KEGG   Ailuropoda melanoleuca (giant panda): 100483605
Entry
100483605         CDS       T01329                                 
Symbol
TAT
Name
(RefSeq) tyrosine aminotransferase isoform X1
  KO
K00815  tyrosine aminotransferase [EC:2.6.1.5]
Organism
aml  Ailuropoda melanoleuca (giant panda)
Pathway
aml00130  Ubiquinone and other terpenoid-quinone biosynthesis
aml00270  Cysteine and methionine metabolism
aml00350  Tyrosine metabolism
aml00360  Phenylalanine metabolism
aml00400  Phenylalanine, tyrosine and tryptophan biosynthesis
aml01100  Metabolic pathways
Module
aml_M00034  Methionine salvage pathway
aml_M00044  Tyrosine degradation, tyrosine => homogentisate
Brite
KEGG Orthology (KO) [BR:aml00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00270 Cysteine and methionine metabolism
    100483605 (TAT)
   00350 Tyrosine metabolism
    100483605 (TAT)
   00360 Phenylalanine metabolism
    100483605 (TAT)
   00400 Phenylalanine, tyrosine and tryptophan biosynthesis
    100483605 (TAT)
  09108 Metabolism of cofactors and vitamins
   00130 Ubiquinone and other terpenoid-quinone biosynthesis
    100483605 (TAT)
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01007 Amino acid related enzymes [BR:aml01007]
    100483605 (TAT)
Enzymes [BR:aml01000]
 2. Transferases
  2.6  Transferring nitrogenous groups
   2.6.1  Transaminases
    2.6.1.5  tyrosine transaminase
     100483605 (TAT)
Amino acid related enzymes [BR:aml01007]
 Aminotransferase (transaminase)
  Class I
   100483605 (TAT)
SSDB
Motif
Pfam: Aminotran_1_2 TAT_ubiq Aminotran_5 DegT_DnrJ_EryC1 Beta_elim_lyase Cys_Met_Meta_PP Asp_aminotransf
Other DBs
NCBI-GeneID: 100483605
NCBI-ProteinID: XP_002920994
Ensembl: ENSAMEG00000002374
UniProt: D2HFW4
LinkDB
Position
12:67796097..67838055
AA seq 454 aa
MDPYVIQMNSNSNLPSVLDVHVNIGGRSSLPGKMKGRKARWSVKPSDMSNKTFNPIRAIV
DSMKVKPNPNKTMIALSIGDPTVFGNLPTDPEVTQAMKDALDSGKYNGYAPSIGYLSSRE
EIASYYHRPEAPLEAKDVILTSGCSQAIELCLAVLANPGQNILVPRPGFSLYRTLAESMG
IEVKLYNLLPEKSWEIDLKQLESLIDEKTACLIVNNPSNPCGSVFSKSHLQKILAVAAKQ
CVPILADEIYGDMVFSDSKFEPLATLSSNVPILSCGGLAKRWLVPGWRLGWILIHDRRDI
FGNEIRDGLVKLSQRILGPCTIVQGALKSILHRTPQEFYHNTLSFLKSNADLCYGALAAI
PGLQPVRPSGAMYLMVGIEMEHFPEFENDVEFTERLVAEQSVHCLPATCFEYPNFFRVVI
TVPKVMMLEACSRIQEFCELHYHCAEGSQEECDK
NT seq 1365 nt   +upstreamnt  +downstreamnt
atggacccgtatgtcattcagatgaacagcaacagcaacctcccctccgttctggatgtg
catgtcaacattggtgggcgaagctctttgccgggaaaaatgaaaggcaggaaggccaga
tggtccgtgaagccttcagatatgtccaacaaaactttcaatcccatccgagccattgtg
gacagcatgaaggtgaagccaaatccaaacaaaaccatgatcgctctgtcaattggggac
cctactgtgtttggaaacctgcctacagaccctgaagttacccaagccatgaaagatgcc
ctggactctgggaagtataacggctatgccccctccattggctatttatccagtagggag
gagattgcttcttactaccaccggcctgaggctcccctggaagctaaggatgtcattctg
actagtggctgcagtcaggctattgaactttgtttagctgtgttggccaacccaggacaa
aacatcctagttccgagacccggtttctctctctacaggactttggctgaatcgatggga
attgaggtcaaactctacaatttattgccagagaagtcttgggaaattgacttgaaacaa
ctggaatctttgattgatgaaaagacagcttgtctcattgttaataatccatcaaacccc
tgtgggtcagtgttcagtaaaagtcatctccagaaaattctggctgtggctgcaaagcag
tgtgtccccatcttagctgatgagatctatggagacatggtgttttcggattccaaattt
gagcctttggccaccctcagcagcaacgtccccatcctgtcctgtggagggctggccaag
cgctggctggttcctggctggaggttgggctggatcctcatccatgaccgaagagacatt
tttggcaatgagatccgagatgggctggtgaagctgagtcagcggatcctgggaccctgc
accatcgtccagggagctctgaaaagcatcctgcatcgcacccctcaggagttctaccac
aacactctgagcttcctgaagtccaatgctgatctttgctatggggcattggctgccatc
cctggactccagccagtccgtccttccggggccatgtacctcatggttggaattgagatg
gaacatttcccagaatttgagaatgacgtggagttcacggagcgcttagttgctgagcag
tcagtccactgcctcccagcaacgtgcttcgagtacccgaatttcttccgggtggtaatc
acggtccccaaagtgatgatgctggaggcttgtagccggatccaggagttctgtgagctg
cactaccattgtgctgaagggagccaggaagagtgtgacaaatag

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