KEGG   Massilia oculi: DIR46_22155
Entry
DIR46_22155       CDS       T05448                                 
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
mtim  Massilia oculi
Pathway
mtim02020  Two-component system
mtim02030  Bacterial chemotaxis
Brite
KEGG Orthology (KO) [BR:mtim00001]
 09130 Environmental Information Processing
  09132 Signal transduction
   02020 Two-component system
    DIR46_22155
 09140 Cellular Processes
  09142 Cell motility
   02030 Bacterial chemotaxis
    DIR46_22155
 09180 Brite Hierarchies
  09183 Protein families: signaling and cellular processes
   02022 Two-component system [BR:mtim02022]
    DIR46_22155
   02035 Bacterial motility proteins [BR:mtim02035]
    DIR46_22155
Enzymes [BR:mtim01000]
 3. Hydrolases
  3.1  Acting on ester bonds
   3.1.1  Carboxylic-ester hydrolases
    3.1.1.61  protein-glutamate methylesterase
     DIR46_22155
  3.5  Acting on carbon-nitrogen bonds, other than peptide bonds
   3.5.1  In linear amides
    3.5.1.44  protein-glutamine glutaminase
     DIR46_22155
Two-component system [BR:mtim02022]
 CheA family
  CheA-CheYBV (chemotaxis)
   DIR46_22155
Bacterial motility proteins [BR:mtim02035]
 Flagellar system
  Chemotaxis proteins
   Two component system proteins
    DIR46_22155
SSDB
Motif
Pfam: CheB_methylest Response_reg
Other DBs
NCBI-ProteinID: AWL06874
UniProt: A0A2S2DNF0
LinkDB
Position
4905453..4906517
AA seq 354 aa
MKTKVLIVDDSALIRSVMSEIVNSQPDLEVVATAPDPLVARELIKKHNPDVLTLDVEMPK
MDGLDFLEKLMRLRPMPVLMVSSLTERGSEITMRALELGAVDFVTKPKISIQTGMREYAD
MIADKIRAAARARIAPRSRTPQAASAPLSALRSPLISSEKLIIIGASTGGTEAIREFLMQ
MPSDCPGILIAQHMPEGFTSSFARRLDALCRISVVESAGNERVLPGHAYIAPGHSHLLLT
RSGANYMTRIEQSPPVNRHRPSVDVLFRSAAQAAGKNAVGVILTGMGKDGAAGMLEMRQA
GAHNFAQDEASCVVFGMPREAIALGAAHDVGPLQALPRMVLEHLAAQGGRALRV
NT seq 1065 nt   +upstreamnt  +downstreamnt
atgaagaccaaggtgctgatcgtcgacgactccgcgctgatccgcagcgtgatgagcgag
atcgtcaattcccagcccgacctcgaagtggtcgccaccgcgcccgatccgctggtcgcg
cgcgagttgataaaaaaacacaaccctgacgtgctgacgctggacgtcgagatgcccaag
atggacggcctcgacttcctggaaaagctgatgcgcctgcgcccgatgcccgtgctgatg
gtgtcgtcgctgaccgagcgcggctcggaaatcacgatgcgcgcgctcgaactgggcgcg
gtcgacttcgtgaccaagccgaagatctcgatccagaccggcatgcgcgagtatgccgac
atgatcgccgacaagatccgcgccgccgcacgcgcgcgcatcgcgccgcgttcgcgcacg
ccgcaggcagccagtgcgccgctgtcggccttgaggagtcccctgatctcttccgaaaag
ctgatcatcatcggcgcctcgaccggcggcaccgaagcgatccgcgaattcctgatgcag
atgccgtccgactgcccgggcatcctgatcgcccagcacatgccggaaggcttcaccagt
tccttcgccaggcgcctggatgcgctgtgcaggatcagcgtggtcgagtccgcaggcaac
gagcgggtgctgcccggccacgcctatatcgcgccgggccactcgcacctgctgctgacg
cgttcgggcgccaactacatgacccgtatcgagcagtcgccgccggtcaaccgccaccgt
ccctcggtcgacgtgctgttccgctccgccgcgcaggcggccggtaaaaacgccgttggt
gttatcctgaccggcatgggcaaggacggtgcggccggcatgctcgagatgcgccaggcc
ggcgcccacaacttcgcccaggacgaagccagctgcgtcgtgttcggcatgccgcgtgaa
gcgatcgcgctgggcgccgcccatgacgtgggccccttgcaggccttgccgcgcatggtg
ctcgaacatctggcggcgcagggcggccgggcgttgcgtgtttga

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