KEGG   Meyerozyma guilliermondii: PGUG_01288Help
Entry
PGUG_01288        CDS       T01150                                 

Definition
hypothetical protein
Orthology
K13333  
lysophospholipase [EC:3.1.1.5]
Organism
pgu  Meyerozyma guilliermondii
Pathway
Glycerophospholipid metabolism
Brite
KEGG Orthology (KO) [BR:pgu00001]
 Metabolism
  Lipid metabolism
   00564 Glycerophospholipid metabolism
    PGUG_01288
Enzymes [BR:pgu01000]
 3. Hydrolases
  3.1  Acting on ester bonds
   3.1.1  Carboxylic-ester hydrolases
    3.1.1.5  lysophospholipase
     PGUG_01288
BRITE hierarchy
SSDB OrthologParalogGFIT
Motif
Pfam: 
Motif
Other DBs
NCBI-GI: 
NCBI-GeneID: 
UniProt: 
AA seq 666 aa AA seqDB search
MLILGYLWYIYLLVFPVAAFDWPWEDDSSSASGSASATETDSDRNKYAPYETDCPSGELT
RQSVNISDGERDYITHRWEKTNNKLIEFLSERANLSDFDAETYINDYSDEHNITIGVAFS
GGGYRAMLCGAGELLGLDDRYDGEDSENGLGGLLQSSTYIAGLSGGNWLVGLMVLNDWIS
VADIYSGKKKIWDLEDSIFNPNGINVIKTVEYYKHIYDALNAKKDAGFETSITDIWGRAL
SNQFFEGDQGGENVTWSSIQDLSSFKDYEMPFPVVVADGRTPGTYIINSNSTVFEFNPFE
MGSWDPSVHTFFDVKYLGSGVLGGDPKNDKCTANFDNAGFVLGTSSSLFNQVILRLPGTS
IPSVLKSLLNKLLKLVSNDEDDIAVYEPNPFYDSEYGGLRSVLKNDTLYLCDGGEDNQNV
PLYPLIQTVRKLDIILAYDNSADTNQNWPNGSSLVETYQRQYSVQGRGTPFPYVPSVDEF
VDKELNKRPVFFGCDASNMTDLVQQLKNNNINETDIPLVVYMPNHRHSYNSNTSTYKMSY
DNDEKWGVIRNGFEVTTQKNGTTDDGWATCMGCAIIRRSQERRGIKQSSECEKCFQKYCW
NGGSKDAVASTDAASPTGSSSSSSSKSSSQSSSTSTGKKKGAATSVSAPWQAVVYVVLLI
SGAFII
NT seq 2001 nt NT seq  +upstreamnt  +downstreamnt
atgttgatcctagggtacctttggtacatttatttattggtgttccctgtcgcagcgttt
gattggccatgggaagacgatagcagctcggcttcagggtcggcttcggctacggaaacc
gattctgatagaaacaaatatgctccttacgaaaccgattgtccgtctggggagttgacc
cggcagtctgtcaatatctccgatggcgaaagagactacatcacccatcggtgggaaaaa
accaacaacaagcttattgaatttttatccgaaagagccaatttatctgactttgatgcg
gaaacttacatcaacgattattccgacgagcataacatcaccattggtgtagcgttttct
ggaggaggataccgtgccatgctctgtggagctggcgagctcttggggttggacgacaga
tacgacggggaagattcggagaatggtcttgggggtttgttgcaaagttcgacatatatt
gctggtttatccggtggaaactggcttgttggactgatggttttaaacgactggatctca
gtggctgatatttattccggaaaaaagaaaatttgggacttggaggactcgattttcaac
cctaatggaattaatgtcattaaaacggtggagtactacaagcatatttacgatgctctc
aacgccaaaaaagatgctgggtttgagacctcgattactgatatctggggccgtgccctt
tccaaccaattttttgaaggcgatcaaggtggagagaacgttacctggtcctccattcaa
gatttgtccagcttcaaagactacgaaatgccattcccagtggtggttgccgatggaaga
accccaggtacttacatcattaacagcaactctactgtttttgagttcaatcccttcgaa
atgggatcgtgggatccatctgttcacacatttttcgacgtcaaatacttgggaagtgga
gttctgggtggtgatcctaaaaatgacaaatgtaccgctaatttcgacaatgctggtttc
gtattgggtacttcttcttctcttttcaaccaggtgattttgagacttcctggaaccagt
atccccagcgttcttaaatctcttctcaacaagttgttgaaactggttagcaacgatgaa
gatgatattgcagtatacgagccaaatccattctatgactcggagtatggtggtctgaga
tctgtcctcaagaacgatactctctacttgtgcgatggtggagaagacaaccaaaatgtt
cctttgtatccattgatccaaacggttcgtaaattggacataattcttgcctacgacaat
tctgccgataccaaccaaaattggcccaatggttcttctctcgtggaaacctaccagcgt
caatactcggttcaaggaagaggtacgccattcccatatgttccttcagtggatgaattc
gtcgataaagagctcaacaagcgacctgtgttctttggatgcgatgcttcgaatatgacc
gatcttgttcaacagctgaaaaacaataatatcaacgaaaccgatattcccttggtggtg
tacatgcccaaccatagacactcttataactccaacacttccacctacaagatgtcctac
gacaacgatgaaaaatggggagttataagaaacggatttgaagttaccactcaaaagaat
ggtactactgatgatggatgggccacttgtatgggatgtgccatcatcagacgttctcag
gagcgcagaggtatcaagcaatcttctgaatgtgaaaaatgttttcaaaaatactgctgg
aatggaggttccaaagatgccgttgctagcactgatgctgcaagtcctacaggttccagt
tccagttccagttccaaatccagctcgcaatcgtcatctacatccaccggcaagaagaag
ggtgctgcaacatctgtatcggctccatggcaagcagtggtgtatgtagtcttgctcatt
agtggtgcctttatcatatag

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