KEGG   Chryseolinea soli: D4L85_29850
Entry
D4L85_29850       CDS       T05641                                 
Name
(GenBank) glycerol-3-phosphate acyltransferase
  KO
K00631  glycerol-3-phosphate O-acyltransferase [EC:2.3.1.15]
Organism
chk  Chryseolinea soli
Pathway
chk00561  Glycerolipid metabolism
chk00564  Glycerophospholipid metabolism
chk01100  Metabolic pathways
chk01110  Biosynthesis of secondary metabolites
Brite
KEGG Orthology (KO) [BR:chk00001]
 09100 Metabolism
  09103 Lipid metabolism
   00561 Glycerolipid metabolism
    D4L85_29850
   00564 Glycerophospholipid metabolism
    D4L85_29850
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01004 Lipid biosynthesis proteins [BR:chk01004]
    D4L85_29850
Enzymes [BR:chk01000]
 2. Transferases
  2.3  Acyltransferases
   2.3.1  Transferring groups other than aminoacyl groups
    2.3.1.15  glycerol-3-phosphate 1-O-acyltransferase
     D4L85_29850
Lipid biosynthesis proteins [BR:chk01004]
 Phospholipid acyltransferase
  GPAT
   D4L85_29850
SSDB
Motif
Pfam: Acyltransferase NPHP3_N
Other DBs
NCBI-ProteinID: AYB34527
UniProt: A0A385SWI6
LinkDB
Position
7198205..7199899
AA seq 564 aa
MEVVEKKNKNKRYKPILEGIPDWPVYQLSKNRKEFIEEVAQKTFAQIKKNRPTTKQLIDE
LEATVYREQQRMKRNRWRADAADEPRFWAGIKEELVALTGKTPEEAQPIAEELLHRIVLR
YANEIAGNFKPNSYRLTREIVKFWFSRLLNGARVKKFGAFFRSRYTLRDKIHIVGKVKQL
RTLAKEGTVVMVPTHFSNLDSILIGWIIHSLGLPAFIYGAGLNLFNIKIFAYFMNSLGAY
KVDRRKKNVPYLETLKFYSMCAIQKGAHSIFFPGGTRSRSGMLEKQLKLGLLSSTIEAQR
NLYLESPATEPVRKIFIVPVTLNYHFVLEAPDLIDEYLSSKGQDRYLPEQDKYGSWQLLQ
FLFKFFTKGSNISVSIGRGLDVMGNYVDDQGNSLDAQGRVIDTRDYFVSHGDITVDKQRE
DEYTRMLSHKIVSEYHRINRVFASHLVAFVAFEMWQKKHPKLDLFGLLKLPEEDQVLQFE
EFRAACKRVRKQIYKMKEEGKVYHATHLKGNINLVIRHGLDNVGIFHLKRPLLMNKEGNI
ITKDFSTLYYYHNRLVGYDLEKFI
NT seq 1695 nt   +upstreamnt  +downstreamnt
atggaagttgtagagaagaaaaataagaacaagcgatataaacccatcctggagggcata
cccgattggccggtttaccaactcagtaaaaaccgcaaggagtttatcgaggaagtggcg
cagaagacctttgcccagatcaagaagaatcgcccgacaaccaaacagctcatcgacgaa
ctggaggccactgtttaccgcgaacagcagcgcatgaagcgcaaccgctggcgtgccgac
gcggccgacgagccccgtttctgggccggcatcaaagaagaactggtggccctgacgggc
aagacgccggaagaagcccaacccattgccgaggaactgctccaccgcatcgtgttgcgc
tatgccaacgagatcgccggaaacttcaagcccaacagctaccgcctcacccgtgagatc
gtaaagttctggttctcgcgcctactgaacggcgcccgcgtcaagaagttcggagccttc
ttccgcagccgctatacgcttcgcgacaagatccacatcgtgggcaaagtgaagcaactg
cgcaccctggccaaagaaggcacggtggtgatggtgcccacgcacttcagcaacctcgac
tcgatcctgatcggatggatcatccactcactgggcctgcccgcctttatctacggcgcc
gggttgaatcttttcaacatcaagatctttgcttatttcatgaacagtctcggcgcctat
aaagtagaccgccggaagaaaaatgtcccctacctggagaccctgaagttctattccatg
tgtgccattcaaaaaggtgcgcacagcattttctttcccggtggaacgcgctcccgctcg
ggcatgttggaaaaacaactcaagctgggattgctcagctccaccatcgaggcccaacgc
aatctctacctggaatcgccggccaccgaaccggtgcgcaagatctttatcgtgcccgta
acgctcaactatcacttcgtgctggaggccccggacctgatcgacgaatatttgtcgtcg
aaaggccaggatcgttatctgccggaacaagacaaatacggaagctggcaactgctgcag
ttcctgttcaagttttttaccaaagggtctaacatctccgtgtcgatcggccgcgggctg
gacgtgatgggaaattatgtcgacgatcagggcaacagcctggatgcgcagggacgggtg
atcgacacccgcgactattttgtttcgcatggcgacatcaccgtcgacaagcaacgcgaa
gatgagtacacacgcatgctcagccacaagatcgtgtcggagtatcaccgcatcaaccgc
gtgtttgccagtcacctggtagcctttgtggccttcgagatgtggcaaaagaaacatccc
aagctggatttgtttggcttgctgaaattgccggaagaagaccaggtgttgcagttcgaa
gagtttcgcgctgcctgcaagcgggtgcgcaaacaaatctataaaatgaaagaagagggg
aaagtctatcacgctacccatctgaaaggaaatatcaacctggtgatccgccatggactc
gacaatgtgggcatcttccatttgaagcgcccgttgcttatgaacaaggagggcaacatc
atcaccaaggatttcagtacactttattactatcacaaccggcttgtcggctatgacctc
gaaaagtttatctga

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