KEGG   Mollisia scopiformis: LY89DRAFT_781300
Entry
LY89DRAFT_781300  CDS       T04865                                 
Name
(RefSeq) putative xanthine dehydrogenase
  KO
K00106  xanthine dehydrogenase/oxidase [EC:1.17.1.4 1.17.3.2]
Organism
psco  Mollisia scopiformis
Pathway
psco00230  Purine metabolism
psco00232  Caffeine metabolism
psco01100  Metabolic pathways
psco01110  Biosynthesis of secondary metabolites
psco01232  Nucleotide metabolism
psco04146  Peroxisome
Module
psco_M00958  Adenine ribonucleotide degradation, AMP => Urate
psco_M00959  Guanine ribonucleotide degradation, GMP => Urate
Brite
KEGG Orthology (KO) [BR:psco00001]
 09100 Metabolism
  09104 Nucleotide metabolism
   00230 Purine metabolism
    LY89DRAFT_781300
  09110 Biosynthesis of other secondary metabolites
   00232 Caffeine metabolism
    LY89DRAFT_781300
 09140 Cellular Processes
  09141 Transport and catabolism
   04146 Peroxisome
    LY89DRAFT_781300
 09180 Brite Hierarchies
  09183 Protein families: signaling and cellular processes
   04147 Exosome [BR:psco04147]
    LY89DRAFT_781300
Enzymes [BR:psco01000]
 1. Oxidoreductases
  1.17  Acting on CH or CH2 groups
   1.17.1  With NAD+ or NADP+ as acceptor
    1.17.1.4  xanthine dehydrogenase
     LY89DRAFT_781300
   1.17.3  With oxygen as acceptor
    1.17.3.2  xanthine oxidase
     LY89DRAFT_781300
Exosome [BR:psco04147]
 Exosomal proteins
  Exosomal proteins of breast milk
   LY89DRAFT_781300
SSDB
Motif
Pfam: MoCoBD_1 MoCoBD_2 FAD_binding_5 CO_deh_flav_C Ald_Xan_dh_C Fer2_2 Fer2 DUF218
Other DBs
NCBI-GeneID: 28832197
NCBI-ProteinID: XP_018072575
JGI: 781300
UniProt: A0A194XDG6
LinkDB
Position
Unknown
AA seq 1370 aa
MAPSAVSPEPAVSISATHSLSSVTTAYDDTLRFYLNGTRVMLDNIDPEITLLEYLRGIGL
TGTKLGCAEGGCGACTVVVSQYNPTTKKIYHASVNACLAPLVSVDGKHVITIEGIGNVKR
PHPTQERIAKGNGSQCGFCTPGIVMSLYALLRNDSSPTEHEVEEAFDGNLCRCTGYRPIL
DAAQTFSAEKSCGKAKVNGGGGCCMENGNSSGGCCKDKDLKDDQPIKRFAPPGFIEYNPD
TELIFPPPLTKHEFKPLAFGNKRKRWYRPVTMEQLLEIKSVYPSAKIIGGSTETQIEIKF
KAMQYTASVFVGDIPELRQFTFKEDHLEIGGNVILTDLENICLQAVEHYGPVRGQVFTAI
HKQLKYFAGRQIRNVGTPAGNLATASPISDLNPVFVASNAILVARSLDKETEIPMSQFFK
GYRTTALPQDAIIASIRIPVTSAKGEFLQAYKQSKRKDDDIAIVNAAMRISLSESNVVES
VDLVYGGMAPTTIAAKTANGYLVGKKFTDPATLEGTMNALEQDFDLRFGVPGGMATYRKS
LALGFFYRFYHEVLSKLEVNEADVDDEVIEEIERMISHGKEDRESTVAYQQNVLGKPNPH
VAALKQTCGEAQYTDDIPVQKNELYGCLVLSSKARAKILSVDYSPAMDLPGVVDWLDHTD
MPSPEANKWGAPVCDEVFFAVNEVFTAGQPIGIILADTAQHATAGARAVKVDYEELPAIF
TIEEAIEKESFFEHYRYIENGDPEKAFKSADHVFTGVTRMGGQEHFYLETQACVAVPKPE
DGEMEIFASTQNPTETQTYVAQVCNVAANKVVSRVKRLGGGFGGKETRSVQLTGIVALAA
KKTGRPVRCMLNRDEDMVTSGQRHPFLARWKVAVNKDGKLQALDADVFCNAGWSQDLSAA
VCDRALSHIDGCYLIPNVNVRGRLAKTNTMSNTAFRGFGGPQGIFIAESYMEEIADRLDI
PVERLREINFYKPDEPTHFRQELKDWHVPIMYQQVQDEMSYAERREAVTKFNATHRWRKR
GLAIVPTKFGISFTALFLNQAGALVHIYHDGSVLVAHGGTEMGQGLHTKMQMIAAEALGV
PLSDVFISETATNTVANTSSTAASASSDLNGYAIFNACAQINERLKPYREKMGPDAPLKK
LASAAYFDRVNLSANGFYKTPDIGYTWGPNTGQMFFYFTQGVSAAEVEIDTLTGDWTCLR
ADIKMDIGRSINPSIDYGQIEGAFVQGMGLFTMEESLWFRGGPMKGQLATRGPGAYKIPG
FRDIPQEFNVSMLKGVEWENLRTIQRSRGVGEPPLFMGSVVFFAIRDALKAARKQYGVEA
TKGEDAKNDGLLVLESPATPERIRVNCVDPIVKRAYVEPKEGEKSFFISI
NT seq 4113 nt   +upstreamnt  +downstreamnt
atggcacctagtgcagtgtctccagagcctgccgtttcgatttcagccacccactccctt
tcttcagtcacaaccgcgtacgatgatacccttcgattctacctcaatggcactcgtgtc
atgctggacaatatcgatcccgagataacacttctcgagtatcttcgtggcattggcctt
actggcacaaagcttggatgtgctgaaggaggatgcggagcttgcacagtcgtagtgtcc
cagtacaaccccacaacgaagaagatctaccatgcaagcgtcaatgcatgtctggcaccg
ctggtcagcgtagacggcaagcacgttatcactattgagggtattggaaacgtcaagagg
ccacatcctacacaagagagaattgcaaagggtaatggcagtcaatgtggtttctgcaca
cctggcatagtcatgagtctctatgctttgctcaggaatgattcgagtcctacagagcac
gaggttgaggaagcttttgatggaaatctttgcagatgtacgggctatcgccccatcctg
gatgctgctcagacattcagtgccgagaagtcatgcggcaaggctaaggttaatggtggc
ggtgggtgttgcatggagaatggtaactcttctggcggatgctgcaaagacaaagacctc
aaggacgaccagcccatcaaacgctttgcgccacctgggtttatcgagtacaatccagat
acggaactcatcttcccacctcctcttactaagcacgaattcaagccgttggcctttggg
aacaaaaggaagcggtggtaccgtccggtgaccatggagcagctcttggaaatcaagagt
gtgtatccatcagccaaaatcattggtgggagtacggagactcaaattgagatcaaattc
aaggctatgcaatatacagcctctgtatttgtaggtgacattccagaattacgacaattt
acattcaaggaagatcatttggagattggcggaaatgtcattctcaccgacctggagaac
atctgcctccaggccgtcgagcattatggacctgtgcgaggtcaggtcttcactgcaatc
cataaacaactcaaatactttgcaggtcgtcaaatcagaaatgtcggtacacctgcaggt
aatcttgcaactgcgtcaccaatctcagatctgaatcccgtgtttgttgcatcaaacgca
attctcgtggccagatctctagacaaggagacagagatcccaatgtcccaattcttcaaa
ggctaccgcaccacggctcttccacaagatgcgatcattgccagcattcgaattcccgtg
acgagtgcaaagggagagtttttgcaagcatacaagcaatccaagcggaaagacgatgac
atcgctattgtcaatgccgctatgagaatttccttgagcgagtctaacgtcgtagaaagc
gtggatcttgtttacggcggcatggccccaactaccatagctgcgaagacagccaatgga
tacctcgtaggcaaaaagtttacggatcctgctactttagagggtacaatgaatgccttg
gagcaagatttcgacctgaggtttggagtccctggtggtatggccacctaccgaaagtcg
ttggctcttgggttcttctatcgtttctaccatgaagtgctctctaagctagaggtcaac
gaagccgatgtggatgatgaggttatagaagagatcgagaggatgatatctcacgggaaa
gaggaccgagaatccacagttgcctaccaacagaatgtccttggaaaaccgaatcctcac
gtggcagcattgaagcagacttgtggagaagcgcagtatactgatgatatacccgttcaa
aagaacgaattgtacggttgtcttgtcctttcgtcgaaagcacgcgccaagattctctcg
gttgattattctccggcgatggatttaccaggagttgtcgattggcttgatcacacagat
atgccttctccggaagccaacaaatggggagctcctgtttgtgacgaggtcttctttgct
gttaatgaagtcttcacagctggccaaccgattggtatcatcttggccgataccgctcaa
catgccaccgctggagccagagctgtaaaggttgattacgaggagctacctgcgatcttc
acgatcgaagaagctattgagaaagaaagtttctttgagcattacaggtatattgaaaat
ggagacccagaaaaagcgttcaaatcagcggatcatgttttcaccggagtcaccagaatg
ggcggacaggagcatttctaccttgaaacacaagcctgtgttgctgtgcctaagcctgaa
gatggcgagatggagatttttgctagtactcagaatcctactgaaactcaaacttatgta
gcccaagtgtgcaacgtggctgccaataaagtcgtctccagggtcaagcgtcttggaggt
ggctttggagggaaggaaacaagatccgtacagctgaccggcattgtagctcttgctgca
aagaagactggtcgaccagtccgttgtatgctgaaccgtgacgaggacatggtaacctct
ggtcaacgacaccctttccttgcaagatggaaagttgcagtcaataaggatgggaaactc
caagcacttgatgcagacgtcttttgcaacgcaggctggtcacaagatcttagtgccgca
gtttgcgatcgagcattgtcccacatcgatgggtgctacctcatccccaacgtcaatgtt
cgaggcagactcgctaagacgaacacgatgtccaacacagctttccgaggctttggtgga
cctcaaggtatcttcattgctgaatcatatatggaagagatcgcggaccgtctggacatt
ccagttgagaggcttcgagagattaatttctacaaaccggatgaacccacgcatttcaga
caagagctcaaggactggcacgtgcctatcatgtatcaacaggttcaggatgaaatgtca
tacgcagagaggagggaggcagtgactaagttcaacgctactcaccgctggaggaagcga
ggtcttgccattgttcctaccaagtttggtatctccttcactgcacttttccttaatcag
gctggtgctctcgtccacatctaccacgacggctctgtccttgttgctcatggtggtact
gaaatgggtcagggtctacacaccaaaatgcagatgatcgctgcagaagcattgggcgtg
cccctctctgatgtcttcatctcagaaacggcgaccaacaccgttgctaatacctcatct
accgcggcttcagcgtcatccgacctgaacggttatgccattttcaatgcctgtgctcag
atcaacgaacgtctcaagccatacagagagaagatgggcccagacgcacccttaaagaag
cttgccagcgccgcctactttgatcgagtcaacctatccgcaaacggcttctacaagacc
cccgacattggatacacctggggacccaacacgggacaaatgttcttctatttcacgcaa
ggtgtctcggccgcagaagtcgaaatcgatactctgaccggagattggacctgtttgcga
gcagacatcaaaatggacattggtcgctccatcaatccttccatcgattatggacaaatc
gaaggagcgttcgtccaaggcatgggactcttcaccatggaagaatctctctggttcaga
ggcggacccatgaaaggccaactcgcaacccgcggtccaggtgcgtacaagatcccaggc
ttcagagacatcccccaagaattcaacgtctcgatgttgaagggcgttgaatgggagaat
ctccggacaatccaaagaagcaggggtgtcggcgaaccgccgttgtttatgggaagtgtg
gttttcttcgcgatcagagatgcgttgaaggctgcgaggaaacagtacggcgttgaggct
acgaagggcgaggatgcgaagaatgatgggttgttggttcttgagagtccggcgacgccg
gagaggatcagggttaattgtgttgatccgattgtgaagagggcgtatgtggagccgaag
gagggcgagaagagtttctttatttcgatttag

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