Stappia indica: GH266_10820
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Entry
GH266_10820 CDS
T06350
Symbol
hppD
Name
(GenBank) 4-hydroxyphenylpyruvate dioxygenase
KO
K00457
4-hydroxyphenylpyruvate dioxygenase [EC:
1.13.11.27
]
Organism
siw
Stappia indica
Pathway
siw00130
Ubiquinone and other terpenoid-quinone biosynthesis
siw00350
Tyrosine metabolism
siw00360
Phenylalanine metabolism
siw01100
Metabolic pathways
siw01240
Biosynthesis of cofactors
Brite
KEGG Orthology (KO) [BR:
siw00001
]
09100 Metabolism
09105 Amino acid metabolism
00350 Tyrosine metabolism
GH266_10820 (hppD)
00360 Phenylalanine metabolism
GH266_10820 (hppD)
09108 Metabolism of cofactors and vitamins
00130 Ubiquinone and other terpenoid-quinone biosynthesis
GH266_10820 (hppD)
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
04147 Exosome [BR:
siw04147
]
GH266_10820 (hppD)
Enzymes [BR:
siw01000
]
1. Oxidoreductases
1.13 Acting on single donors with incorporation of molecular oxygen (oxygenases)
1.13.11 With incorporation of two atoms of oxygen
1.13.11.27 4-hydroxyphenylpyruvate dioxygenase
GH266_10820 (hppD)
Exosome [BR:
siw04147
]
Exosomal proteins
Exosomal proteins of other body fluids (saliva and urine)
GH266_10820 (hppD)
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Gene cluster
GFIT
Motif
Pfam:
Glyoxalase_5
Glyoxalase
Glyoxalase_4
Motif
Other DBs
NCBI-ProteinID:
QGZ34962
UniProt:
A0A857C8X7
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Position
2310933..2312045
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AA seq
370 aa
AA seq
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MGPFPHDAPPAKIDDTNPAGTDGFEFVEFSHPEPEKLDALFRRMGYVPVAKHKTKAITLY
RQGDITYVLNAEPGSHAMRFVEEHGPCAPSMAWRVVDARHAFEHAVKKGATPYHGDDKAL
DVPAIVGIGGSLLYFVETYGAKGSAYDDEFEWLGERDPRPAGVGFYYLDHLTHNVYRGNM
DKWWDFYRDLFGFKQIHFFDIDGRITGLVSRAITSPCGKIRIPLNESKDDTSQIAEYLRK
YKGEGIQHIAVGTDNIYDATDLLSDNGLKFMPGPPDTYYEMSRERVHGHDEPIERMKKHG
ILIDGEGVVNGGMTKILLQIFSKTVIGPIFFEFIQRKGDEGFGEGNFRALFESIEEDQIR
RGVIKADAAE
NT seq
1113 nt
NT seq
+upstream
nt +downstream
nt
atgggaccgtttccgcacgacgcaccgcccgccaagatcgacgacaccaacccggccggc
acggacggcttcgagttcgtcgagttttcccaccccgagccggaaaagctcgacgccctg
ttccgccgcatgggctatgtgcccgtcgccaagcacaagaccaaggcaatcaccctctac
cgccagggcgacatcacctatgtgctgaacgccgagcccggctcgcacgcgatgcgcttc
gtcgaggagcacggcccctgcgccccctcgatggcctggcgcgtggtcgatgcccgtcac
gcgttcgagcatgcggtgaagaagggggcaacgccctatcacggcgacgacaaggcgctg
gacgtccccgccatcgtcggcatcggcggctcgctgctctatttcgtcgagacctacggc
gccaagggctcggcctatgacgacgagttcgagtggttgggcgagcgagatccgcgtccg
gcaggggtcggcttctattacctcgaccacctgacccacaacgtctatcgcggcaacatg
gacaagtggtgggacttctaccgcgacctgttcgggttcaagcagatccacttcttcgac
atcgacggccgcatcaccggtctcgtcagccgggcgatcacctcgccttgcggcaagatc
cgcatcccgctcaacgagtcgaaggacgacaccagccagatcgccgagtatcttcgcaag
tacaagggcgaaggcatccagcatatcgcggtcggaacggacaacatctacgacgccacc
gacctcctgtcggacaacgggctgaagttcatgccgggtccgccggacacctattacgag
atgtcccgcgagcgcgtgcatggccatgacgaacccatcgagcggatgaagaagcacggc
atcctgatcgacggcgaaggcgtggtgaacggcgggatgaccaagatcctgctgcagatc
ttctccaagaccgtcatcggtccgatcttcttcgaattcatccagcgcaagggcgacgaa
ggcttcggcgaaggcaacttccgcgccctgttcgaatcgatcgaggaagaccagatccgc
cgcggcgtgatcaaggccgacgctgccgagtaa
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