Erigeron canadensis (horseweed): 122582608
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Entry
122582608 CDS
T07610
Name
(RefSeq) bifunctional TH2 protein, mitochondrial-like
KO
K22911
thiamine phosphate phosphatase / amino-HMP aminohydrolase [EC:
3.1.3.100
3.5.99.-]
Organism
ecad
Erigeron canadensis (horseweed)
Pathway
ecad00730
Thiamine metabolism
ecad01100
Metabolic pathways
ecad01240
Biosynthesis of cofactors
Module
ecad_M00897
Thiamine biosynthesis, plants, AIR (+ NAD+) => TMP/thiamine/TPP
Brite
KEGG Orthology (KO) [BR:
ecad00001
]
09100 Metabolism
09108 Metabolism of cofactors and vitamins
00730 Thiamine metabolism
122582608
Enzymes [BR:
ecad01000
]
3. Hydrolases
3.1 Acting on ester bonds
3.1.3 Phosphoric-monoester hydrolases
3.1.3.100 thiamine phosphate phosphatase
122582608
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Motif
Pfam:
TENA_THI-4
ArdA
GSAP-16
Motif
Other DBs
NCBI-GeneID:
122582608
NCBI-ProteinID:
XP_043610960
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Position
1:22950822..22957174
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AA seq
580 aa
AA seq
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MRLFSIKPFSTLLINKPNFKNLKLPSSMSTISQNPILKKEEEISKQLWTKFNKLSINSLY
TPFLVSLASGCLKIDTFRHYIAQDVHFLTSFSHAYELAEECADDDDDDDSKACIVELRQS
VLNELQMHNSFCQEWGFDVSKETIPNSATLKYTDFLLATASGKMEGINSPANLTTPFEKT
KIAAYTIGAMVPCMRLYAFIGQKLQSLIDINGDCHPYRKWIDNYSCEAFQAAALQTEDLL
DKLSVTLTGEELDIMQKLYHQAMKLELEFFLAQPVDKLTVVPLSKEHDSITLFSDFDLTC
TVVDSCAILADTAMATSPKSGQSLPESQSTWEALSKQYSEEYENLMENMLAYQKAEKFDY
EGLRKALEQLSDFERMANTRVIESEILKGLNLEDIKCAGEHLKFQDGCIDFFQDITKNEN
SKVNVHVLSFCWCGDLVRFAFSSGGIDNLHIHANEFVYEGSLSTGEIMKTLESPIDKLQA
FIDILKERDEHDKKLTIYIGDSIGDLLCLLEADIGIVIGSSSSLRKVGTHFGISFMPLYT
SIVMKQREFVEGSDFSWNKLSGVLYTVTSWAEIHSFILGC
NT seq
1743 nt
NT seq
+upstream
nt +downstream
nt
atgcgccttttttcaatcaaaccattttctacccttctaatcaacaaacccaatttcaag
aatttaaaactcccatcatcaatgtcaacaatttctcaaaaccccattttaaaaaaagaa
gaagaaatttcaaaacaattatggactaaattcaataaattatcaattaattcactttat
actccttttcttgtttctttggcttctgggtgtttaaagattgatactttccgacattat
attgctcaagatgttcactttctcacatctttttctcatgcatatgaattagctgaggag
tgtgcagatgatgatgatgatgatgattctaaagcttgtatagttgagttgagacaaagt
gttcttaatgagcttcaaatgcataattctttttgccaagaatggggttttgacgtgtcc
aaagaaactataccaaactctgcaacactcaagtacactgactttttgttggcaacagct
tctggaaagatggaaggaattaatagtcctgcaaatctcacaacgccttttgagaaaaca
aaaattgcagcatacactattggagcaatggttccatgcatgaggctttatgcttttatt
ggtcaaaaactccagtcgttgatcgatattaatggcgattgtcacccatacaggaagtgg
atcgataattattcctgtgaagcttttcaggcagcagctctccagactgaggacttgctg
gacaagttaagtgtcactttgacgggtgaagaacttgatatcatgcaaaaactttaccat
caagcaatgaaacttgagctggagttctttttagctcaacctgttgataagctgacagtt
gtaccattatcaaaggaacacgattccattactcttttttctgattttgatttgacatgc
actgtagttgattcatgtgcaattttggctgatactgctatggctacatcaccaaagtcg
ggtcaaagtctacccgaaagtcaaagtacttgggaagcattatctaagcagtattcagaa
gaatatgaaaatttaatggaaaatatgttggcatatcagaaagcggagaaattcgactat
gagggactaagaaaagcacttgaacagctatcagattttgagagaatggcaaatacaaga
gttattgaatcagagatactcaagggtctgaatcttgaagatattaaatgtgcgggggag
catctcaaattccaagatggttgcattgatttctttcaggacatcacgaagaatgagaat
tcaaaggtgaatgttcatgttctgtccttttgctggtgcggtgatcttgttagatttgcc
ttttcgtcaggaggtatagacaacttgcacatacatgcaaacgagttcgtctatgaaggc
tctctatctactggcgaaattatgaaaacattggagtcccctattgacaagcttcaagct
tttatagacattctaaaggaacgtgacgaacatgacaaaaagctaactatctacattgga
gactcaattggtgatttgctttgccttctcgaagcagacataggcattgtcattggctca
agctcgagtctgagaaaagttggtacccatttcggcatttccttcatgcctttgtacacc
agtatagtcatgaagcaaagagagtttgtagaaggaagtgattttagttggaataaacta
tctggagttctatatacagttactagttgggccgaaatacattctttcattcttggttgt
tga
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