KEGG   Malassezia restricta: MRET_0856
Entry
MRET_0856         CDS       T06113                                 
Name
(RefSeq) FAD dependent oxidoreductase
  KO
K00273  D-amino-acid oxidase [EC:1.4.3.3]
Organism
mrt  Malassezia restricta
Pathway
mrt00260  Glycine, serine and threonine metabolism
mrt00330  Arginine and proline metabolism
mrt00470  D-Amino acid metabolism
mrt01100  Metabolic pathways
mrt01110  Biosynthesis of secondary metabolites
mrt04146  Peroxisome
Brite
KEGG Orthology (KO) [BR:mrt00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00260 Glycine, serine and threonine metabolism
    MRET_0856
   00330 Arginine and proline metabolism
    MRET_0856
  09106 Metabolism of other amino acids
   00470 D-Amino acid metabolism
    MRET_0856
  09110 Biosynthesis of other secondary metabolites
   00311 Penicillin and cephalosporin biosynthesis
    MRET_0856
 09140 Cellular Processes
  09141 Transport and catabolism
   04146 Peroxisome
    MRET_0856
Enzymes [BR:mrt01000]
 1. Oxidoreductases
  1.4  Acting on the CH-NH2 group of donors
   1.4.3  With oxygen as acceptor
    1.4.3.3  D-amino-acid oxidase
     MRET_0856
SSDB
Motif
Pfam: DAO Pyr_redox NAD_binding_8 FAD_binding_2 Pyr_redox_2 FAD_binding_3 ApbA Glu_dehyd_C Thi4 NAD_binding_7 AlaDh_PNT_C MurD-like_N 3HCDH_N
Other DBs
NCBI-GeneID: 38737622
NCBI-ProteinID: XP_027483863
LinkDB
Position
II:29417..30535
AA seq 372 aa
MPPTQAVVVGAGVLGLTSALYLRKKGYAVTVLARELPEDAASQSFASPWAGANWCSFARN
NMAERRWDEYTYKQFQKLAKELPEDLLTFMPFTCYDVKPNDTETYWFGEVCGGIQEEYAP
KHPAAAEAPYMYKFRSLTLDAPRYLRWLATQVTCPGGQGPPGKIERVTKLRSLKTAVDLV
PRASLVVNATGLGSQDIPEAAETQAYPIRGQTVLVHAPRFRDANVAHCASKISSQGASYV
IPRARSGYVILGGTFHKHVSNPLTPDQQVTERILKDAVQLAPDLLPEHVRADDADAWKSL
DVVGVNIGVRPARAGGARVALDEQPLEMHGRRVGVIHAYGIGPAGYQASHGIAAEVCEWA
DRWEAQARRAHL
NT seq 1119 nt   +upstreamnt  +downstreamnt
atgccaccaacacaggcggtggttgtgggcgcgggcgtgctgggacttacctctgccctc
tatctccggaagaaaggatatgcagtgacagtacttgcccgtgaattgccagaagatgcg
gcatcgcagtcgtttgcatcaccatgggctggcgctaactggtgctcgtttgcacgcaac
aacatggcagagcggcgctgggatgagtacacgtacaagcagttccaaaagttggccaag
gagctgccggaggacttgctcacattcatgcctttcacatgctatgatgtcaagcccaac
gacacagagacgtattggtttggtgaggtgtgtggtggcatccaggaagagtatgcccct
aagcatccagcagctgctgaggcaccctacatgtacaaatttcgctctctcacgctggac
gccccacgatacttgcgctggctagccacgcaagttacctgtcccgggggccaaggtccg
cccggtaagatcgagcgggttaccaagctgcgcagcttgaaaacggccgtcgacctcgta
cctcgtgcttcgctggtggtgaatgccacaggcctgggtagccaggatattccagaggca
gcggagacgcaggcgtatcccatccgtggtcaaactgtgcttgtacatgcgccgcgcttc
cgtgatgccaatgtggcgcattgcgccagcaaaatcagctcccagggtgcttcctacgtg
attcctcgagcccggagtggctacgtcattctcggcggcacattccacaagcatgtgtcc
aacccactcacgcccgatcaacaggtgacagagcgcatcctcaaagatgctgtgcagctc
gcaccggatcttctgccagagcacgttcgtgcagacgatgccgatgcatggaagtctttg
gacgtggtgggtgtcaacattggcgttcgccccgctcgtgcgggaggcgcacgtgtagca
ctggatgagcagccactagaaatgcatggtcgacgcgtaggtgtgattcatgcgtacggt
atcggccctgcgggctaccaggcgagtcatggcattgccgccgaagtatgcgagtgggcc
gataggtgggaggcccaagcgcggcgggcgcacttgtag

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