Primulina huaijiensis: 140971441
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Entry
140971441 CDS
T11038
Name
(RefSeq) lycopene epsilon cyclase, chloroplastic
KO
K06444
lycopene epsilon-cyclase [EC:
5.5.1.18
]
Organism
phua Primulina huaijiensis
Pathway
phua00906
Carotenoid biosynthesis
phua01100
Metabolic pathways
phua01110
Biosynthesis of secondary metabolites
Brite
KEGG Orthology (KO) [BR:
phua00001
]
09100 Metabolism
09109 Metabolism of terpenoids and polyketides
00906 Carotenoid biosynthesis
140971441
Enzymes [BR:
phua01000
]
5. Isomerases
5.5 Intramolecular lyases
5.5.1 Intramolecular lyases (only sub-subclass identified to date)
5.5.1.18 lycopene epsilon-cyclase
140971441
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GFIT
Motif
Pfam:
Lycopene_cycl
DAO
Pyr_redox_2
HI0933_like
FAD_binding_2
GIDA
FAD_oxidored
Pyr_redox_3
Motif
Other DBs
NCBI-GeneID:
140971441
NCBI-ProteinID:
XP_073289809
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Position
2:29512794..29518838
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AA seq
536 aa
AA seq
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MECVTARNMGAMVVSIYPFTSTLHINSLRYEMGFPINRYSSCVSAGLRVRCRGTSAGSES
CLALPVKEDFADEEDYVKAGGSELFFVQMQRNKDMDQQSKLSDKLPRISTEDNILDLVVI
GCGPAGLALAAESAKLGLNVGLIGPDLPFTNNYGVWEDEFKDLGLERCIEHAWRDTIVYL
DDSEPIFIGRAYGRVSRHLLHEELLKRCVESGVSYLSAKVDNIVEASSGHRLVECEGNIV
ISCRLATVASGAASGKLLEYEVGGPRVSVQTAYGVEVEVENNPYDPGVMVFMDYRDFMKN
QGKCLEAQYPTFLYAMPMTPTRVFFEETCLASKDAMPFDLLKNKLMSRLETMGVRIVRTY
EEEWSYIPVGGSLPNTEQKNLAFGAAASMVHPATGYSVVRSLSEAPKYASVIANVLKQCH
VKSILVNAKIFENISMQAWNALWPLERKRQRSFFLFGLALILELDIEGIRTFFHTFFRLP
KWMSQGFLGSTLSSADLLLFAFYMFVISPNDLRKSLVKHLLSDPTGAIMVKTYLTI
NT seq
1611 nt
NT seq
+upstream
nt +downstream
nt
atggagtgtgttacagcaagaaacatgggagcaatggtggtctctatttacccattcact
agtactttgcatataaatagcctgagatatgaaatgggctttcctataaatagatacagt
tcgtgtgtatcagctggcctgagagtgaggtgtaggggtacgagtgctgggagcgagagc
tgtttggctttgcctgtgaaagaagattttgctgatgaagaagattatgtgaaggctggt
gggtccgagcttttttttgtccaaatgcagcggaacaaggacatggatcagcaatccaag
ctttcggataagttaccaagaatatcaacggaagataatatactggatttggtggtaatt
ggctgtggacctgctggcctagctcttgctgctgagtcagctaagctaggcctgaatgtt
gggcttataggtcctgatcttcccttcacaaataactatggtgtgtgggaagatgaattc
aaagatcttgggcttgagcggtgcattgagcatgcctggcgggacaccattgtatatctg
gatgacagtgaacctatttttattggtcgtgcgtatggacgtgttagccgacatttgctc
catgaagagttattgaaaaggtgtgttgagtcaggtgtatcctatcttagtgcaaaggtc
gataatatcgttgaagcttcaagtggccatagacttgttgaatgcgaaggaaatattgtg
atttcctgcaggctcgccactgttgcgtctggagcagcctctgggaaactcttagaatat
gaagttgggggtccaagagtttccgtccagacagcttatggagttgaagtcgaggtggaa
aacaatccctatgatcctggtgtgatggttttcatggattacagagatttcatgaaaaac
caaggtaaatgtctagaagcacagtatccaacatttctgtacgccatgcctatgacccca
acaagagttttctttgaggaaacttgtttagcatcaaaagatgcaatgccttttgatcta
ctgaaaaataagctcatgtctaggcttgagacgatgggtgtacgcattgtgaggacttac
gaagaggagtggtcttatatcccagttggcggttccctgccaaatactgagcagaagaac
ctcgcctttggtgctgctgctagcatggtccatccggccacaggctactcagtcgtgaga
tcattatcagaggctccaaaatatgcgtctgttattgcgaacgttttgaaacaatgccat
gttaagagcattcttgtcaatgcaaagattttcgagaacatctcaatgcaagcttggaat
gctctttggccactggaacgaaaacggcaacgatcatttttcctctttggactggctctt
atattggaattggatattgaaggcataaggacattcttccacacattcttccgtctgcca
aaatggatgtcacagggatttcttggttctacattgtcctctgcagacctcttactattc
gccttctatatgtttgttatatcacccaatgacttgagaaagtcccttgtcaagcatctt
ctatctgatcctactggtgctattatggtcaaaacatatcttactatataa
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