Rahnella aquatilis HX2: Q7S_09750
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Entry
Q7S_09750 CDS
T01850
Name
(GenBank) hypothetical protein
KO
K03760
lipid A ethanolaminephosphotransferase [EC:
2.7.8.43
]
Organism
raa
Rahnella aquatilis HX2
Pathway
raa00540
Lipopolysaccharide biosynthesis
raa01100
Metabolic pathways
raa01503
Cationic antimicrobial peptide (CAMP) resistance
Brite
KEGG Orthology (KO) [BR:
raa00001
]
09100 Metabolism
09107 Glycan biosynthesis and metabolism
00540 Lipopolysaccharide biosynthesis
Q7S_09750
09160 Human Diseases
09175 Drug resistance: antimicrobial
01503 Cationic antimicrobial peptide (CAMP) resistance
Q7S_09750
09180 Brite Hierarchies
09181 Protein families: metabolism
01005 Lipopolysaccharide biosynthesis proteins [BR:
raa01005
]
Q7S_09750
Enzymes [BR:
raa01000
]
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
Q7S_09750
Lipopolysaccharide biosynthesis proteins [BR:
raa01005
]
Lipid A
Q7S_09750
BRITE hierarchy
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Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
Sulfatase
EptA_B_N
Motif
Other DBs
NCBI-ProteinID:
AFE58184
LinkDB
All DBs
Position
complement(2136633..2138267)
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AA seq
544 aa
AA seq
DB search
MRSIFPKISYFTLTLLLTLYFTFIVNLPILLHFYHILQALPAYNLAFALSIPVALFAALN
FVFTPFSFRPLLKPFFIIVLPVSALASFAMMTFQVVFDRGMIENILETQSAEASSYLNLK
VILWFVFTGVLPAILLFLTPVSYEKTPLRRLGVRLVSMVISLLVVASIAGIFYKDYASVG
RNNRTLNLEIVPTNYLYSAFQYINHRYFTPKMPFQTIGNDAKLVQQPGQKPNLVFLVIGE
TARAQNQSSEGYAKPTNQYTQAIPDVVFFNKMTSCGTATAISVPCMFSDMKRTRYDANRA
RNSEGLLDILHKAGVSVFWKDNDEGCKGVCDRVPNITIDTKKDGKYCDGDTCYDMALMQN
IDDDIKPDGKNTLIGLHLIGSHGPTYYKRYPQEFRKFMPDCPRSDIENCSQEQLVNTYDN
TLLYTDYTVSQVIEKAKQYQDKYNVAVIYLSDHGESLGENGLYLHGTPYSVAPAQQTHVP
MLFWLSSGYVKAQGIDLQCLKSYAVNKDVSQDNLFHTVLSAMDVQTSERDPQLDILAACR
TSQR
NT seq
1635 nt
NT seq
+upstream
nt +downstream
nt
ttgcgctctatatttccgaagattagctactttacgctgactttactgctgaccctgtat
tttacctttatcgttaatctgccgattttgctgcatttttatcacatcttacaggcactg
cccgcttacaacctggcttttgccctgagcattccggttgcgctgtttgccgcactgaac
tttgtgttcacccctttcagctttcgtccattgcttaagccattctttattatcgtgctg
ccggtcagtgccctcgccagttttgcgatgatgaccttccaggtcgtatttgatcgcggc
atgatcgaaaatattctcgagacgcaatcggctgaagcgtcgtcttacctgaatctgaaa
gtgatactgtggtttgtcttcaccggcgttttgcccgctattttgcttttcctgacaccg
gtcagctatgaaaaaacgccgttacgccgtctcggtgtccgtctggtgtcgatggtgatt
tcattgctggtggttgcctccattgccgggattttttacaaagattacgcctctgtgggc
cgtaacaaccgcaccctgaatctggaaattgtgccgacaaactacctctacagcgcgttc
cagtacatcaatcaccgttacttcacgccgaaaatgccgttccagactattggcaacgat
gcaaaactggtgcagcaaccggggcagaaaccaaatctggtgttcctggtgattggggaa
accgcgcgggcgcaaaatcagtcatctgagggttacgccaaaccgactaatcagtacaca
caggctattcctgacgtggtgttctttaataaaatgacgtcatgcggcacggcaacggcg
atttctgtgccgtgcatgttctcggatatgaagcgcacccgctacgacgccaaccgcgcc
cgtaacagtgaaggcttgctggatatcctgcataaagccggtgtttcggtgttctggaaa
gacaatgatgaaggctgcaaaggcgtatgcgaccgtgtgccgaatatcaccatcgataca
aaaaaagacggtaaatactgtgatggcgatacctgctacgacatggcgctgatgcagaat
atcgatgacgacatcaaacctgacggcaaaaatacgctgattggcttacatctgatcggc
agccacggcccgacgtactacaaacgctatccgcaggaattccgtaagtttatgcctgac
tgcccgcgcagcgatattgaaaactgttctcaggaacaactggtgaatacctacgataat
accctgctttacacggattacacggtgtcgcaggtgattgagaaggcgaagcagtatcag
gataagtacaacgtggctgtgatttatctttctgaccatggcgaatcgctgggtgaaaat
ggcctgtatttgcacggcacgccttacagcgtggcaccggcgcaacagacacacgtgccg
atgctgttctggttatccagcggttatgtgaaagcgcagggaattgatctgcaatgcctg
aaatcgtatgccgtgaacaaagacgtttcacaggataacctgttccacaccgtgctgagc
gcgatggacgtgcaaacctcggaacgtgatccgcaactggatattctggcagcctgtcgt
acatcacaaaggtaa
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