Erwinia pyri: Q3V30_12260
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Entry
Q3V30_12260 CDS
T10311
Name
(GenBank) chemotaxis response regulator protein-glutamate methylesterase
KO
K03412
two-component system, chemotaxis family, protein-glutamate methylesterase/glutaminase [EC:
3.1.1.61
3.5.1.44
]
Organism
epi Erwinia pyri
Pathway
epi02020
Two-component system
epi02030
Bacterial chemotaxis
Brite
KEGG Orthology (KO) [BR:
epi00001
]
09130 Environmental Information Processing
09132 Signal transduction
02020 Two-component system
Q3V30_12260
09140 Cellular Processes
09142 Cell motility
02030 Bacterial chemotaxis
Q3V30_12260
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
02022 Two-component system [BR:
epi02022
]
Q3V30_12260
02035 Bacterial motility proteins [BR:
epi02035
]
Q3V30_12260
Enzymes [BR:
epi01000
]
3. Hydrolases
3.1 Acting on ester bonds
3.1.1 Carboxylic-ester hydrolases
3.1.1.61 protein-glutamate methylesterase
Q3V30_12260
3.5 Acting on carbon-nitrogen bonds, other than peptide bonds
3.5.1 In linear amides
3.5.1.44 protein-glutamine glutaminase
Q3V30_12260
Two-component system [BR:
epi02022
]
CheA family
CheA-CheYBV (chemotaxis)
Q3V30_12260
Bacterial motility proteins [BR:
epi02035
]
Flagellar system
Chemotaxis proteins
Two component system proteins
Q3V30_12260
BRITE hierarchy
SSDB
Ortholog
Paralog
GFIT
Motif
Pfam:
CheB_methylest
Response_reg
Motif
Other DBs
NCBI-ProteinID:
WLS77263
UniProt:
A0AA50DHV8
LinkDB
All DBs
Position
complement(2617791..2618840)
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AA seq
349 aa
AA seq
DB search
MGKIRVLCVDDSALMRQLMTEIINSHADMEMVASAPDPLVARDLIKEFNPDVLTLDVEMP
RMDGLDFLEKLMRLRPMPVVMVSSLTGKGSEVTLRALELGAVDFVTKPSLGIREGMLAYS
QMIADKVRAASRAKLHVRGPQATPVMLKAGPLLSSEKLIAIGASTGGTEAIRHVLQPLPA
TSPALLITQHMPPGFTRSFAERLNKLCQITVKEAEDGERILPGHAYIAPGAMHLELARSG
ANYQVKLNEGPPVNRHKPSVDVLFKSVAQHAGRNAVGVILTGMGNDGAAGLLAMNKAGAW
TIAQNEASCVVFGMPREAIALGGASEVVDLHQISQHMLTKISAGQALRI
NT seq
1050 nt
NT seq
+upstream
nt +downstream
nt
atgggaaaaatcagagtgttatgcgtagatgattctgcgctgatgcgtcagttgatgacg
gaaatcataaacagccatgcagatatggagatggtggcttcggcgccagacccgctggtg
gcaagggatttgatcaaagagtttaacccggacgtgctgacgctggatgtggaaatgccg
cgtatggacggactcgatttcctggaaaagctgatgcgcttgcggcctatgccggtggtg
atggtctcttccctgaccggtaaaggctcggaagtcacgcttcgcgcgctggagctgggt
gcggtcgattttgtcactaaaccgtcgctgggcatccgtgaagggatgctggcttacagc
cagatgatagcggacaaagtgcgcgccgcctccagagccaagctgcacgtgcgcgggcca
caggccacgccggtaatgctgaaagcggggccgctgctgagcagtgaaaagctgatagct
attggcgcttcgaccggcggtacggaagcgatcaggcatgtgctgcaaccgttacccgcc
accagcccggcactgctgattacgcagcacatgccgccaggctttacccgctcttttgcc
gagcggctgaacaagctctgccagatcacggtgaaagaggcggaagatggcgagcgtatt
ctgcccggccacgcctacattgcgccaggcgcaatgcatctggaactggcaagaagcggc
gccaactatcaggtcaagctgaatgaaggaccgccggtcaaccgtcataaaccgtcggtg
gacgtgctgtttaaatcagtagcgcagcacgcaggacgaaacgccgttggcgtgattctg
accgggatgggtaacgacggtgccgcaggtctgctggccatgaacaaagcgggcgcctgg
actatcgcccagaacgaagcaagttgtgtcgtatttggcatgccacgagaggcaattgcc
ctcgggggagccagtgaagtggtggatcttcaccaaatcagtcagcacatgctgaccaaa
attagcgccggacaggcattacgtatttaa
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