Vibrio campbellii ATCC BAA-1116: M892_11340
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Entry
M892_11340 CDS
T02837
Name
(GenBank) glycerol-3-phosphate acyltransferase
KO
K00631
glycerol-3-phosphate O-acyltransferase [EC:
2.3.1.15
]
Organism
vca
Vibrio campbellii ATCC BAA-1116
Pathway
vca00561
Glycerolipid metabolism
vca00564
Glycerophospholipid metabolism
vca01100
Metabolic pathways
vca01110
Biosynthesis of secondary metabolites
Brite
KEGG Orthology (KO) [BR:
vca00001
]
09100 Metabolism
09103 Lipid metabolism
00561 Glycerolipid metabolism
M892_11340
00564 Glycerophospholipid metabolism
M892_11340
09180 Brite Hierarchies
09181 Protein families: metabolism
01004 Lipid biosynthesis proteins [BR:
vca01004
]
M892_11340
Enzymes [BR:
vca01000
]
2. Transferases
2.3 Acyltransferases
2.3.1 Transferring groups other than aminoacyl groups
2.3.1.15 glycerol-3-phosphate 1-O-acyltransferase
M892_11340
Lipid biosynthesis proteins [BR:
vca01004
]
Phospholipid acyltransferase
GPAT
M892_11340
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Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
GPAT_C
Acyltransferase
Motif
Other DBs
NCBI-ProteinID:
AGU96696
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Position
I:complement(2457264..2459690)
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AA seq
808 aa
AA seq
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MSSGQSFSRSLLKLPLSVMVKGTTIPSNPIDDLNIDLAKPIVYALPFRSNVDLLTLQKQA
LSLGLPDPLSPLEINGKKLTRYVFIASRPTVMSNDNDVPSESVSLFTDLLELHKLDSELD
VQMIPATVLWGRKPGKEENHKPYLQPMNGPQKAKAVMAAGRDCLVRFSPVVSLRYMADSH
GTDSAIAHKLARVARIHFSRQKLAASGPNLPQRQVLFARLMKSPAIEKAIEDEAQSKNIS
IEKARKEAHDIMDEIAADFSYGLVKNGDRILGWLWTKLYQGLHINNASTVRRLAQDGHEI
VYVPCHRSHMDYLLLSYVLYHEGMVPPHIAAGINLNFFPAGPIFRRGGAFFIRRSFKGNK
LYSTIFREYLSELFAKGYSVEYFSEGGRSRTGRLLQAKTGMLAMTIQAMLRGLNRPVTLV
PVYIGYEHVMEVGTYAKELRGSRKEKENAGLVLRTLRKLRNFGLGYVNFGEPIQLNQYLN
EHAPEWTKDIDHMGGSKPQWMNPVVNGLANKMMTHINDAAATNALTLCATALLASRQRAL
SRDSLINQIECYLKLLKNNPYSSTSTVPTETAEELVDHAISLDKFVIETDTMGDIISLDR
SQSILMTYYRNNIIHLFALPSLIAQMIIRQRNVTVEKIQANVAQIYPFLKKELFLSYKEE
ELNELVVKILNEFIEQKMICQDGDKLEINQSNNQSLVLLGRTITETLQRYSIAMNLLVAD
QELGKSDLEQKSQDIAQRLGRLHGINAPEFFDKGVFAAMFNTLKEQQYLDCDGNCDLEKT
QQFAKLLFALLYPEVKLTIEESIHQLQA
NT seq
2427 nt
NT seq
+upstream
nt +downstream
nt
atgtcttctggacaatcattttcacgttcattactaaaactacctttatcggtaatggta
aagggcaccacaatcccatcgaatccgattgacgatctcaacatcgacctagcgaaaccg
attgtgtacgccttaccgttccgttcgaacgtggatttgctgacactacaaaaacaagct
ttgagccttggtctcccagacccgcttagcccgctagaaatcaatggcaaaaaactgact
cgttacgtgtttattgcctctcgtccaaccgtgatgagcaatgataacgacgtaccgagt
gagtctgtttctctgtttactgatttacttgaattgcacaagctcgatagcgaactagac
gtgcaaatgattccagcgaccgtactttggggtcgtaagccaggtaaagaagaaaaccat
aagccgtacctgcaaccaatgaacggtccgcaaaaagcaaaagcggtaatggcagcaggt
cgtgactgtttggtgcgctttagcccagtggtttcactgcgttacatggcagactctcac
ggtaccgacagcgctattgcacacaagctagcgcgcgttgcacgtatccacttctctcgt
cagaagctcgcggcatcgggtccaaacctgcctcaacgccaagtgctgtttgcacgctta
atgaaatcgccagcaatcgaaaaagcgattgaagacgaagcgcaaagcaaaaacatttct
atcgagaaagcacgcaaagaagcccatgacatcatggatgagattgcagcggacttctct
tatggcttggtgaaaaacggcgatcgtattcttggctggttgtggacgaagctgtaccaa
ggtctgcacatcaacaacgcttcgactgttcgtcgcctagcgcaagatggtcatgagatc
gtgtacgtaccatgtcaccgcagtcacatggactacctactgctttcttacgttctatac
catgaaggtatggtgccaccgcatattgctgcgggtatcaacctgaacttcttcccagcg
ggtccaatcttccgtcgtggtggtgcgttctttattcgtcgtagctttaaaggcaataag
ctgtactccacgattttccgtgagtacctatcagagctgtttgctaaaggttactcggtt
gagtacttcagtgaaggtggtcgttcacgtactggtcgtctacttcaagcaaaaaccggt
atgttggcaatgacgattcaagccatgctacgcggtctaaaccgtccagtaacgttagtg
cctgtgtacatcggttacgagcacgtaatggaagtgggtacttacgccaaagagcttcgc
ggttctcgcaaagagaaagagaacgcgggtcttgttctgcgtactctacgtaagctgcgc
aactttggccttggttacgtgaacttcggtgagccgattcagctaaaccaatacctgaat
gaacacgcgccagagtggaccaaagacatcgaccatatgggcggcagcaaaccacaatgg
atgaaccctgtggtgaacggtctggcgaacaagatgatgacgcacattaacgatgcagct
gcgaccaacgctctgactctatgtgcgaccgcactattggcgtctcgtcagcgtgcgttg
tctcgtgactctctgatcaatcagatcgaatgctacctgaagctacttaagaacaaccca
tactcaagtacttcaacggttccaacagaaacagctgaagagttggtggatcacgctatc
tcacttgataagtttgtgattgaaactgacactatgggtgacatcatttcactggatcgt
agccagtcgattctgatgacttactaccgcaacaacatcattcacttgtttgctctccct
tcactgattgctcagatgattatccgtcagcgcaacgtgaccgtagagaaaattcaagcc
aacgtcgctcaaatctacccattcctgaaaaaagagctgttcctaagctataaggaagaa
gaattgaacgagctggtcgtgaagatcttgaacgagttcattgagcagaagatgatttgc
caagatggcgacaagctggaaattaaccagtcaaacaaccaatcattggttctgttaggt
cgtactatcaccgaaacactgcaacgttactctatcgcaatgaacctacttgtggcagac
caagagctgggtaaatctgaccttgagcagaagagccaagatattgcgcaacgtttggga
cgtctacacggcatcaacgcgccagagttcttcgacaaaggtgtatttgctgcaatgttc
aatacgctgaaagagcaacaatacttagactgtgatggtaactgtgatcttgagaagaca
cagcaatttgccaaactgctttttgctttgctctacccagaagtgaaattgaccatcgaa
gagagtatccaccagttgcaagcataa
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