Solanum pennellii: 107018403
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Entry
107018403 CDS
T04130
Name
(RefSeq) bifunctional TH2 protein, mitochondrial isoform X1
KO
K22911
thiamine phosphate phosphatase / amino-HMP aminohydrolase [EC:
3.1.3.100
3.5.99.-]
Organism
spen
Solanum pennellii
Pathway
spen00730
Thiamine metabolism
spen01100
Metabolic pathways
spen01240
Biosynthesis of cofactors
Module
spen_M00897
Thiamine biosynthesis, plants, AIR (+ NAD+) => TMP/thiamine/TPP
Brite
KEGG Orthology (KO) [BR:
spen00001
]
09100 Metabolism
09108 Metabolism of cofactors and vitamins
00730 Thiamine metabolism
107018403
Enzymes [BR:
spen01000
]
3. Hydrolases
3.1 Acting on ester bonds
3.1.3 Phosphoric-monoester hydrolases
3.1.3.100 thiamine phosphate phosphatase
107018403
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GFIT
Motif
Pfam:
TENA_THI-4
Motif
Other DBs
NCBI-GeneID:
107018403
NCBI-ProteinID:
XP_015074358
UniProt:
A0ABM1GQ99
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Position
4:54994396..55015407
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AA seq
603 aa
AA seq
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MRSLLLLSPLRLPIPNPVFNFLHSKSIFRFYCRPSHYLRSAITPATMASPIDESVGVARR
CWINSKKESSFALYTPFVVCLASGTLNLDTFRHYIAQDVHFLKAFVQGCEAAEVCTDDDD
AKVGISELRKNIVNELKMHDAVLEEWGIDLVKECTINPATAKYTDFLLATASGKVEGVKA
AKLATPFEKTKLAAYTLGAMTPCMRLYAYIGKELQVCLEGEKNHPYEKWIDSYASEGFQA
SALQTEDLLDKLSVTLTGEELDIIEKLYHQAMKLEIQFFLAQPLVQKAIIPLSKDHNPAE
QRITIFSDFDLTCTIVDSSAILAEIAIITAPKSDQNQPENQISRMSLADLKNAWGDLSKQ
YTEEYEQCIEKMLLTEKAEKCDYGRLCRTIEQLSDFEKRANSRVVESGVLKGLNLEDIKR
AGQQLILQDGCTDFFQSIIRNENLNADIHVLSYCWCGDLIRSSFSSGGIDGLDIHANELI
FQESLSTGEIDKKVESPIDKVQAFSKILSNCRNDKKNLTVYIGDSVGDLLCLLEADVGIV
LGSSSSLRRVGNHFGVSFVPLFPGVLQKQKMYAGSDSSSWTGLSGVLYTASSWAEIHAFV
LGS
NT seq
1812 nt
NT seq
+upstream
nt +downstream
nt
atgcgctcattattattattatcgcctcttaggctaccaattccaaatccagtattcaat
ttcttgcattccaaatcgatattccgattctactgtcgtccctctcactatttgagatct
gcgattactcctgctacaatggcgtcgccgattgatgaaagtgtgggtgtagcgaggagg
tgttggatcaattctaagaaagagtcttcttttgcactttacactcctttcgtcgtttgc
ttggcttctggaactctgaatcttgatactttccgccattacattgctcaagatgttcac
tttctcaaggcattcgttcaagggtgtgaagctgcagaagtgtgtactgatgatgacgat
gcgaaggttggcattagtgaactgcggaagaatattgtgaatgaacttaaaatgcatgat
gcagttttagaagagtggggcattgatctggtcaaggagtgcactattaaccctgcaaca
gccaagtacacagatttcttattagctacagcttcaggaaaggttgaaggggtaaaagct
gctaaacttgccactccatttgagaaaacaaagttggctgcttatactctaggtgctatg
acaccttgcatgagactttatgcctacattggtaaggagctgcaagtgtgtcttgaggga
gagaaaaatcatccatatgagaagtggattgacagttatgcctctgaaggtttccaggca
tcagctctacagacagaggacttgttggataaactgagtgtcactttgacaggtgaggag
cttgacatcattgagaagctttatcatcaagcaatgaaacttgaaatccagttcttctta
gcccagccgcttgttcagaaagctatcatccctttgtcaaaagatcacaaccctgcggaa
cagcggataacaatattttctgattttgatttgacatgcacgattgttgattcttctgcc
atcttggctgaaattgcaattataacagcaccaaaatctgatcaaaatcaaccagagaat
caaatttcaaggatgtcgttggctgatttaaagaatgcatggggagatctctctaagcag
tacacggaagagtatgagcaatgtatagagaagatgttacttactgaaaaagcggaaaaa
tgtgattacgggagactctgtagaacgattgagcaactttctgattttgagaaaagggcg
aatagtagggtagttgaatctggggtactgaaaggtctgaaccttgaagacattaaacga
gctgggcagcaattgattctccaggatggttgcaccgactttttccagagcataataaga
aatgaaaatctgaatgcagacattcatgttctctcctattgctggtgtggtgaccttatt
aggtcttccttttcatcagggggcatagatggtctagatattcatgccaatgagttgata
tttcaagaatctctatctactggtgaaattgataagaaagttgaatcccccattgacaag
gttcaagcttttagtaaaattctatcgaattgtcgcaacgacaaaaagaatctgacagta
tatattggggattcagttggcgacttactttgcttgctggaagcagatgttggcattgtg
cttggttcgagctcaagtctgaggagggtggggaatcattttggtgtttcttttgttcct
ctttttccaggtgttctccagaagcagaagatgtatgctgggtcagactcatcaagttgg
acgggactttctggtgttctctatactgcctctagctgggctgagatacatgcttttgta
ttgggatcatga
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