KEGG   Alligator mississippiensis (American alligator): 102569961Help
Entry
102569961         CDS       T03087                                 

Gene name
HK1
Definition
(RefSeq) hexokinase 1
  KO
K00844  
hexokinase [EC:2.7.1.1]
Organism
amj  Alligator mississippiensis (American alligator)
Pathway
Glycolysis / Gluconeogenesis
Fructose and mannose metabolism
Galactose metabolism
Starch and sucrose metabolism
Amino sugar and nucleotide sugar metabolism
Neomycin, kanamycin and gentamicin biosynthesis
Metabolic pathways
Carbon metabolism
Insulin signaling pathway
Module
Glycolysis (Embden-Meyerhof pathway), glucose => pyruvate
Nucleotide sugar biosynthesis, glucose => UDP-glucose
Brite
KEGG Orthology (KO) [BR:amj00001]
 Metabolism
  Carbohydrate metabolism
   00010 Glycolysis / Gluconeogenesis
    102569961 (HK1)
   00051 Fructose and mannose metabolism
    102569961 (HK1)
   00052 Galactose metabolism
    102569961 (HK1)
   00500 Starch and sucrose metabolism
    102569961 (HK1)
   00520 Amino sugar and nucleotide sugar metabolism
    102569961 (HK1)
  Biosynthesis of other secondary metabolites
   00524 Neomycin, kanamycin and gentamicin biosynthesis
    102569961 (HK1)
 Organismal Systems
  Endocrine system
   04910 Insulin signaling pathway
    102569961 (HK1)
Enzymes [BR:amj01000]
 2. Transferases
  2.7  Transferring phosphorus-containing groups
   2.7.1  Phosphotransferases with an alcohol group as acceptor
    2.7.1.1  hexokinase
     102569961 (HK1)
Membrane trafficking [BR:amj04131]
 Autophagy
  Mitophagy
   Other mitophagy associated  proteins
    102569961 (HK1)
BRITE hierarchy
SSDB OrthologParalogGFIT
Motif Motif
Other DBs
NCBI-GeneID: 
NCBI-ProteinID: 
LinkDB All DBs
Position
Un
AA seq 917 aa AA seqDB search
MIAAQLLAYYFTELKDDQVKKIDKYLYAMRLSDETLLDIMARFRREMKNGLSRDFNPTAT
IKMLPTFVRSIPDGSEKGDFIALDLGGSYFRILRVKVSHEKKQTVQMETEIYNTPEDIMH
GTGTRLFDHVAECLGDFMEKQKIKDKKLPVGFTFSFPCRQSKLDEGILITWTKRYKASGV
EGADVVKLLNKAIKKHGDYDADIMAVVNDTVGTMMTCGFDDQRCEVGLIIGTGTNACYME
EMRHIDLVEGDEGRMCINTEWGAFGDDGSLEDIRTEFDREIDRGSLNPGKQLFEKMVSGM
YMGELVRLILVKMAKEGLLFEGRITPELLTKGKFETKHVSAIEKSKEGLNKAKEILTRLG
VEPSHEDCIAVHHVCTIVSFRSANLVACTLGAILNQLRDNKGVPRLRTTVGVDGSLYKMH
PQYARRLHKTTRRLVPDSDVRFLLSESGSGKGAAMVTAVAYRLAEQHRLIAETLAEFKLT
HEQLLQVKKRMRMEMEAGMKKKTHDSAKVKMLPTFVRSTPDGTENGDFLALDLGGTNFRV
LLVKIRSGKRRTVEMHNKIYAIPVEVMLGTGEELFDHIVACISDFLDYMGIKGARLPLGF
TFSFPCKQTSLDAGILLNWTKGFKATDCEGEDVVYLLREGIKRREEFDLDVVAVVNDTVG
TMMTCAYEDPNCEIGLIVGTGSNACYMEEMRNIEMVEGDQGRMCVNMEWGAFGDNGCLDD
IRTIYDKAVDDYSLNAGKQRYEKMISGMYLGEIVRNILIDFTKRGFLFRGQISETLKTRS
IFETKFLSQIESDRLALLQVRAILQQLGLNSTCDDSIIVKTVCGAVSRRAAQLCGAGMAA
VVDKIRENRGLEHLEITVGVDGTLYKLHPHFSKVMHQTVKDLAPKCDVTFLLSEDGSGKG
AALITAVGCRLRDAEQN
NT seq 2754 nt NT seq  +upstreamnt  +downstreamnt
atgatcgcggcccagctcctggcctactacttcaccgagctcaaggatgaccaggtcaag
aagattgataaatatctttatgctatgcggctctctgatgaaaccctgctggatattatg
gctcgcttcaggagagagatgaaaaacggtctttctagagacttcaatccaacagctaca
ataaaaatgcttcctacatttgtaagatcgattcctgatggctcagagaaaggagatttc
attgcattggatcttggtggatcttattttcgaattctgcgggtgaaggtctctcatgaa
aaaaagcagacggtacaaatggaaactgaaatttataacacaccagaagatatcatgcat
ggcactggaacaaggctgtttgatcatgttgccgaatgcctgggagacttcatggagaaa
cagaaaatcaaggacaaaaaactaccagttggttttacattttctttcccatgtagacaa
tccaagctggatgagggtattctgataacgtggacaaaacgctacaaagccagtggagtt
gaaggagcagatgttgtaaagctacttaacaaggcaatcaagaaacatggggactatgat
gcagacatcatggctgttgtaaatgatacagtagggacaatgatgacctgtgggtttgat
gatcagcgttgtgaagtaggcttgattataggtactggcaccaatgcttgctacatggaa
gaaatgagacacattgatttggtggaaggtgatgaggggagaatgtgcatcaacaccgag
tggggagcctttggagatgatgggtcactagaagatatccgaactgagtttgatagggag
attgaccgtggttctcttaatcctggaaaacaactatttgagaagatggtgagtggaatg
tacatgggtgaattggtcaggctcatccttgtcaagatggccaaagaaggactgcttttt
gaagggagaatcactccagagcttttaaccaaaggaaaatttgaaacaaagcatgtttct
gccatagaaaaaagcaaagaaggtttgaataaagccaaagaaattttgacacgccttggt
gtagagccatcccatgaagattgcattgctgtccatcatgtttgtacaatcgtttcattt
cgttctgcaaatctggttgcttgtaccttgggtgcaattctgaatcaactacgtgacaat
aaaggagtacccaggctgcgtaccacagtgggggtagatggttccctttacaagatgcat
ccacaatatgcccgacgcttgcacaaaacaacaaggcgcttagttcctgactctgatgtg
cgattcctcctgtctgagagtggcagtggaaagggtgctgcaatggtcacagcagtggct
tacaggttggctgagcagcacaggctgatagctgaaactctggctgaattcaagcttact
cacgaacagctattgcaggttaagaagaggatgcgaatggaaatggaagctggaatgaag
aagaaaactcacgatagtgcaaaagtgaaaatgctgcccacatttgtccgcagcacacca
gatggaacagagaatggagacttcctggctcttgatcttggaggaacaaactttagagtt
ttgcttgtgaagatacgtagtggtaaaaggagaacagttgaaatgcacaataaaatatat
gccatccctgtagaagtcatgctgggtactggtgaagagctgtttgatcacatagttgcc
tgcatctcggacttcctggattacatgggaataaaaggtgcacgccttccccttggattt
acattttccttcccttgcaaacagacaagtttagatgctggtatcctcctcaactggacc
aagggttttaaagctacagactgtgaaggagaagatgttgtatatttgctcagggaagga
attaaacggagagaggaatttgacttggatgttgttgcagtggtcaatgatacagttggc
actatgatgacttgtgcgtatgaagatccaaactgtgagattggacttattgtgggaact
ggcagcaatgcatgttacatggaggaaatgaggaatatagagatggtggaaggagatcaa
ggaagaatgtgtgtgaacatggaatggggtgcgtttggagacaatggatgcctggatgac
atcaggacaatttatgacaaagctgttgatgattattcattaaatgctggaaaacaaagg
tatgagaaaatgattagtggaatgtaccttggagagattgttcgcaatattttgattgat
ttcactaaaaggggattcttgtttagaggtcaaatttcagagacactgaagaccagaagt
atctttgaaaccaagttcctttcacagattgagagtgacaggttagctttgcttcaggta
cgagcaatccttcagcagcttggcctgaacagtacctgtgatgacagtataattgtaaag
acagtgtgtggggcagtatcacgaagagcagctcagttgtgtggagcaggaatggctgct
gttgtagataaaataagggagaacagaggattagaacatctggaaataactgtcggtgta
gatgggactctgtataaactacatccgcacttttcaaaggtaatgcaccaaacagtaaag
gatctggctccaaagtgcgatgtgacgttcctgctttcggaagacggcagtgggaaaggg
gcagctctcattactgctgtgggatgccgacttcgtgatgctgaacaaaactaa

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