Rhodamnia argentea (silver malletwood): 115735033
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Entry
115735033 CDS
T10595
Name
(RefSeq) bifunctional TH2 protein, mitochondrial-like isoform X1
KO
K22911
thiamine phosphate phosphatase / amino-HMP aminohydrolase [EC:
3.1.3.100
3.5.99.-]
Organism
rarg Rhodamnia argentea (silver malletwood)
Pathway
rarg00730
Thiamine metabolism
rarg01100
Metabolic pathways
rarg01240
Biosynthesis of cofactors
Module
rarg_M00897
Thiamine biosynthesis, plants, AIR (+ NAD+) => TMP/thiamine/TPP
Brite
KEGG Orthology (KO) [BR:
rarg00001
]
09100 Metabolism
09108 Metabolism of cofactors and vitamins
00730 Thiamine metabolism
115735033
Enzymes [BR:
rarg01000
]
3. Hydrolases
3.1 Acting on ester bonds
3.1.3 Phosphoric-monoester hydrolases
3.1.3.100 thiamine phosphate phosphatase
115735033
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Motif
Pfam:
TENA_THI-4
Motif
Other DBs
NCBI-GeneID:
115735033
NCBI-ProteinID:
XP_048127885
UniProt:
A0ABM3GU54
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Position
10:22458030..22480382
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AA seq
596 aa
AA seq
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MASRPPMASRSPMASGSPSSTSSSPRTPSMAKRLLENDLNLARQLRIHSNREVIFIKFTP
FAIALAAGNLSLDTFQHFITQGKNFLKAFAQAYESAANNTDDEHAERELLELRKIVLMEM
TKHESFLQEWGLDVTNDATPDPGTANCTEFLLAAASGKVDGAKCVLELTTPFEKTIAAIY
TIGALTPCVQLYPFLAAELQMLPGLREDSHPYKKWIKLYTCDSHQELAVKTEELLEKLSV
TLTGDGIDVLYNLYHQAMILEIDLFNSQPFAQPTVVPVIKGLSTAEDRLMFLSNFDLTCT
VHDSSATLAEMTLGTAPKSDCSPSGSEHSPSESPLARMSLSELRNMWKDISKQYTQDYEE
CIESIIPPEKVEFNHSSLVQALEQVADFEKKANSRVIKSGVLRGLKLEDIIKAGKNLILQ
DGCIGFYQKLTQINVVVNVHMLSYCWCGDLIRSSLSSVGFDHSNVHANELIFNEERLSTG
EMVLKVESPIEKLQIYNHILKNDADERNKLTVYVGDCMGDILCLIEADIGIVIGSSESLR
RVGSRFGVTFAPLFAATVRKQKEVTDGGSLKWKGTRSGVLYTVSCWAEIHAFLLGW
NT seq
1791 nt
NT seq
+upstream
nt +downstream
nt
atggcgtctcgtcctccgatggcgtctcgctctcccatggcgtctggctctccttcttcc
acgtcatcttcaccaagaacaccttcgatggcgaaaaggctgctcgagaacgacctcaac
cttgctcggcagctccgcatccactccaacagggaggtgatcttcatcaagttcactccc
ttcgccattgcactggccgccgggaacttgagcctcgacacgttccagcatttcatcacc
cagggcaagaactttctcaaagcgttcgctcaagcgtatgaatccgcagcgaacaatacg
gacgatgaacacgcagaacgcgaattgctggagttaagaaagatcgttttgatggagatg
acaaagcatgaatcattcctgcaggaatggggtttggacgttaccaatgacgccacaccc
gatcccggaacggcgaattgtactgaatttctactggctgcagcttctggtaaagttgat
ggagcaaaatgtgtccttgaactgacaactccgtttgagaagacgatcgctgcaatttac
actattggtgctctaacaccttgcgttcaactatacccttttttggctgcggagctccag
atgttgccaggtcttagggaagatagtcacccttataagaagtggatcaaattgtataca
tgtgatagtcaccaggaattggctgtgaaaactgaagagttgctggagaaactgtctgtc
accttgacaggagatgggatcgatgttctttacaacttgtatcatcaagcaatgatactt
gaaatagacttattcaattctcaaccatttgctcagcccacagtagttcctgtgataaag
ggacttagtactgcagaagatcggctaatgtttctttctaattttgatctgacttgcaca
gttcatgattcatcagcaactttggctgagatgaccctaggaaccgctccgaaatctgat
tgtagtccatccggatctgagcatagtccatctgagagtcctcttgctcggatgtcattg
agtgaattgcgaaatatgtggaaggacatctccaagcagtacacacaagattatgaagaa
tgcatcgaaagcattattccacctgaaaaagtggaatttaatcatagctcgctggttcaa
gcgcttgagcaagtggcagatttcgagaaaaaggcaaattccagagttataaaatctggg
gttcttagaggactgaaacttgaagatataataaaagctggcaaaaacctcattcttcag
gatggttgtatcggtttctatcagaaactcactcagattaatgtggttgttaacgttcac
atgctatcatactgctggtgcggcgatctcattcggtcatctctttcgtcagtgggtttc
gatcattcaaatgtccatgcgaacgagttgatattcaatgaggagcggctgagtaccgga
gaaatggttctgaaggtcgagtcccccatcgagaagcttcaaatatacaaccacatattg
aagaacgacgccgatgagcgaaacaagttgaccgtctacgtgggcgactgcatgggagac
atactatgcctaatcgaagcggatatagggatagtgatagggtcgagcgaaagcttgagg
agggtggggagccgatttggagtgactttcgccccgcttttcgcggccacggtcaggaag
cagaaagaagtcactgatgggggctctctgaagtggaagggaacaaggtcgggagttctt
tacacggtctcgtgctgggcagagatacatgctttcttgttgggatggtag
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