Salmo trutta (river trout): 115206180
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Entry
115206180 CDS
T08542
Name
(RefSeq) glucuronokinase 1-like isoform X1
KO
K16190
glucuronokinase [EC:
2.7.1.43
]
Organism
stru
Salmo trutta (river trout)
Pathway
stru00040
Pentose and glucuronate interconversions
stru00053
Ascorbate and aldarate metabolism
stru00520
Amino sugar and nucleotide sugar metabolism
stru01100
Metabolic pathways
stru01250
Biosynthesis of nucleotide sugars
Module
stru_M00014
Glucuronate pathway (uronate pathway)
Brite
KEGG Orthology (KO) [BR:
stru00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00040 Pentose and glucuronate interconversions
115206180
00053 Ascorbate and aldarate metabolism
115206180
00520 Amino sugar and nucleotide sugar metabolism
115206180
Enzymes [BR:
stru01000
]
2. Transferases
2.7 Transferring phosphorus-containing groups
2.7.1 Phosphotransferases with an alcohol group as acceptor
2.7.1.43 glucuronokinase
115206180
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GFIT
Motif
Pfam:
NTP_transferase
GHMP_kinases_N
GHMP_kinases_C
NTP_transf_3
DUF7560
MVD-like_N
Tor_FN3_2nd
Motif
Other DBs
NCBI-GeneID:
115206180
NCBI-ProteinID:
XP_029628718
Ensembl:
ENSSTUG00000012810
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Position
13:58571411..58585717
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AA seq
623 aa
AA seq
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MICILLVAGHGTVLETQIKNDVTGLYGQLTGVPKALLPGIGGKKILDFWWETVNTRQLFS
EVYLVTNADKYKHYERWATANDFPVENVVNDGSTTLEGRLGAVADLELAIHSRKLQDDIM
VIAGDMLCADQNFDIAQVLSFFRSKPGELAIYYELEEGEKSSSRGIVEVCPETHRISRFL
EKPQDGVTALRLASVVFYCLRKATLPYLSDFLTLQPQAQDRTFGRFWEWIINEQKLPVFG
MKLPTGFQLIGQVGLSDYTKWLAHYSAQQQQCPAKPITCRSYARVGLMGNPSDGFNGKTI
AMTISNFWAEVTLMESQTLVLLPHPLNDPTEFGSLQDLYCISRKEGYLGGLRLLQATCKK
FYQFCSKQGIALTKQNFTLKYDTNIPRQVGLAGSSAIVSATLKCLMKFYNITESDLPKPT
RANFILNVETDELFITAGLQDRVVQVYEGLVYMDFSKQLMDEQGYGDYIPMDMSSLPPFW
LAYLSDPSDSGRIHSNVRQRWLNGEAEVVEAMKSFAALTDQARVALQGMDWSRLAQLMDE
NFALRRSVYTEDCLGPGNLKMVQLARQFGSAAKLPGSGGAVVGLCLDQVRLVEMRKAFQE
AGCVFCVIVPYNPSGTIGTNSQD
NT seq
1872 nt
NT seq
+upstream
nt +downstream
nt
atgatctgcattttattggtagctggccacggcactgttctagaaactcagataaagaat
gatgtcactggtttgtatggacagctgactggggtgccaaaggcattgttgcctgggata
ggaggaaagaaaatcctggacttctggtgggagacagtgaacacgcggcagttgttcagt
gaggtctatctggtcacaaacgcagacaagtataagcactatgagcgctgggcaacggcc
aatgatttccctgtggagaatgtagtgaacgacggcagcacaacccttgagggccggcta
ggagcagtggctgacctggagctcgccatccacagccgcaagctgcaagacgatatcatg
gtgattgcaggcgatatgctctgtgcagaccagaactttgatattgctcaggttctcagc
ttcttcaggtccaagcctggagagttggccatatactatgagctagaggagggagagaag
agcagctccaggggtatagtggaggtatgccctgagacccacaggatatctcgcttcctt
gagaagccacaggacggagtgacagcattgcgtctggccagtgtggtgttctactgcctt
cgcaaagccacactgccttacctctcagatttcctcaccctgcagccacaagctcaagac
aggacctttggcaggttctgggagtggatcatcaatgagcagaagttacctgtgtttggc
atgaaactgcccacagggttccagctcattggacaagtggggctgtcagactacaccaag
tggcttgcccactattctgcccagcaacagcaatgccctgccaaacctataacatgccgc
tcgtacgcaagagttggactgatggggaatccttctgacggcttcaatggaaaaacgatc
gccatgactatctccaacttctgggctgaggtcacactcatggagagccagaccctggtt
cttctgcctcatccgctcaatgatccgactgaatttggaagcttgcaggatctgtattgt
atcagccgtaaggaggggtacttgggaggtctacggttactccaggctacctgtaagaag
ttttaccagttctgctcaaaacaaggtattgctttgacgaagcagaacttcactctcaag
tatgataccaacattcctcgccaggtgggcctggctggaagtagtgcaatagtgtctgcc
accctgaagtgtctgatgaaattctacaacatcacagaaagtgaccttcccaaacccacc
agggccaacttcatcctcaacgtcgagacggatgaactcttcatcactgctggtcttcag
gacagagttgtgcaggtctatgagggcttggtctacatggactttagcaaacaactgatg
gatgaacagggatatggggattacattcctatggacatgagcagcttgccaccgttctgg
ttagcttatctgagtgatcccagtgactctggtcggattcacagcaatgtcagacagcgc
tggctcaacggagaagctgaagtggttgaggccatgaagtcttttgcggcgctcacagat
caagccagggttgcgctgcagggaatggactggagcaggctggcccagttgatggatgag
aactttgcactgcgacggtctgtgtacacagaagactgtttgggaccaggcaatctcaag
atggtgcaactggcaagacagtttggctcagctgcgaaactacccggcagtggtggtgct
gtagtgggcttgtgtctggaccaagtaagactggtggagatgaggaaagcattccaagag
gctggctgtgtgttctgtgtgattgtgccatataacccatctggtaccattggaaccaac
agccaagactga
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