Helicobacter pylori 2017: hp2017_0024
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Entry
hp2017_0024 CDS
T01913
Name
(GenBank) putative lipid A phosphoethanolamine transferase
KO
K03760
lipid A ethanolaminephosphotransferase [EC:
2.7.8.43
]
Organism
hpq
Helicobacter pylori 2017
Pathway
hpq00540
Lipopolysaccharide biosynthesis
hpq01100
Metabolic pathways
hpq01503
Cationic antimicrobial peptide (CAMP) resistance
Module
hpq_M00867
KDO2-lipid A modification pathway
Brite
KEGG Orthology (KO) [BR:
hpq00001
]
09100 Metabolism
09107 Glycan biosynthesis and metabolism
00540 Lipopolysaccharide biosynthesis
hp2017_0024
09160 Human Diseases
09175 Drug resistance: antimicrobial
01503 Cationic antimicrobial peptide (CAMP) resistance
hp2017_0024
09180 Brite Hierarchies
09181 Protein families: metabolism
01005 Lipopolysaccharide biosynthesis proteins [BR:
hpq01005
]
hp2017_0024
Enzymes [BR:
hpq01000
]
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
hp2017_0024
Lipopolysaccharide biosynthesis proteins [BR:
hpq01005
]
Lipid A
hp2017_0024
BRITE hierarchy
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Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
Sulfatase
EptA_B_N
Motif
Other DBs
NCBI-ProteinID:
ADZ49101
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All DBs
Position
complement(19077..20648)
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AA seq
523 aa
AA seq
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MTSLFHLKFLKPLSCLQAGLLYSLIFGVLYHFPLFAYIYKESNQVSFIAMIIIVLFCVNG
ALFLALGLISASLMRWSAIVFSWLNSVAFYFISAYKVFLNKSMMGNVLNTNTHEVLGFLS
VKLFVFIVVFGVLPGYIIYKIPIKNYSKKAPFLAILALVFIFITSAFMNAKNWLWFDKHA
KFIGGLILPFAYSVNAFRVSALKFFAPTIKPLPLFSPNHSHSFVVLVIGESARKRNYALY
GYQKPTTPRLSKRLKNHELTLFNATSCTTYTTASLECILDSSFKNSLGVYENLPTYLTKA
GIKVFWYSANDGEKNVKVTSYLKNYELIQKCPNCEAIAPYDESLLYNLPNLLKERSNENV
LLILHLAGSHGPNYDNKVPLNFRVFKPYCSSADLSSCSKESLINAYDNTIFYNDYLLDKI
ISMLENAKQPALMIYLSDHGESLGEGAYYLHGIPKSIAPKEQYEIPFILYANDLFKEKHS
IIQTQTPINQNVIFHSVLGVFEDFKTPSAVYRPSLDLLKHKKE
NT seq
1572 nt
NT seq
+upstream
nt +downstream
nt
ttgacatcattattccatctgaagtttttaaagcccctaagttgtctgcaagccggtttg
ctctatagccttatttttggcgttttataccatttccctttgttcgcttacatttataaa
gaaagcaaccaggttagttttatagccatgattattatcgtgcttttttgcgttaatggc
gctctttttttggcgttaggcttgatctctgcttctttgatgcgttggagtgcgatagtt
tttagttggctcaattctgtcgctttctatttcattagcgcttataaggtgtttttaaat
aagagcatgatgggcaatgtcttaaacaccaacacgcatgaagttttaggctttttgagc
gttaaattattcgtttttatcgttgtttttggggtgttacccggctatatcatctataaa
atccccatcaaaaattattctaaaaaagcaccctttttagcgattttggcgttagtgttt
atctttatcaccagcgcttttatgaacgctaaaaattggctgtggtttgacaagcatgcg
aaattcatagggggcttaatcctgcccttcgcttatagcgtgaacgcttttagagtgagc
gctcttaaatttttcgcccccactatcaagccgctccctctcttttcacccaaccattcc
cattcgtttgtggtgctagtcattggcgaaagcgctaggaagcgcaattacgccctttat
ggttatcaaaaacccaccaccccaagactcagcaagcgcttaaaaaatcacgaactcact
ctttttaacgccacttcttgcaccacttacacgacagcgagtttggaatgcattttagat
tcttcttttaaaaacagcttgggcgtttatgaaaacttgcccacttacttgactaaagcc
ggtatcaaagtcttttggtatagcgcgaatgacggcgaaaagaacgttaaggttaccagc
tatcttaaaaactatgaattgattcaaaaatgccccaattgcgaggcgatcgccccttat
gatgaatccttactctataatttacctaaccttttaaaagaacgctctaatgaaaatgtc
ttactcatcttacaccttgccggctcgcatggccccaactatgacaataaagtgcctttg
aattttagggtgtttaagccctattgttcaagcgctgatctgtcttcttgctccaaagaa
agcctgattaacgcctatgacaacaccattttttataacgactatctgttagacaaaatc
attagcatgcttgaaaacgccaaacagcccgccttaatgatttatttaagcgatcatggc
gaaagtttgggcgaaggggcgtattatttgcatggcattcctaaaagcatcgcccctaaa
gagcaatacgagatcccctttattctttatgccaacgatctttttaaagaaaagcattcc
attatccaaacccaaacccccattaatcaaaatgtgattttccatagcgttttaggggtg
tttgaagattttaaaacccctagcgctgtttatcgcccttctttagacctccttaaacac
aaaaaagagtaa
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