Clupea harengus (Atlantic herring): 105893755
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Entry
105893755 CDS
T09045
Name
(RefSeq) glucuronokinase with putative uridyl pyrophosphorylase
KO
K16190
glucuronokinase [EC:
2.7.1.43
]
Organism
char
Clupea harengus (Atlantic herring)
Pathway
char00040
Pentose and glucuronate interconversions
char00053
Ascorbate and aldarate metabolism
char00520
Amino sugar and nucleotide sugar metabolism
char01100
Metabolic pathways
char01250
Biosynthesis of nucleotide sugars
Module
char_M00014
Glucuronate pathway (uronate pathway)
Brite
KEGG Orthology (KO) [BR:
char00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00040 Pentose and glucuronate interconversions
105893755
00053 Ascorbate and aldarate metabolism
105893755
00520 Amino sugar and nucleotide sugar metabolism
105893755
Enzymes [BR:
char01000
]
2. Transferases
2.7 Transferring phosphorus-containing groups
2.7.1 Phosphotransferases with an alcohol group as acceptor
2.7.1.43 glucuronokinase
105893755
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GFIT
Motif
Pfam:
NTP_transferase
GHMP_kinases_N
GHMP_kinases_C
EVE
Tor_FN3_2nd
Motif
Other DBs
NCBI-GeneID:
105893755
NCBI-ProteinID:
XP_012675666
Ensembl:
ENSCHAG00000023195
UniProt:
A0A6P3VN90
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Position
17:21870205..21879595
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AA seq
628 aa
AA seq
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MICILIVAGHDTVLQGQLKNDDTGLYGHLTGVPKALLPGVGGKKILDFWWETVNTRQLFT
EVYLVTNADKYKHYERWATANDFPVENLVNDGSTTLEDRLGAVADLELSIRSRGLKDDIM
VIAGDMLCDDRNFDIAQVVRFYRSKPGDLVIYYEMEESEKSDSRGIVEVCSDTHRITCFL
EKPAEGLTSSRLASVVFYCLQKDTLPYLSEFLSCNLDISDRTMGKFWEWFINTQKMPVFG
MKLPTGFQLIGQVGLSEYAKWLAHYSAKQRESPVKPITCRSYARVGLMGNPSDGFNGKTI
AMSISNFWAEVTLLESQTLVLLPHPLNDPTEFGSLQDLYHISRKEGYLGGLRLLQATCKK
FCQFCSKQGIALRKQNFTLKYDTNIPRQVGLAGSSAIVSATLKCLMKFYNITDNDLPKPV
KANFILNVETDELFITAGLQDRVVQVYEGLVYMDFSEQLMEAKGYGEYLCMGMDSLPPFW
LAYLGDPSDSGRIHSNVRQRWLNGEPEVIEAMKSFAELTDQARSAIQSKDWVMLAQLMDK
NLELRRSIYTDDCLGPGNLKMIQIARQFGSSVKLPGSGGAVVGLCLDPDQMVEMKKAFQE
AGCVFCVLIPYDPSCPSSRNQDHKSINN
NT seq
1887 nt
NT seq
+upstream
nt +downstream
nt
atgatctgcattttaatagttgctgggcatgacacggttttgcagggacagttgaagaat
gatgatacaggtttgtatggtcacctaactggagttcccaaggctttgctccctggagta
ggaggaaagaaaatcctggacttttggtgggaaactgtaaacacgagacagctgttcact
gaagtctatctggtcacaaatgcagacaagtataaacattatgagcgctgggcaacagcg
aatgattttccagtcgagaacctggtaaatgacggaagcaccacattagaagaccgtctc
ggtgctgttgcagaccttgagttatccattcgaagccgtggactgaaagatgacatcatg
gtgattgctggagacatgctttgtgatgaccggaactttgatatagcacaagtggttcgt
ttctatagatcaaagccgggagaccttgtcatatactatgaaatggaggaaagtgagaag
agtgactcgcgtggaattgtggaggtgtgctcagacacacacaggatcacttgcttcctg
gagaagccagcagagggcctgacgtcatcccggctggccagtgtagtgttctactgcctg
cagaaggacacactcccttacctctcagagttcctctcctgtaacctggacatcagtgac
cgcaccatgggaaagttttgggagtggttcatcaacacacagaagatgcctgtgtttgga
atgaagctgcccacagggtttcagctcattggccaagtggggctgtcagaatatgccaaa
tggttggcccactattctgccaagcaacgtgagtctcctgtcaaacccattacatgccgt
tcttatgccagagttggactgatggggaacccttcagatggttttaatggcaaaaccatt
gccatgtccatctctaacttctgggctgaggtcacactcctggaaagccagactctggtc
cttctccctcatccactcaatgaccccacagagtttgggagcttgcaggacctctaccac
atcagcaggaaagaagggtacttgggaggtttaagactattacaggctacctgtaagaaa
ttctgtcaattctgctccaaacaaggaattgctttgcgaaagcagaacttcactctcaaa
tatgacacaaacatcccacggcaggtggggttggctggaagtagtgccattgtatctgcg
accctgaagtgcctgatgaaattctacaacatcacagacaatgaccttcccaaaccagtg
aaggccaacttcatcttaaatgttgagaccgatgaactctttatcacagctggacttcaa
gacagggtggttcaggtctatgagggactggtatacatggatttcagtgaacagttgatg
gaagcaaagggatatggggagtacctctgtatgggcatggacagtcttccacctttctgg
ttggcctatttgggagatcccagcgattcaggacgaatacacagcaatgttagacagcga
tggcttaatggagagcctgaagttatcgaagccatgaagtcttttgctgagctcactgac
caagcaaggtctgccatacaaagcaaggactgggtgatgcttgctcagttgatggacaag
aaccttgagttgcgaaggtccatatacactgatgactgtttgggacctgggaatcttaaa
atgattcaaatagcaagacagtttggctcttctgtgaagctgcctggcagtgggggagct
gtggttggcttgtgtttggatcctgatcagatggttgagatgaagaaggcctttcaggaa
gctggctgtgtattctgtgttttaataccttatgatccctcttgtccttcgagtcggaat
caagaccataaatctataaataattaa
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