Escherichia coli clone D i14: i14_1255
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Entry
i14_1255 CDS
T02003
Symbol
ptsG
Name
(GenBank) glucose-specific PTS system IIBC components
KO
K02779
glucose PTS system EIICB or EIICBA component [EC:
2.7.1.199
]
Organism
elc
Escherichia coli clone D i14
Pathway
elc00010
Glycolysis / Gluconeogenesis
elc00520
Amino sugar and nucleotide sugar metabolism
elc01100
Metabolic pathways
elc02060
Phosphotransferase system (PTS)
Brite
KEGG Orthology (KO) [BR:
elc00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00010 Glycolysis / Gluconeogenesis
i14_1255 (ptsG)
09107 Glycan biosynthesis and metabolism
00520 Amino sugar and nucleotide sugar metabolism
i14_1255 (ptsG)
09130 Environmental Information Processing
09131 Membrane transport
02060 Phosphotransferase system (PTS)
i14_1255 (ptsG)
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
02000 Transporters [BR:
elc02000
]
i14_1255 (ptsG)
Enzymes [BR:
elc01000
]
2. Transferases
2.7 Transferring phosphorus-containing groups
2.7.1 Phosphotransferases with an alcohol group as acceptor
2.7.1.199 protein-Npi-phosphohistidine---D-glucose phosphotransferase
i14_1255 (ptsG)
Transporters [BR:
elc02000
]
Phosphotransferase system (PTS)
Enzyme II [TC:
4.A
]
Glucose-specific II component
i14_1255 (ptsG)
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
PTS_EIIC
PTS_EIIB
MscS_TM
Motif
Other DBs
NCBI-ProteinID:
AER88755
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Position
1263550..1264983
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AA seq
477 aa
AA seq
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MFKNAFANLQKVGKSLMLPVSVLPIAGILLGVGSANFSWLPAVVSHVMAEAGGSVFANMP
LIFAIGVALGFTNNDGVSALAAVVAYGIMVKTMAVVAPLVLHLPAEEIASKHLADTGVLG
GIISGAIAAYMFNRFYRIKLPEYLGFFAGKRFVPIISGLAAIFTGVVLSFIWPPIGSAIQ
TFSQWAAYQNPVVAFGIYGFIERCLVPFGLHHIWNVPFQMQIGEYTNAAGQVFHGDIPRY
MAGDPTAGKLSGGFLFKMYGLPAAAIAIWHSAKPENRAKVGGIMISAALTSFLTGITEPI
EFSFMFVAPILYIIHAILAGLAFPICILLGMRDGTSFSHGLIDFIVLSGNSSKLWLFPIV
GIGYAIVYYTIFRVLIKALDLKTPGREDATEDAKATGTSEMAPALVAAFGGKENITNLDA
CITRLRVSVADVSKVDQAGLKKLGAAGVVVAGSGVQAIFGTKSDNLKTEMDEYIRNH
NT seq
1434 nt
NT seq
+upstream
nt +downstream
nt
atgtttaagaatgcatttgctaacctgcaaaaggtcggtaaatcgctgatgctgccggta
tccgtactgcctatcgcaggtattctgctgggcgtcggttccgcgaatttcagctggctg
cccgccgttgtatcgcatgttatggcagaagcaggcggttccgtctttgcaaacatgcca
ctgatttttgcgatcggtgtcgccctcggctttaccaataacgatggcgtatccgcgctg
gccgcagttgttgcctatggcatcatggttaaaaccatggccgtggttgcgccactggta
ctgcatttacctgctgaagaaatcgcctctaaacacctggcggatactggcgtactcgga
gggattatctccggtgcgattgcagcgtatatgtttaaccgtttctaccgtattaagctg
cctgagtatcttggcttctttgccggtaaacgctttgtgccgatcatttcaggcctggct
gccatctttactggcgttgtgctgtccttcatttggccgccgattggttctgcaatccag
accttctctcagtgggctgcttaccagaacccggtagttgcgtttggcatttacggtttc
atcgaacgttgcctggtaccgtttggtctgcaccacatctggaacgtacctttccagatg
cagattggtgaatacaccaacgcagcaggtcaggttttccacggcgacattccgcgttat
atggcgggtgacccgactgcgggtaaactgtctggtggcttcctgttcaaaatgtacggt
ctgccagctgccgcaattgctatctggcactctgctaaaccagaaaaccgcgcgaaagtg
ggcggtattatgatctccgcggcgctgacctcgttcctgaccggtatcaccgagccgatc
gagttctccttcatgttcgttgcgccgatcctgtacatcatccacgcgattctggcaggc
ctggcattcccaatctgtattcttctggggatgcgtgacggtacgtcgttctcgcacggt
ctgatcgacttcatcgttctgtctggtaacagcagcaaactgtggctgttcccgatcgtc
ggtatcggttatgccattgtttactacaccatcttccgcgtgctgattaaagcactggat
ctgaaaacgccgggtcgtgaagatgcgactgaagatgcaaaagcgacaggtaccagcgaa
atggcaccggctctggttgctgcatttggtggtaaagaaaacattactaacctcgacgca
tgtattacccgtctgcgcgtcagcgttgctgatgtgtctaaagtggatcaggctggcctg
aagaaactgggcgcagcgggcgtagtggttgctggttctggtgttcaggcgattttcggt
actaaatccgataacctgaaaaccgagatggatgagtacatccgtaaccactaa
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