KEGG   Edwardsiella anguillarum: ETEE_3163
Entry
ETEE_3163         CDS       T03245                                 
Name
(GenBank) Phosphoethanolamine transferase EptA specific for the 1 phosphate group of core-lipid A
  KO
K03760  lipid A ethanolaminephosphotransferase [EC:2.7.8.43]
Organism
ete  Edwardsiella anguillarum
Pathway
ete00540  Lipopolysaccharide biosynthesis
ete01100  Metabolic pathways
ete01503  Cationic antimicrobial peptide (CAMP) resistance
Brite
KEGG Orthology (KO) [BR:ete00001]
 09100 Metabolism
  09107 Glycan biosynthesis and metabolism
   00540 Lipopolysaccharide biosynthesis
    ETEE_3163
 09160 Human Diseases
  09175 Drug resistance: antimicrobial
   01503 Cationic antimicrobial peptide (CAMP) resistance
    ETEE_3163
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01005 Lipopolysaccharide biosynthesis proteins [BR:ete01005]
    ETEE_3163
Enzymes [BR:ete01000]
 2. Transferases
  2.7  Transferring phosphorus-containing groups
   2.7.8  Transferases for other substituted phosphate groups
    2.7.8.43  lipid A phosphoethanolamine transferase
     ETEE_3163
Lipopolysaccharide biosynthesis proteins [BR:ete01005]
 Lipid A
  ETEE_3163
SSDB
Motif
Pfam: Sulfatase EptA_B_N
Other DBs
NCBI-ProteinID: AIJ09591
UniProt: A0A076LNZ5
LinkDB
Position
complement(3194399..3196024)
AA seq 541 aa
MSHKGLSASFLTVILLLAGYFTLILNIPILLHFYRILHALGEYRLGFALSIPVVLFAALT
CVFMPFSFRPILKPFFILLLVITALASYAQYKYQVIFDRSMIENIFETNSAEAGSYLNIY
VIAWVLLAGVLPALLLLRTRIIYGHNVLLRLGIRLLAMLISLLIIALVACLYYQDYASVG
RNNRSLNLEIQPASYLYSTGQYINRRYLTTPMPFRKVGEDAKLVEPAGEKPTLVFVILGE
TARAQNQSLGGYPRETNPYSAKQPGLIYFRNVTSCGTATAISVPCMFSNLTREHYDGNIA
RNSDSVIDVLHRAGVTTFWRDNDEGCKGACDRTPNELVSTKADNPLCNGKTCYDEVMLNN
LQQKIPDDGKSKLLVFHLIGSHGPTYYLRYPARFRVFMPDCERSDIENCTQQQLVNTYDN
TLVYTDYVVNQFIERLKTYEKQYNVALYYVSDHGESLGEKGLYLHGTPYQFAPAEQTHVP
MSLWLSDGYAKANRINLQCLQEAARDGSFSHDNLFPTLLSMMHVTTSAANPQLDILQRCR
N
NT seq 1626 nt   +upstreamnt  +downstreamnt
ttgtcgcataaaggtctttccgccagctttctgacggtcatactgctattggccggttat
tttacgctgatactcaatatccccatcctgctgcatttttaccgtatcctgcacgcgctg
ggggagtatcgccttggcttcgccctgtcgatcccggtggtgctgttcgcggcgttaacc
tgcgtgtttatgccgttcagcttccgcccgatcctgaagcccttttttattctgctgctg
gtgatcaccgcgctggccagctatgcccagtacaagtatcaggtgattttcgaccgctcg
atgatcgaaaacatctttgaaaccaacagcgccgaggcgggctcctacctgaatatctat
gttatcgcctgggtgctgctcgccggggtgttgcccgccctgctgctgctgcgcacccgc
atcatctatggccataacgtcctgctgcggctgggaatccggctgctggcgatgctgatc
tcactgctgatcatcgcgctggtcgcctgtctgtactaccaggattacgcctccgtcgga
cgcaacaaccgcagcctgaacctggagatccagcccgccagctacctgtacagcaccggg
caatatatcaaccgccgctatctcacgacgccaatgccgtttcgtaaggtgggggaagac
gcgaagctggttgagccggcgggtgagaaaccgacgctggtgttcgtgatcctgggcgaa
accgcccgggcccaaaaccagtctctgggcggctacccgcgggaaaccaacccctacagc
gccaaacaacccgggcttatctacttccgcaatgtcacctcttgcggcacggcgaccgcg
atttcggtcccctgcatgttctccaacctgacgcgtgagcactatgatggcaacatcgcg
cgcaacagcgacagcgtaatcgatgtgctgcaccgggccggcgtcaccaccttctggcgc
gataacgacgagggatgcaaaggcgcatgcgatcgcacgccgaacgaactggtgtcgacc
aaggccgataatccgctgtgcaacggcaagacttgctatgacgaagtcatgttgaataac
ctgcagcaaaaaatcccggacgacggcaaaagcaagctgctggtgttccacctgatcggc
agccacggcccgacctactacctgcgctaccccgcgcgcttccgcgtctttatgcccgac
tgcgagcgcagcgatattgaaaattgcacccagcagcagctggtcaacacctatgacaat
accctggtgtataccgactacgtggtgaatcagtttattgagcggctgaaaacctacgag
aagcagtacaacgtagccctgtactatgtctctgaccacggcgagtcactgggtgagaaa
gggctgtatctgcacggcaccccttatcagtttgccccggcagaacagacccatgtcccg
atgtcgctgtggctatcggacggctatgccaaggccaatcgcatcaatctgcagtgtctg
caggaggccgcccgtgacggcagcttctcccatgacaatctcttcccaaccctgctttct
atgatgcatgtcactaccagcgcggcaaatccacagttggatatcctgcaacgctgccgt
aactga

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