KEGG   Pseudohongiella spirulinae: PS2015_833
Entry
PS2015_833        CDS       T04158                                 
Name
(GenBank) hypothetical protein
  KO
K00817  histidinol-phosphate aminotransferase [EC:2.6.1.9]
Organism
pspi  Pseudohongiella spirulinae
Pathway
pspi00340  Histidine metabolism
pspi00350  Tyrosine metabolism
pspi00360  Phenylalanine metabolism
pspi00400  Phenylalanine, tyrosine and tryptophan biosynthesis
pspi00401  Novobiocin biosynthesis
pspi01100  Metabolic pathways
pspi01110  Biosynthesis of secondary metabolites
pspi01230  Biosynthesis of amino acids
Brite
KEGG Orthology (KO) [BR:pspi00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00340 Histidine metabolism
    PS2015_833
   00350 Tyrosine metabolism
    PS2015_833
   00360 Phenylalanine metabolism
    PS2015_833
   00400 Phenylalanine, tyrosine and tryptophan biosynthesis
    PS2015_833
  09110 Biosynthesis of other secondary metabolites
   00401 Novobiocin biosynthesis
    PS2015_833
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01007 Amino acid related enzymes [BR:pspi01007]
    PS2015_833
Enzymes [BR:pspi01000]
 2. Transferases
  2.6  Transferring nitrogenous groups
   2.6.1  Transaminases
    2.6.1.9  histidinol-phosphate transaminase
     PS2015_833
Amino acid related enzymes [BR:pspi01007]
 Aminotransferase (transaminase)
  Class II
   PS2015_833
SSDB
Motif
Pfam: Aminotran_1_2 Cys_Met_Meta_PP Met_gamma_lyase
Other DBs
NCBI-ProteinID: ALO45506
UniProt: A0A0S2KC33
LinkDB
Position
861788..862906
AA seq 372 aa
MNGVMSRRRILLGGAALLGAGMLQTLPGGMRMALADIARPDYIIRASSNENPYGPSPVAV
KAINEALVDANKYMNMTNDLLDLLSGIEDVPRESIAVGSGSGEILRVGGLLASLNGKSVV
CPDPTFGGLISYVENMGTELIRVPVNDAMETDLAAIKAAIRPETGMVYLCNPNNPIPNLI
EKNALREFVLEVSQDRLVFIDEAYHEFVDDPAYESMMDLIRAGHKNIIISRTASKIHGLA
ALRVGFAYAHPDLIAELNSKMTGQLNIVGVKAAHASYLDQDFQNYTLAQNRKSLDMINAM
CDRHDIPYIKSHANFTFIHTGRDIAEVSEAMRDAGILIGRPFPPFRDWARISTTKPEEME
YLVQVYERLYLS
NT seq 1119 nt   +upstreamnt  +downstreamnt
atgaatggtgtaatgagcaggcgcagaattctacttggcggagcggcactgttgggtgct
ggcatgttgcagacattgccgggcggcatgcgtatggcattggcggatattgccaggccc
gactatattatccgggccagcagcaatgaaaatccctatgggccctcgccggttgccgtc
aaggcgatcaatgaggctctggttgatgccaataaatacatgaacatgaccaacgatctg
ctggatttgctatccgggatcgaagatgtgccgcgcgagtcaattgcggtcggttccggt
tcgggtgaaatactcagggtgggtggtctgcttgccagtctgaacggtaagtcggtggtc
tgtcctgatcctacctttggcggtcttatcagctatgtcgagaacatgggcaccgagctg
attcgtgtgcctgttaatgacgccatggaaactgatctggcggctatcaaggcagccatc
cggcccgaaaccggcatggtttatctttgtaatcctaataacccgattcccaaccttatt
gagaaaaacgcactgcgtgagtttgtactcgaggtatcccaggatcgactggtatttatt
gacgaggcttaccatgagtttgtcgatgatccggcctatgagtcgatgatggatctgatc
agggcggggcacaaaaatattattatttcccggacagcctccaagattcatgggctggcg
gcgctcagagttggttttgcctatgcacatccggatctgattgccgagctgaacagtaag
atgaccggacaattgaatattgttggcgtcaaagcggcgcacgccagttacctggatcag
gatttccagaattacactctggcacagaaccgcaaatcgctggatatgattaatgcaatg
tgtgatcgacatgatattccgtatatcaagtcacatgccaatttcacctttatccatacc
gggcgagacattgctgaagtcagcgaagctatgcgtgatgcaggcatattgatcggacgg
ccattcccgcccttccgggactgggcccgcatcagtaccaccaagccggaagagatggaa
tatcttgtgcaggtttacgagcgactgtatctgtcctga

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