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Reference on EC 1.2.1.95 - L-2-aminoadipate reductase

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REF.
AUTHORS
TITLE
JOURNAL
VOL.
PAGES
YEAR
ORGANISM (UNIPROT)
PUBMED ID
SOURCE
Ford, R.A.; Bhattacharjee, J.K.
Molecular properties of the lys1+ gene and the regulation of.alpha-aminoadipate reductase in Schizosaccharomyces pombe
Curr. Genet.
28
131-137
1995
Schizosaccharomyces pombe (P40976), Schizosaccharomyces pombe, Schizosaccharomyces pombe 972 (P40976)
Manually annotated by BRENDA team
Ehmann, D.E.; Gehring, A.M.; Walsh, C.T.
Lysine biosynthesis in Saccharomyces cerevisiae: mechanism of alpha-aminoadipate reductase (Lys2) involves posttranslational phosphopantetheinylation by Lys5
Biochemistry
38
6171-6177
1999
Saccharomyces cerevisiae (P07702), Saccharomyces cerevisiae
Manually annotated by BRENDA team
Hijarrubia, M.J.; Aparicio, J.F.; Casqueiro, J.; Martin, J.F.
Characterization of the lys2 gene of Acremonium chrysogenum encoding a functional.alpha-aminoadipate activating and reducing enzyme
Mol. Gen. Genet.
264
755-762
2001
Acremonium chrysogenum (Q9HDP9), Acremonium chrysogenum, Acremonium chrysogenum ATCC 48272 (Q9HDP9)
Manually annotated by BRENDA team
Guo, S.; Evans, S.A.; Wilkes, M.B.; Bhattacharjee, J.K.
Novel posttranslational activation of the LYS2-encoded.alpha-aminoadipate reductase for biosynthesis of lysine and site-directed mutational analysis of conserved amino acid residues in the activation domain of Candida albicans
J. Bacteriol.
183
7120-7125
2001
Candida albicans (Q12572), Candida albicans
Manually annotated by BRENDA team
Hijarrubia, M.J.; Aparicio, J.F.; Martin, J.F.
Domain structure characterization of the multifunctional alpha-aminoadipate reductase from Penicillium chrysogenum by limited proteolysis. Activation of alpha-aminoadipate does not require the peptidyl carrier protein box or the reduction domain
J. Biol. Chem.
278
8250-8256
2003
Penicillium chrysogenum
Manually annotated by BRENDA team
Guo, S.; Bhattacharjee, J.K.
Site-directed mutational analysis of the novel catalytic domains of alpha-aminoadipate reductase (Lys2p) from Candida albicans
Mol. Genet. Genomics
269
271-279
2003
Candida albicans (Q12572), Candida albicans
Manually annotated by BRENDA team
Guo, S.; Bhattacharjee, J.K.
Posttranslational activation, site-directed mutation and phylogenetic analyses of the lysine biosynthesis enzymes alpha-aminoadipate reductase Lys1p (AAR) and the phosphopantetheinyl transferase Lys7p (PPTase) from Schizosaccharomyces pombe
Yeast
21
1279-1288
2004
Schizosaccharomyces pombe (P40976), Schizosaccharomyces pombe
Manually annotated by BRENDA team
Yan, H.; He, P.; Cheng, H.R.; Shen, A.; Jiang, N.
Cloning, sequencing and characterization of the alpha-aminoadipate reductase gene (LYS2) from Saccharomycopsis fibuligera
Yeast
24
189-199
2007
Saccharomycopsis fibuligera (Q1W284), Saccharomycopsis fibuligera, Saccharomycopsis fibuligera PD70 (Q1W284), Saccharomycopsis fibuligera PD70
Manually annotated by BRENDA team
Lu, Y.; Mach, R.; Affenzeller, K.; Kubicek, C.
Regulation of alpha-aminoadipate reductase from Penicillium chrysogenum in relation to the flux from alpha-aminoadipate into penicillin biosynthesis
Can. J. Microbiol.
38
758-763
1992
Penicillium chrysogenum
Manually annotated by BRENDA team
Affenzeller, K.; Jaklitsch, W.; Hnlinger, C.; Kubicek, C.
Lysine biosynthesis in Penicillium chrysogenum is regulated by feedback inhibition of alpha-aminoadipate reductase
FEMS Microbiol. Lett.
58
293-297
1989
Penicillium chrysogenum
-
Manually annotated by BRENDA team
Kalb, D.; Lackner, G.; Rappe, M.; Hoffmeister, D.
Activity of alpha-aminoadipate reductase depends on the N-terminally extending domain
ChemBioChem
16
1426-1430
2015
Gelatoporia subvermispora (A0A0S2LUS1)
Manually annotated by BRENDA team
Gatrell, S.; Berg, L.; Grimmett, J.; Moritz, J.; Blemings, K.
Effect of moderate alterations of dietary protein or lysine on indices of lysine metabolism in liver, kidney, and heart of growing pigs1
Can. J. Anim. Sci.
98
9-17
2017
Sus scrofa
-
Manually annotated by BRENDA team
Donzelli, B.; Turgeon, B.; Gibson, D.; Krasnoff, S.
Disruptions of the genes involved in lysine biosynthesis, iron acquisition, and secondary metabolisms affect virulence and fitness in Metarhizium robertsii
Fungal Genet. Biol.
98
23-34
2017
Metarhizium robertsii (A0A0A1V264), Metarhizium robertsii ARSEF 2575 (A0A0A1V264)
Manually annotated by BRENDA team