Entry |
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Name |
(RefSeq) bifunctional aspartate aminotransferase and glutamate/aspartate-prephenate aminotransferase isoform X1
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KO |
|
Organism |
tang Typha angustifolia (narrow-leaf cattail)
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Pathway |
tang00400 | Phenylalanine, tyrosine and tryptophan biosynthesis |
tang00960 | Tropane, piperidine and pyridine alkaloid biosynthesis |
tang01110 | Biosynthesis of secondary metabolites |
|
Module |
tang_M00040 | Tyrosine biosynthesis, chorismate => arogenate => tyrosine |
tang_M00910 | Phenylalanine biosynthesis, chorismate => arogenate => phenylalanine |
|
Brite |
KEGG Orthology (KO) [BR:tang00001]
09100 Metabolism
09105 Amino acid metabolism
00350 Tyrosine metabolism
140773404
00360 Phenylalanine metabolism
140773404
00400 Phenylalanine, tyrosine and tryptophan biosynthesis
140773404
09110 Biosynthesis of other secondary metabolites
00950 Isoquinoline alkaloid biosynthesis
140773404
00960 Tropane, piperidine and pyridine alkaloid biosynthesis
140773404
Enzymes [BR:tang01000]
2. Transferases
2.6 Transferring nitrogenous groups
2.6.1 Transaminases
2.6.1.1 aspartate transaminase
140773404
2.6.1.78 aspartate---prephenate aminotransferase
140773404
2.6.1.79 glutamate---prephenate aminotransferase
140773404
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SSDB |
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Motif |
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Other DBs |
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LinkDB |
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Position |
13:complement(join(16031085..16031225,16031312..16031425,16031510..16031680,16032817..16032900,16033313..16033426,16033527..16033775,16034261..16034364,16034449..16034542,16034623..16034860,16034966..16035078))
|
AA seq |
473 aa
MESSLSSLASSSPPLPSKHSSINSLINPIAPKTISFSKSWGKRRYSVSIKTTVRSEASSS
DPMLPVDVSICPRVNAVKPSKTMAITDQATALVQAGVPVIRLAAGEPDFDTPAAIAEAGI
RAIREGHTRYTPNAGTLELRKAICHKLEEENGLSYTPDQILVSNGAKQCIMQAVFAVCSP
GDEVLIPAPYWVSYPEMAKLSGGTPVILPTSISDNFLLRPETFASKLNEKSRLLILCSPS
NPTGSVYPKELLEEIADIVRKHPRLLVLSDEMYEHIIYPPAKHTSFASLPGMWERTLTVN
GFSKAFAMTGWRLGYLACPKHFVAACGKIQSQNTSGASSISQKAGLAALNLGYAGGEAVS
SMVKAFQERRDFLVKSFRELPGVKIAEPQGAFYLFVDFSSYYGSEVEGFGLVKDSESLCR
YFLEKAQVALVPGDAFGDDKCIRFSYAASLSTLKAATEKIKEALILLRPPIAV |
NT seq |
1422 nt +upstreamnt +downstreamnt
atggaatcctctctctcctccctcgcttcctcctctccccctcttccctctaaacactct
tctatcaactcgcttatcaatcccatcgcacctaaaaccatctctttctccaaatcttgg
ggtaagaggagatactcagtatcgatcaagaccacggtgaggtcggaggcttcttcctcg
gatccaatgttgcctgttgatgtctccatctgtccgagggtgaacgccgtgaagccgtcg
aagacaatggccatcaccgatcaggcgaccgctctcgtccaggccggcgtgccagtcatt
aggctcgcggcgggcgagcccgatttcgacactcctgctgccatcgccgaggctgggatt
agggctattcgggaaggtcacacgaggtacactcccaatgccgggacactggagttgagg
aaagctatttgtcataagctcgaggaggagaatggcttgtcttatactccagatcaaata
ttggtcagtaatggagccaagcagtgcatcatgcaagcagtgtttgccgtttgttcgcca
ggtgatgaggtcctgattccagcaccatattgggtcagctatcctgagatggctaagttg
tctggtgggacaccagtaatccttcctacaagcatatccgataattttcttttaagaccc
gagacattcgcttcaaaacttaatgaaaaatcaaggcttttgattctctgttctccatca
aatcctactggatctgtctatccgaaagagttgcttgaagagattgctgatatagttagg
aaacatccaagacttctggtattgtctgatgagatgtatgagcatattatctatcctcct
gcaaaacacacaagctttgcttccttacctggaatgtgggagagaactttgactgtcaat
ggattttccaaggcttttgcaatgactggttggcgacttgggtaccttgcttgccctaaa
cattttgttgcagcgtgtggaaagatccaaagccagaacacttcgggtgctagtagcatt
tctcagaaagctgggcttgcagctttaaacttgggttatgccggtggtgaagccgtctca
tctatggtaaaagcatttcaggagcgccgagatttcttagttaaaagctttagggagcta
ccaggagtgaagatagcagagcctcagggtgccttctatttatttgtggattttagctcc
tattacggatctgaagtcgaaggatttggccttgttaaagactctgaatccctttgccgg
tatttcttggagaaggcccaagttgcacttgttccaggagatgcatttggggatgataaa
tgcattcgattctcctatgctgcatctctatctacactgaaagcagcaacggagaagata
aaggaagctctgattttgctcaggccccctattgctgtctaa |