KEGG   Panthera pardus (leopard): 109274062Help
Entry
109274062         CDS       T06062                                 

Gene name
H6PD
Definition
(RefSeq) GDH/6PGL endoplasmic bifunctional protein isoform X1
  KO
K13937  hexose-6-phosphate dehydrogenase [EC:1.1.1.47 3.1.1.31]
Organism
ppad  Panthera pardus (leopard)
Pathway
ppad00030  Pentose phosphate pathway
ppad01100  Metabolic pathways
ppad01200  Carbon metabolism
Module
ppad_M00004  Pentose phosphate pathway (Pentose phosphate cycle)
ppad_M00006  Pentose phosphate pathway, oxidative phase, glucose 6P => ribulose 5P
Brite
KEGG Orthology (KO) [BR:ppad00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00030 Pentose phosphate pathway
    109274062 (H6PD)
Enzymes [BR:ppad01000]
 1. Oxidoreductases
  1.1  Acting on the CH-OH group of donors
   1.1.1  With NAD+ or NADP+ as acceptor
    1.1.1.47  glucose 1-dehydrogenase [NAD(P)+]
     109274062 (H6PD)
 3. Hydrolases
  3.1  Acting on ester bonds
   3.1.1  Carboxylic-ester hydrolases
    3.1.1.31  6-phosphogluconolactonase
     109274062 (H6PD)
BRITE hierarchy
SSDB OrthologParalogGFIT
Motif
Pfam: Glucosamine_iso G6PD_C G6PD_N DUF5617
Motif
Other DBs
NCBI-GeneID: 109274062
NCBI-ProteinID: XP_019316842
Ensembl: ENSPPRG00000010827
LinkDB All DBs
Position
Unknown
AA seq 862 aa AA seqDB search
MTPKCFPDGKKAKRWSRSHGCKQRFETERGGPAIACSLIPISRLLGSESETDQAAHCTDV
EERGPRRHPGCWKMLTVAMCVALLGCLQAQELRGHVSVILLGATGDLARKYLWRGLFQLY
LDEAGKDYSFSFHGAALTSTKQGQAFIAKVLESLSCPEDVAPDRCSELKGQFQRLSAYRH
LATREDYVALSKDIEAQVQRGGLREAGRIFYFSVPPFAYADIARNINSSCRPGPGAWLRV
VLEKPFGHDHLSAQQLATELGGFFREEEMYRVDHYLGKQAVAQILPFRDQNRKALDGLWS
RHHVERVEIIMKETVDAEGRTSFYEEYGVIRDVLQNHLTEVLTLVAMELPHNISSSESVL
QHKLRAFRALRGLQKGSAVLGQYQAYSEQVRREQQKPDSFHSLTPTFAGVLVHMDNLRWE
GVPFILMSGKALDERVGYARILFRNQAYCVQNDEHWVADQSRCLPRQIVFYIGHGELGSP
AVLVSRNLFRPSLPPESWKELGARPGLRLFGRPLSDFYAYSPVREQDAYSVLISRIFHGR
KDSFVTTENLLASWGFWTPLLDGLAHEVPRLYPGGAENGHLLDFEFGGARLCFSQQQPEQ
LVPGPGPAPMPSGFQVLKARYRESPLISAWPEELIAKLADDIEATAVRAVRRFGAFHLAL
SGGSSPVPLFQQLATRHYGFPWAHTHLWLVDERCVPLWDPESNFQHLQTHLLQHIRVPYY
NIHPMPVHLRQRLCAEEDQGAQTYASEISALVANSSFDLVLLGMGADGHTASLFPQSPSG
LDGEQLVVLTESPSRPFQRMSLSLPLINRARKVAVLVMGRVKREITVLVSRVGHEPKKWP
ISGVLPTSGQLVWYMDYEAFLG
NT seq 2589 nt NT seq  +upstreamnt  +downstreamnt
atgacaccaaagtgttttcctgatggaaagaaggcaaagcgatggtccaggtcacacggg
tgtaagcagagatttgaaactgaacgtggaggcccggcaatagcgtgctctctgatccct
atatcacgacttctgggctctgaaagtgagacggaccaagctgctcattgtacagacgta
gaagagcgaggcccgaggaggcaccctggctgttggaagatgctcacagtggcgatgtgc
gtggccctcctggggtgcctgcaggcccaggagctccggggacacgtctccgtcatcctg
ctgggagcaaccggggacctggccaggaaatacttatggcgggggctgttccagctgtac
ctggatgaggcggggaaggactacagtttcagcttccatggggctgccctgacgtccacc
aagcagggccaagcgttcatagccaaggtcctggagtccctctcctgcccggaggacgtg
gcacccgaccgctgctccgaactcaagggccagttccagcggctgagtgcgtaccgccac
ctggcgacgcgtgaggactatgtggccctgagcaaggacattgaggcacaggtccaacgc
gggggcctccgggaggccggcaggatcttctacttctcggtgccaccctttgcctatgcg
gacattgcccgcaacattaacagcagctgccgcccgggcccgggcgcctggctgcgggtt
gtcctcgagaagcccttcggccatgaccacctctcagcccagcagctggccacggaactc
gggggctttttccgagaggaggagatgtaccgggtggaccattacctgggcaagcaggcc
gtggctcagatcctgcctttccgagaccagaaccgcaaggccttggacggcctctggagc
cggcaccacgtggagcgggtggagatcatcatgaaggagactgtggatgccgagggccgc
accagcttctacgaggagtacggcgtcattcgcgacgtgctccagaaccacctgaccgag
gtcctcaccctcgtggccatggagctgccccacaacatcagcagctcagagtctgtgctc
cagcacaagctccgggccttccgggctctgcggggcctgcagaagggcagcgccgtcctg
ggccagtaccaggcatacagcgagcaggtgcgcagagagcagcagaagccggacagcttc
cacagcctgacgccaaccttcgcaggcgtcctcgttcacatggacaaccttcgctgggag
ggcgtccctttcatcctgatgtccggcaaagccttggatgagagagtgggctacgcgcgc
atcttgttcaggaaccaggcttactgtgtccagaacgacgagcactgggtcgccgaccag
agccggtgcctccctcggcagatcgtcttctacatcggacacggtgagctgggcagccct
gccgtgctggtcagtcggaacctgttcaggccctccctgccccccgagagctggaaggag
ctgggggcccggccggggctccgcctcttcggccgcccgctgtccgatttctatgcctac
agccccgtgagggagcaggacgcctactccgtcctcatatctcgcatcttccacggccga
aaggactccttcgtcaccacggagaacctgctggcctcctggggcttctggacccccctg
ctggacggcctggcccacgaggtcccgcgcctctacccgggaggcgctgagaacgggcac
cttttggacttcgagttcggtggcgcccggctgtgcttctcgcagcagcagccggagcag
ctggtgccggggcccggccccgcgccgatgcccagcggcttccaggttctcaaggccagg
taccgagagagcccgctgatctcggcctggcccgaggagctgatcgcgaagctggccgac
gacatcgaggccacggccgtgcgggccgtgcggcgctttggcgcgttccacctggcgctg
tccggcggctcgagccccgtgcccctgttccagcagctggccaccaggcactatggcttc
ccctgggcccacacgcacctgtggctggtggacgagcgctgcgtcccgctctgggacccc
gagtccaacttccagcacctgcagacccacctcctccagcacatcagggtcccctactac
aacattcaccccatgcccgtgcatctgcgccagcggctgtgcgccgaggaggaccagggc
gcccagacgtacgccagcgagatctcggccctggtggccaacagcagcttcgacctggtg
ctgctgggcatgggcgcggacgggcacacggcctccctcttcccgcagtcgcccagcggc
ctggacggcgagcagctggtcgtgctgaccgagagcccctccaggccgttccagcgcatg
agcctcagcctgcccctcatcaaccgcgccaggaaggtggcggtcctggtcatgggcagg
gtgaagcgtgagatcaccgtgctggtgagccgcgtgggccacgagcccaagaaatggccc
atttcgggcgtcctgcctacttccggccagctggtttggtacatggactatgaggcgttt
ctgggatga

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