. Growth of Rhodotorula mucilaginosa, in p-hydroxybenzoate-limited chemostats and the effect of growth rate on the synthesis of enzymes of the 3-oxoadipate pathway
Arch. Microbiol.
102
139-144
1975
Rhodotorula mucilaginosa
Thatcher, D.R.; Cain, R.B.
Metabolism of aromatic compounds by fungi. Kinetic properties and mechanism of 3-carboxy-cis,cis-muconate cyclase from Aspergillus niger
Eur. J. Biochem.
56
193-204
1975
Aspergillus niger
Cook, K.A.; Cain R.B.
Enzymes of the 3-oxoadipate pathway in fungi: a serological study of 3-carboxymuconate cyclase (lactonizing enzyme) in fungi and its possible taxonomic significance
J. Gen. Microbiol.
102
81-94
1977
Aspergillus amstelodami, Aspergillus fischeri, Aspergillus flavus, Aspergillus nidulans, Aspergillus niger, Aspergillus oryzae, Aspergillus sydowii, Aspergillus terreus, Amorphotheca resinae, Trichoderma deliquescens, Clonostachys rosea, Kernia nitida, Monascus ruber, Paecilomyces variotii, Penicilliopsis clavariiformis, Penicillium capsulatum, Penicillium commune, Penicillium terrestre
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Mazur, P.; Henzel, W.J.; Mattoo, S.; Kozarich, J.W.
3-Carboxy-cis-cis-muconate lactonizing enzyme from Neurospora crassa: an alternate cycloisomerase motif
J. Bacteriol.
176
1718-1728
1994
Aspergillus niger, Neurospora crassa
Michielse, C.B.; Reijnen, L.; Olivain, C.; Alabouvette, C.; Rep, M.
Degradation of aromatic compounds through the alpha-ketoadipate pathway is required for pathogenicity of the tomato wilt pathogen Fusarium oxysporum f. sp. lycopersici
Mol. Plant Pathol.
13
1089-1100
2012
Fusarium oxysporum
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