Acinetobacter gyllenbergii: FPL18_09075
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Entry
FPL18_09075 CDS
T08262
Symbol
plsB
Name
(GenBank) glycerol-3-phosphate 1-O-acyltransferase PlsB
KO
K00631
glycerol-3-phosphate O-acyltransferase [EC:
2.3.1.15
]
Organism
agyl
Acinetobacter gyllenbergii
Pathway
agyl00561
Glycerolipid metabolism
agyl00564
Glycerophospholipid metabolism
agyl01100
Metabolic pathways
agyl01110
Biosynthesis of secondary metabolites
Brite
KEGG Orthology (KO) [BR:
agyl00001
]
09100 Metabolism
09103 Lipid metabolism
00561 Glycerolipid metabolism
FPL18_09075 (plsB)
00564 Glycerophospholipid metabolism
FPL18_09075 (plsB)
09180 Brite Hierarchies
09181 Protein families: metabolism
01004 Lipid biosynthesis proteins [BR:
agyl01004
]
FPL18_09075 (plsB)
Enzymes [BR:
agyl01000
]
2. Transferases
2.3 Acyltransferases
2.3.1 Transferring groups other than aminoacyl groups
2.3.1.15 glycerol-3-phosphate 1-O-acyltransferase
FPL18_09075 (plsB)
Lipid biosynthesis proteins [BR:
agyl01004
]
Phospholipid acyltransferase
GPAT
FPL18_09075 (plsB)
BRITE hierarchy
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Ortholog
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Gene cluster
GFIT
Motif
Pfam:
GPAT_C
Acyltransferase
Motif
Other DBs
NCBI-ProteinID:
QHH93972
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Position
complement(1939620..1942166)
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AA seq
848 aa
AA seq
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MSKTGFGQMYRQLSSKLLDLVVTPHVLGEVPTESTTTEPNATESNKLVCYVLQNYSRSNA
LVVDGETRRLNLKPALDSLSFGTYQEKNSILFLHHNENNFFNTQTFPPRLLQLVEALEQH
PDVDIQLVPVTVLWGRSPDKEDSWFKLLFSDTWATPGTVKQLMNIGLHGRQSYLEFHEPQ
SLRELVDYAKTNHPNVSPATYIASSLDTYLDQQREVVLGPDLSDRRNVMQSVVKSPEVQD
AIRRESIQHKISMLEAERRAIGYVNEIVSDYSASAVRFADMALTRLWTQLYDGVEVHNFS
TVRELAKDYEIVYTPCHRSHIDYLLLSYVIYKRGLMIPYIAAGDNLNLPFVGQLLRGGGA
FFIRRSFRGNALYTSVFKEYLHSILSRNTPIEYFIEGGRSRTGRLLPPKTGMLAMTIQGH
LRGPAKPIVFVPTYIGYERLMEGSTYVGEMQGKPKEAESIFGIVKTLRKIERIFGKVHVN
FGEPVFLNDILKQHDAENIQPDTASTTEISGVVASSANLILENINRAVVINPVSLLSLIL
LATPKHTLDEEICAKQLDIYRDLATQQPYDERTQVTSLSGKEIIAYGLKLKLIKRVQHVL
GDIIAIEDNQAVLLTYFRNNILHAFVLPSLVASLVEHNGKINKADLSNVIRTLYPFLKAE
LFMKWQTADLQKQIDNYINALVQIGLIFQDHDGNLFSPTPNSEEHQKLVTLAMPVKQSLE
RYYMTLALITQRGSGNISTKQVEELSHLLGQRLSVLYEFNSPEFFDKALFQSFIKVLTQQ
NYIRNNEQGFIEYDDNFSEMAAGAQLVLDETTLQMLQHITTFSDEELAEALEAMASQQAK
RRLKRKKA
NT seq
2547 nt
NT seq
+upstream
nt +downstream
nt
atgtccaagactggatttggtcaaatgtatcgccaactttcgagtaagttacttgacctt
gtggtaaccccacatgttcttggtgaagttcctacagaatccaccacaacagagccaaat
gcaacagaatcaaataagttggtttgctatgtattacaaaattattcacgcagtaatgca
ttggtggttgatggtgagacccgccgcctaaatttaaaaccagccttggattcattgagt
tttgggacttatcaagaaaaaaactccatcctgtttttacatcataacgaaaataatttt
tttaatacccaaacattcccgccgcgcctgttacagctagtcgaggcacttgagcaacac
ccagacgttgatattcaactggttccagtgacggtactttggggacgctcgcctgataaa
gaagattcttggttcaaattattattctcagatacttgggcaacaccaggtacagttaaa
caactgatgaatattggcttacatggccgccaatcttatttagagtttcacgaaccgcaa
tctttgcgtgagttggtagattatgccaagaccaaccacccaaatgtttcaccagcaacc
tatattgcaagttcattagacacctatttggatcagcaacgtgaagtggtacttggccca
gacttgtcagaccgtcgcaatgtgatgcaatccgtggtgaagtctcctgaggtacaagat
gccattcgtcgtgaaagcattcagcataaaattagtatgctcgaagctgaacgccgtgcc
attggttatgtcaatgaaatcgtatcggactattctgcatcagcagtccgttttgccgat
atggccttgacccgtctctggacgcaactctatgacggtgttgaagtacacaacttcagt
accgtgcgtgaactcgccaaagattatgaaattgtttataccccttgtcatcgtagtcat
atcgactatttattattatcctacgtgatttataaacgtggcttgatgattccatatatc
gctgcgggtgataacctcaacctaccatttgtgggtcagttattacgtggcggcggtgcc
ttctttattcgtcgttctttccgtggtaatgcactttatacctctgtatttaaagaatat
ttgcatagcattttatcgcgcaatacaccaatcgaatactttattgaaggtggtcgttct
cgtactggtcgtttgcttccgccaaaaacaggcatgctggcgatgaccattcaagggcat
ttacgtggtccagccaaaccgatcgtgtttgtcccaacctatattggttatgagcgcctg
atggaaggctcgacctatgtcggtgaaatgcaaggcaaaccgaaagaagcggaatcgatt
tttggcatcgtgaaaaccttgcgtaaaattgagcgtatcttcggtaaagtacacgtcaac
tttggtgaacctgtgttcctgaatgatattctgaagcaacacgatgctgaaaacattcaa
ccagacaccgcaagtaccaccgagatttcaggtgttgtcgcaagctcagccaatttgatt
ttagaaaacattaaccgtgctgtggtgattaatcctgtttcactactctctttaatttta
ttggcgacaccaaaacacaccttagatgaagaaatttgtgctaagcaactcgatatctac
cgtgatttggcgactcaacaaccttatgacgaacgcacacaagtcacgtcattatcgggt
aaagaaattattgcctacggcctaaaactcaagctgattaaacgtgtgcagcatgtttta
ggcgatattattgcgattgaagataatcaggccgtattactgacttacttccgcaataac
attttgcatgcctttgtattgccatccttggtggcttcgctggttgaacataatggtaaa
attaataaggcagatttaagtaacgtgattcgtaccttatatccgttcttaaaagctgaa
ttattcatgaaatggcaaactgctgatctacaaaagcaaattgataattatatcaatgcg
ctggtgcagatcggcttaatcttccaagatcatgatggtaatttatttagcccaacacca
aacagtgaagaacatcaaaaactggtaactttggcgatgccagtcaaacagagtttagag
cgttactacatgactttggcactgatcacccaacgtggttcaggcaatatatcaaccaaa
caagttgaagaactcagtcatttattgggtcaacgtctctctgtactgtatgagttcaac
tcacctgagttcttcgataaagccttattccaaagctttattaaagttctgacgcaacag
aattatattcgtaacaatgaacagggtttcattgaatatgatgataatttcagtgagatg
gccgctggtgctcaactggtgttagatgaaaccaccttacaaatgttgcagcacatcact
acatttagcgatgaagagttggctgaggcattagaggccatggcatcacagcaagccaaa
cgccgcttaaaacgtaagaaagcgtaa
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