KEGG   Acanthamoeba castellanii: ACA1_045720
Entry
ACA1_045720       CDS       T02667                                 
Name
(RefSeq) xanthine dehydrogenase
  KO
K00106  xanthine dehydrogenase/oxidase [EC:1.17.1.4 1.17.3.2]
Organism
acan  Acanthamoeba castellanii
Pathway
acan00230  Purine metabolism
acan00232  Caffeine metabolism
acan01100  Metabolic pathways
acan01110  Biosynthesis of secondary metabolites
acan01232  Nucleotide metabolism
acan04146  Peroxisome
Brite
KEGG Orthology (KO) [BR:acan00001]
 09100 Metabolism
  09104 Nucleotide metabolism
   00230 Purine metabolism
    ACA1_045720
  09110 Biosynthesis of other secondary metabolites
   00232 Caffeine metabolism
    ACA1_045720
 09140 Cellular Processes
  09141 Transport and catabolism
   04146 Peroxisome
    ACA1_045720
 09180 Brite Hierarchies
  09183 Protein families: signaling and cellular processes
   04147 Exosome [BR:acan04147]
    ACA1_045720
Enzymes [BR:acan01000]
 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
     ACA1_045720
   1.17.3  With oxygen as acceptor
    1.17.3.2  xanthine oxidase
     ACA1_045720
Exosome [BR:acan04147]
 Exosomal proteins
  Exosomal proteins of breast milk
   ACA1_045720
SSDB
Motif
Pfam: MoCoBD_1 MoCoBD_2 FAD_binding_5 CO_deh_flav_C Ald_Xan_dh_C Fer2_2 Fer2 DHODB_Fe-S_bind
Other DBs
NCBI-GeneID: 14919303
NCBI-ProteinID: XP_004340568
UniProt: L8GZ48
LinkDB
Position
Unknown
AA seq 1110 aa
MMLRHGRRLPSSSSRAALLARNHVASSSTSLQRNGASSVMTRRSNASTTPSKPTQMSAAA
AEEMLKTARVPTSAPSSAPSGLPSASQSALKETRHEVVFYINGKRHAPKSVEPDLTLIDY
LRDQGLTGTKLACGEGGCGACTVTVAHWDQERGEVVHRALNSCLVPVCFVDGMEVTTVEG
LGSTRSGKLHPVQDKMANLFGSQCGFCTPGFVMSIHSALQKFPAPSLHQLEKSIDGNLCR
CTGYRPIVDALRSLEKEYKGKQSETLKKLHHFPQELIERSRHLLELKATHHHAKIVVGNT
EIGIEQRFGRKHYPILISAAHIPELNQVAFLDGGVEVGSAVPLTTLWEARTPSSQEWFSG
TSIRNGACLGGNIVTASPISDLNPVFVALNAQFRLKSMERGERVVNASDFFQPGYRKVDL
HHDEVLTSVVIPYSHENQYVEAYKQARRREDDIAIVNAGFNVALDDSGRVTSARLAFGGL
APFTLQAKETQAFLVGKQWNQDTFENAVDVLRKEVTLKEGTPGGMEKYRTTLALSFFFKY
YLAVAQKMKNGPVIPPSYLSALWPLTAESPKGKQVFAGSDQPVVGQSIVHASAERQVTGE
AVYIDDMPRLQGELNGSLVVSQRPHAKLRKVDASKALQVPGVIGFFSHKDIPGEKIIGDI
VHDEEVFASEVVETVGQPIGIIVAEDEVTAKHAAHLVEVEYEDLEPIFSIEDAVAKQSFF
PLEKKIEKGNVAKGLAESKNVVEGREHFYFEPQITIAQPLDTEMVLYASTQNANKTQKHA
AAVLDMPENKVSCSLRRIGGGFGGKESSNIIYSCCAAVAAHHLNRPVRLLLGRDEDMEWT
GKRHPFEGTYKAGYDNEGNITAVDVQLYNNGGYSHDLSWPVLERALFHSDNVYNVPHFRV
KGRVCKTNLPSNTAFRGFGGPQGMIVTEAWVEHIAHQLKMEPEDVRKKNMYLYEDKTHFG
QPINLKLHELWDQCEAQSDLRQRKKAIAEFNRENRFRKRGISMIPTKFGISFTFTPLNQG
SSLVNVYTDGTVLITHGGVEMGQGLHTKVMQVAANALGVGMKDVHVSETATDKIPNASAT
AASQGTDLYCMATFNACEIVPSPPTSPSLP
NT seq 3333 nt   +upstreamnt  +downstreamnt
atgatgcttagacacggccggcgcttgccatcttcatcatcgagagctgcgcttcttgcg
cgtaatcatgttgcctcttcatcgacttcgctgcaacggaatggggcttcgagcgtgatg
acgcgccgctcgaatgcgagcactacaccctccaagccgacgcaaatgtcggcagctgcg
gccgaagagatgctgaagactgcccgcgttcccacgtctgcaccgtcttcggcaccctcg
ggtctcccgtcggcatctcagagcgcattgaaggagacgcgacacgaggtggtcttctac
atcaacggcaaacggcatgcgcccaaatcagtggagcccgatctcacccttatcgactac
ctgcgcgaccaaggccttaccggcaccaagctggcctgtggtgaaggtggttgcggagcc
tgcacagtgacagtggcgcactgggaccaagagcggggcgaggtggtgcaccgcgcgcta
aactcgtgcctggtgccggtctgcttcgtcgatggcatggaggtcacgaccgtcgagggt
ctcggctccacccgctccggcaagctgcaccccgtgcaggacaagatggccaatctcttc
ggctcccaatgcggcttctgcacgcccggcttcgtgatgtcgatccacagcgcgctgcag
aagttccccgccccttcgctccaccagctcgagaagtcgatcgacggcaacctgtgccgc
tgcacgggctaccggcccattgtcgacgccctccgttcgctggagaaggagtacaaggga
aagcagtctgagacgctgaaaaagctgcaccacttcccccaggagctgatcgagcgatca
cggcacctgctcgagctcaaggcgacccaccaccacgccaagatcgtggtcggcaatacc
gagatcggtatcgagcagcgatttggccgcaagcactacccgatcctcatctcggcggcc
cacattcccgagctcaaccaggtcgccttcctcgacggcggcgtggaagtgggctcggcc
gtcccgcttaccaccctgtgggaggcaaggacgccttcaagccaggagtggttctcgggc
acgtcgatcaggaacggcgcgtgcctgggcggcaacatcgtgacggcctcgcccatctcc
gatctcaacccggtctttgtcgcgctcaacgcccagttccggctcaagtccatggagcgc
ggcgagcgcgtcgtcaacgcgagcgacttcttccagccgggctatcgcaaggtcgacctg
caccacgacgaggtgctcacctcggtcgtgatcccgtacagccacgagaaccagtacgtc
gaggcctacaagcaggcgcgtcgtcgcgaagacgacattgccatcgtcaacgccggcttc
aacgtcgccctcgatgattcgggaagagtgacgtcggcgcggttggcctttggcggcctg
gcgccgttcacgctgcaggccaaggagacgcaggcgttcctggtgggcaagcagtggaat
caggacaccttcgaaaatgccgtggacgtgctgcggaaggaggtcaccctcaaggagggc
actcccggcggcatggagaagtaccgcaccaccctcgcgctcagcttcttcttcaagtac
tacctcgctgtcgcccagaagatgaaaaacggcccagttatcccgccgtcgtacctgtcg
gctctgtggccgctcaccgctgagtcccccaagggcaagcaagtgtttgctggaagcgat
cagcccgtcgtgggacaatcgatcgttcacgcgtccgctgagcgtcaggtcacgggcgag
gccgtctacatcgacgacatgcccaggctgcagggcgagctgaacggctcgctggtcgtc
agccagcggccgcacgccaagctcaggaaggtcgacgcctccaaggccctgcaggtgccc
ggcgtcattggatttttcagccacaaggacatccccggcgagaaaatcattggcgacatc
gtgcacgatgaggaggtctttgccagcgaagtcgtagagaccgtcggccagcccatcggc
atcatcgttgccgaggatgaggtgaccgccaagcacgccgcgcacctcgtcgaggtggag
tacgaggacctggagcctatcttctccatcgaggacgccgtggccaagcagagcttcttc
ccgctcgaaaagaagattgaaaagggcaacgtggccaagggactggctgagtccaagaat
gttgttgagggccgcgagcatttctactttgagccgcagatcaccatcgcgcagccattg
gacacggagatggtgctctatgcttcgacgcagaacgccaacaagacccagaagcacgcg
gccgccgtcctggacatgcccgagaacaaggtctcctgctccctccgacggatcggcggc
ggcttcggcggcaaggaatcgtcgaacattatctactcgtgctgcgcggcggtggcggcg
caccaccttaaccggccggtgcgactgctgctgggccgcgatgaggacatggagtggacc
ggcaagaggcatcccttcgagggcacctacaaggccggctacgacaacgagggcaacatc
accgccgtcgatgtccagttgtacaacaacggtggctactcgcacgatctgtcgtggcct
gttctggagcgcgccctgttccattcggacaacgtctacaacgtgccccacttccgggtc
aagggtcgcgtgtgcaagaccaacctgccgtcgaacaccgccttccgagggttcggtggt
ccccagggcatgatcgtcaccgaggcctgggtcgaacacatcgcccaccagctcaagatg
gagccggaggacgtgcgtaagaagaatatgtatctgtacgaggacaagacccacttcggg
cagccgatcaacctcaagctgcacgagctgtgggaccagtgcgaggcccagagcgacctg
cgccagcgcaagaaggccatcgccgagttcaaccgggagaaccgattccgcaagcgcggc
atctccatgattcccaccaagttcggcatctccttcaccttcaccccgctcaaccagggc
tcgtcgctcgtaaacgtctacaccgacggcaccgtactcatcacccacggtggtgttgag
atgggccagggcctgcacaccaaggtcatgcaggttgctgccaacgcccttggcgtaggc
atgaaggatgtgcatgtgtcggagacagcgacggacaagatccccaacgcctccgcgacg
gctgcctcgcagggaactgacctctactgcatggccaccttcaacgcctgcgagatcgtg
ccgtccccccccaccagcccctctctaccctga

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