KEGG   Xiphophorus couchianus (Monterrey platyfish): 114158467
Entry
114158467         CDS       T05908                                 
Name
(RefSeq) DNA (cytosine-5)-methyltransferase 3A-like isoform X1
  KO
K17398  DNA (cytosine-5)-methyltransferase 3A [EC:2.1.1.37]
Organism
xco  Xiphophorus couchianus (Monterrey platyfish)
Pathway
xco00270  Cysteine and methionine metabolism
xco01100  Metabolic pathways
xco04148  Efferocytosis
Module
xco_M00035  Methionine degradation
Brite
KEGG Orthology (KO) [BR:xco00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00270 Cysteine and methionine metabolism
    114158467
 09140 Cellular Processes
  09141 Transport and catabolism
   04148 Efferocytosis
    114158467
 09180 Brite Hierarchies
  09182 Protein families: genetic information processing
   03000 Transcription factors [BR:xco03000]
    114158467
   03032 DNA replication proteins [BR:xco03032]
    114158467
   03036 Chromosome and associated proteins [BR:xco03036]
    114158467
Enzymes [BR:xco01000]
 2. Transferases
  2.1  Transferring one-carbon groups
   2.1.1  Methyltransferases
    2.1.1.37  DNA (cytosine-5-)-methyltransferase
     114158467
Transcription factors [BR:xco03000]
 Eukaryotic type
  Zinc finger
   Cys4 GATA-factors
    114158467
DNA replication proteins [BR:xco03032]
 Eukaryotic type
  DNA Replication Termination Factors
   DNA methylation enzymes
    114158467
Chromosome and associated proteins [BR:xco03036]
 Eukaryotic type
  Heterochromatin formation proteins
   Other heterochromatin formation proteins
    114158467
SSDB
Motif
Pfam: DNM3A_N ADD_DNMT3 DNMT3_ADD_GATA1-like DNA_methylase PWWP
Other DBs
NCBI-GeneID: 114158467
NCBI-ProteinID: XP_027895768
LinkDB
Position
15:914379..979077
AA seq 866 aa
MPSNSPAAAEPPQTPENDTSNDLSEDRADQDSPEEGTPASPHNKRRVGRPSRKRKQLLPE
MATSDPCANAPPTPPEEPEPNPSSQKKRRRRKLDQSERNKDEPDERNCDSPREGETGRLR
RRPVPRVTFQAGDPYYISRRQKEEWLSRWKMEAEQRAYREAEINMMDDLLESGFQKEEEP
ASPTPPPSQQHTDPASPTVAVTPDPVARGDQAIPSEIEYQDGRGFGIGTLVFGKLRGFSW
WPGRIVSWWMSGRSRAADGTRWVMWFGDGKFSVVCVEKLMPLSSFSSAFHQPTYNKQSMY
RKAIFEVLQVASVRAGRPVSSCDASDEAEGVELQTRQMIEWAMTGFLPNGPQSLDPPEEE
QNQFKEGYLEMMPEPEAAYTPPPAKKPRKNSAEKAKIREVIDEGTRERLIQEIKKKTRNI
DDICISCGSLNFSLEHPLFLGAMCQGCKNSFLECAYQYDDDGYQSYCTICCGGREVLMCG
NNNCCRCFCVECVDLLVGTGSAAAAIKEDPWNCYMCGPKSMYGLLRRRDDWPIRLQHFFA
NNHEQEFEPAKLYPPVAAEKRKPIRVLSLFDGIATGLLVLKDLGIQVDKYVASEVCEDSI
TVGMVRHQGRIMYVGDVRNVTRKHIEEWGPFDLVIGGSPCNDLSIVNPARKGLFEGTGRL
FFEFYRLLHEARPKPGDERPFFWLFENVVAMGVSDKRDISRFLECNPVMIDAKEVSAAHR
ARYFWGNLPGMSSRPLTPMANDKLDLQECLEHGRTAKFEKLRTITTRSNSVKQGKDEHFP
VFMDNKEDILWCTEMESGEDGEKEEKKKETESGQTGEGSRVFGFPVHYTDVSNMSRLARQ
RLLGRSWSVPVIRHLFAPLKEYFACN
NT seq 2601 nt   +upstreamnt  +downstreamnt
atgccgtccaacagtcctgccgccgccgagccgcctcagactccagagaatgacacttcc
aacgacttgagtgaagacagagcagatcaggacagtccggaggaaggaacgccagcgagt
ccgcacaacaagcgcagagtcggccggcccagcaggaaacgcaagcagctgcttcctgag
atggcgacctctgacccctgtgcaaatgccccccccactccgccagaggagccagagcca
aacccttcctcacagaagaaacgaaggcgccgaaaactagaccaatctgaaaggaataaa
gacgaaccagatgagagaaactgtgactccccgagagagggagagacagggaggctccgg
aggaggccggtacccagagtgactttccaggctggggatccgtactacatcagcaggagg
cagaaagaagaatggctcagccgctggaagatggaggcagagcagcgggcatacagagag
gcggagattaacatgatggatgacctattagagtccggctttcaaaaagaggaggagcca
gccagcccgaccccgcccccttcacaacaacacacagatccggcctctccaacggttgct
gtgactccggatcccgttgctaggggagaccaggctatacccagcgagattgagtaccag
gacgggcgaggttttggcattggaacgttagtgtttgggaagctgcgaggtttctcctgg
tggcccggccggatcgtttcctggtggatgagcggtcggagtcgagctgcagatgggact
cgctgggtcatgtggttcggtgatggaaaattctccgttgtttgtgtggagaagctgatg
cctctgagctccttctcatcggctttccaccagccaacatacaacaagcagtccatgtac
cgaaaggccatttttgaggttctgcaggttgcaagtgtgcgagcggggagaccagtttcc
tcctgtgatgcgagcgacgaggctgaaggcgtggaacttcagaccagacagatgattgag
tgggccatgaccggcttcctgcccaatgggccacagtcgctggatcctccagaagaggag
caaaatcagtttaaggaaggatacctagagatgatgccagagccggaggcagcgtataca
ccaccacctgcaaagaaaccacgcaaaaactcagcagagaaagcaaaaatcagagaggtg
attgacgaagggaccagagagagactcatacaggaaatcaaaaagaaaacaaggaatata
gatgatatctgcatctcttgcggaagcctcaatttctctctggagcatcctctcttcctg
ggagcaatgtgccagggctgcaaaaactcgttcctcgaatgcgcctaccagtatgacgac
gacggctaccagtcctactgcaccatctgctgtggagggagggaagtgctcatgtgcgga
aacaacaactgctgcaggtgtttctgtgtggaatgtgtagatcttctggtcggcaccggc
tcagcggcagcagcaatcaaagaggacccttggaactgctacatgtgcggacccaagagt
atgtacgggttactacggcgacgggacgactggcccatcaggctacagcacttcttcgcc
aacaatcatgagcaggagtttgaacctgccaaattgtaccctccagttgcagcagagaag
aggaaaccaatcagagtcctctccctgtttgacggcattgccacaggcctgctggtgctg
aaagatttaggcatccaggtggacaagtacgtcgcatcggaagtgtgtgaagactccatc
actgtcggaatggttcggcaccagggacgcatcatgtacgttggggatgtacgcaatgta
acccgcaagcatatcgaagagtggggaccgtttgacctcgtaatcggaggaagtccttgt
aacgacctctccatagtcaatcctgcgaggaaaggcctttttgagggcactgggcggctg
tttttcgagttttaccgtctgctccacgaggcgcggcccaaaccgggtgacgagcggccg
ttcttctggctctttgagaacgtggtcgccatgggagtcagcgacaaacgtgacatctca
cgctttttagagtgtaacccggtgatgatcgacgccaaggaagtctctgctgcccaccgt
gctcgctatttctggggaaacctgcccggcatgtccagtagacctctgacgccgatggca
aacgacaaactggaccttcaagagtgcctggagcacggccgcacagctaagtttgagaag
ttgcgtaccataacgacacgctccaactcagtgaagcaggggaaagacgagcatttcccc
gtcttcatggacaacaaggaggacatcctctggtgcacagaaatggaaagcggtgaggat
ggagagaaagaagagaagaagaaagagacagaatcaggacagacaggggaaggcagcagg
gtgttcggttttcccgtccactacaccgacgtgtccaacatgagtcgtctggcgaggcaa
aggctgctgggtcgttcctggagcgtccccgtcatccggcacctcttcgccccgctcaag
gagtacttcgcctgcaattaa

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