Salvia miltiorrhiza (redroot sage): 130987806
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Entry
130987806 CDS
T09291
Name
(RefSeq) stemmadenine O-acetyltransferase-like
KO
K13065
shikimate O-hydroxycinnamoyltransferase [EC:
2.3.1.133
]
Organism
smil
Salvia miltiorrhiza (redroot sage)
Pathway
smil00940
Phenylpropanoid biosynthesis
smil00941
Flavonoid biosynthesis
smil00945
Stilbenoid, diarylheptanoid and gingerol biosynthesis
smil01100
Metabolic pathways
smil01110
Biosynthesis of secondary metabolites
Module
smil_M00039
Monolignol biosynthesis, phenylalanine/tyrosine => monolignol
Brite
KEGG Orthology (KO) [BR:
smil00001
]
09100 Metabolism
09110 Biosynthesis of other secondary metabolites
00940 Phenylpropanoid biosynthesis
130987806
00945 Stilbenoid, diarylheptanoid and gingerol biosynthesis
130987806
00941 Flavonoid biosynthesis
130987806
Enzymes [BR:
smil01000
]
2. Transferases
2.3 Acyltransferases
2.3.1 Transferring groups other than aminoacyl groups
2.3.1.133 shikimate O-hydroxycinnamoyltransferase
130987806
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Motif
Pfam:
Transferase
Motif
Other DBs
NCBI-GeneID:
130987806
NCBI-ProteinID:
XP_057767471
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Position
6:1648355..1650816
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AA seq
437 aa
AA seq
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MKIEVVCKEVIRPSSPTPTHLRDFKLSFIDERIPHFHGPLIIYYSLNENEKMKQQQQEMV
GRLKSSLSDALVKFYPLAGRMKGQIFVDCNDDGILYVEAEADGRILDIIKSDPQSGLLDK
LTPFITTGTLSTVEEPLAVQITSFICGGIALGMCISHRIADHHSLSSFTKCWAAIARRDH
SQPISPVFNSAALFPPRNTPDFRPNFTSPSVHPLAPKLAMKAFLFAPAAVNALKSQITNI
ANPSRVEAVTAFLWSRCAAACRSDLSVACHPVNIRGKVPDLREHSFGNLFQMIFAENCRH
GGGTSWIELAGKLRAAFGALDDGYVARLLGERGHELAKENFMEISKHLARENVEVFRFSS
LCRFPVYEADFGWGKPAWVSYAGAPNKNCVFLFESVDMRGGVEAWVVMTRQAMERLQGDV
EFLRFTSAFARCDRSRL
NT seq
1314 nt
NT seq
+upstream
nt +downstream
nt
atgaagattgaagttgtgtgtaaagaagtgattaggccttcttccccaacacccacacat
ctgagagacttcaaactctctttcattgatgagagaattcctcattttcacggcccatta
attatttactacagtttgaacgaaaacgaaaagatgaagcagcagcagcaggagatggtt
ggtcgactaaagagttcattatcagatgctttagtaaagttctaccccttggctgggagg
atgaaaggccagattttcgtcgactgcaacgacgacggaatcttgtacgtcgaagctgaa
gccgacggcagaatcttggacatcattaaatccgatccccaatcagggcttctggacaag
cttaccccttttatcaccactggcactctttctactgttgaagagccattagcagttcag
ataacctcatttatctgcggcggaatcgcgttggggatgtgcatttcccacagaatcgcc
gatcaccacagcctcagctccttcaccaaatgctgggcggccatcgcccgtcgcgatcac
tcccaaccgatctcccccgtcttcaactccgccgccctcttcccgccgcgcaacacgccc
gatttccgcccaaacttcaccagtccatcggtgcaccctttagccccaaaactcgcgatg
aaagccttcctcttcgcccccgccgcagtcaacgcgctcaagtctcagatcacgaacatc
gcgaaccccagccgagtcgaggccgtgacggcgttcctgtggagccgctgcgccgccgcc
tgcagatccgacctctccgtcgcgtgccaccccgtcaacatcagggggaaggttccggat
ctgcgggagcactcgttcggaaatctgttccagatgatcttcgcggagaactgccgccac
ggcggcgggacgagctggatcgagctggcggggaagctgagagccgcgttcggcgcgctc
gacgacggatacgtggcgcggctcctgggcgagagagggcacgagctggcgaaggagaat
ttcatggagatcagcaaacatttagcgcgggaaaatgtggaggtgtttaggtttagtagc
ctgtgcaggtttccggtgtacgaggcggatttcggatgggggaagccggcttgggtgagc
tacgccggcgcgccgaataagaactgcgtgtttctgtttgagagcgtggatatgcgcgga
ggagtcgaggcgtgggttgtgatgactcgtcaagctatggagaggcttcaaggagatgtg
gaatttctgcgtttcacttcggcttttgctcgatgtgatcgcagccgtttgtag
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