KEGG   Methanocella paludicola: MCP_1444Help
Entry
MCP_1444          CDS       T01142                                 

Definition
(GenBank) putative MCP methyltransferase
  KO
K13924  two-component system, chemotaxis family, CheB/CheR fusion protein [EC:2.1.1.80 3.1.1.61]
Organism
mpd  Methanocella paludicola
Pathway
mpd02020  Two-component system
mpd02030  Bacterial chemotaxis
Brite
KEGG Orthology (KO) [BR:mpd00001]
 Environmental Information Processing
  Signal transduction
   02020 Two-component system
    MCP_1444
 Cellular Processes
  Cell motility
   02030 Bacterial chemotaxis
    MCP_1444
Enzymes [BR:mpd01000]
 2. Transferases
  2.1  Transferring one-carbon groups
   2.1.1  Methyltransferases
    2.1.1.80  protein-glutamate O-methyltransferase
     MCP_1444
 3. Hydrolases
  3.1  Acting on ester bonds
   3.1.1  Carboxylic-ester hydrolases
    3.1.1.61  protein-glutamate methylesterase
     MCP_1444
Two-component system [BR:mpd02022]
 CheA family
  CheA-CheYBV [MD:M00506]
   MCP_1444
Bacterial motility proteins [BR:mpd02035]
 Flagellar system
  Chemotaxis proteins
   Two component system proteins
    MCP_1444
BRITE hierarchy
SSDB OrthologParalogGene clusterGFIT
Motif
Pfam: CheR CheB_methylest PAS_10 CheR_N PAS_4 PAS_9 PAS Golgin_A5 Fez1 Rootletin DUF3450 IncA Spc7 HMMR_N PAS_8 IL12 DUF745 DUF812 KASH_CCD ATG16 APG6 Prominin Exonuc_VII_L FapA CENP-F_leu_zip Lebercilin TBPIP DUF1664 Atg14 HAP1_N LMBR1 DUF3552 RPW8 TPR_MLP1_2 WXG100 DUF4061 HAUS-augmin3 ADIP HIP1_clath_bdg IFT57
Motif
Other DBs
NCBI-ProteinID: BAI61516
NITE: MCP_1444
UniProt: D1YYJ4
Position
complement(1446331..1449291)
Genome map
AA seq 986 aa AA seqDB search
MSANNSRIKGDRKTPTSDQPTVIPGKQEDSEGQFFIAGLCGSAGGLEAFEEFFKKLPPDT
GIGYVLITHLDPTKKDIMPQLIQRYTRMPVVQAEDDMVIEPNHVYVIPPNNDMTLSEGVL
KLHTPSMPKGVRMPIDVFLRSLAADRREMSIALIFSGMGTDGVLGVKAIKEKNGTVMAQE
PSEAKFDSMPQSAINTGMVDYVAPAADLPEQLVEFGKNYQRLLSKSVAEITKKPSDIDKI
FQIILRRTGHDFTAYKPSTVFRRIERRMTVHKIKDLKGYIEYLNGHADEVDSLFKELLIG
VTNFFRDPEAFNALEKEAIPQMLKKVAPNSLIRVWVPGCSTGEEAYSIAMVLLESLDGRP
NKVQIFATDIYSEAIEHARKGVYPDNIAADVSEERLREFFTKEDSYFKVKKRVREMIIFA
EQDVIHDPPFTGMDLISCRNLLIYLKPEAQTKIISSFAYSLNPRGILFLGTSETLGQFSD
LFTTINNRWKLFGRKEYATRREVQTIIPAATSNPIERMNIQARVLRPPTVELAHQALLDL
LSPPAAIIDHNGDIIYIHGHTGKYLEPAPGKASMNIFAMARKGLDTELSIAVDRAKRNNA
DVVIKSVEVQTNAHTQTVDVAVKLITQPEALKGLFLVSFHEAEKPPKARTSKAATAGKSE
TSRQLSEELKYTKDKLQSTMEEMRASQEELRSMNEELQSTNEELQSTNEELTTSKEEMQS
LNEELVTVNSELQAKLDDLTRTNNDMKNLLNSTDIATIFINNNLKITRFTSSATKIVNLL
PGDLGRPITDISTNIKDANNGNSLIVQESRRVLEKLVPVEKQIVTKDGDWYIMRVLPYRT
VDNVIDGVVITFNDVTQMKQLEKSMKAAKEYTEAVIATIREPLVVLDNAMHVINANKSFY
KTFHVSPEETEHHILYELGNGQWNIPDLKKLLENILPGKRSFDDFKVEHDFPSIGRRVML
LNARMIETGAGDGLILLSIEDATDRA
NT seq 2961 nt NT seq  +upstreamnt  +downstreamnt
atgagcgctaataattcaaggattaagggtgacaggaagacgccgacctcggaccagccg
accgttatacccggaaagcaggaggattcggaaggccaattctttatcgcagggctatgc
ggctccgccggcgggctcgaagcattcgaggagtttttcaagaaactgccgcctgatacc
ggaatagggtatgtccttatcacacatctcgacccgaccaagaaggacatcatgccccag
ttgatacagcgttatacgaggatgcctgtcgtgcaggcagaagatgacatggtgatcgaa
ccgaaccacgtctacgtcataccgccgaataatgacatgacgttatcagaaggcgttctc
aagctccacacgccgtccatgccgaaaggcgtacggatgccgatcgacgtgttccttcgg
agcctggccgccgacaggcgggaaatgtccattgcgctcatcttctccggaatgggcacc
gacggagtcctcggcgtcaaggccattaaggaaaagaacggcacggtgatggcgcaggaa
ccgtccgaggcaaaattcgatagtatgccgcagagcgccatcaatacgggcatggtcgat
tacgtcgcgcctgccgcagatctccccgagcaactcgtcgaatttggaaagaattaccag
cggctgctgagtaaaagcgtggcggagataactaagaagccgtcggatatagataagata
tttcagatcattctccgaagaacgggccacgatttcacggcctataagccgagcacggta
ttccgcaggatagagcggcgtatgaccgtccacaagatcaaggacctgaaggggtatatc
gagtatctcaacggtcatgccgatgaggtcgactcgctatttaaagagctgcttatcggt
gtaaccaacttcttcagggatcctgaagcgtttaacgcacttgagaaggaagccattcca
cagatgttaaagaaagtggccccgaattcgttgataagggtgtgggtgcccggctgttcc
acgggggaagaggcgtattccatcgccatggtcttgcttgaatccctggatggcaggccg
aacaaggttcaaatattcgctaccgacatctatagcgaagcgatcgagcatgcccgtaaa
ggcgtgtatcccgataatatcgcggccgatgtatccgaggaacgactgcgggaatttttc
accaaggaagacagctatttcaaggtcaaaaagcgcgtccgcgagatgatcattttcgct
gagcaggacgtcatccatgacccgcctttcaccgggatggacctgataagctgcaggaat
ttgctgatatacctgaagccggaagcgcagaccaagatcatatcatctttcgcatattcc
ctgaacccaagggggatcttattcttgggcacttccgagaccctcggccaattttccgac
ttattcacgacgatcaacaatcgatggaagctctttgggagaaaggagtatgcgaccagg
agagaggttcaaactataatcccggcagcgacgtccaatccgatcgagcgtatgaacatc
caggcccgtgtattaaggccgcccacagtcgagctggctcaccaggcgctcctggacctg
ttatctccgccggcagcgataatcgaccataatggcgatatcatctatatccacggacat
acgggtaaatacctggagccggctccggggaaggcgagcatgaacatcttcgccatggcg
agaaaaggcctggacacggagctttcgatcgccgtcgatagggctaaaaggaacaacgcc
gatgtggtcataaaaagcgttgaagtccagacgaatgcgcatacccagactgtagacgtt
gctgtgaagctcatcacgcagccggaggccttaaagggcctctttttggtatcgttccat
gaagctgagaagccgcctaaggccaggacgtcaaaggccgcgaccgccgggaagagcgag
acgagccgccagctttccgaggagctcaaatacaccaaggataagctccagtccacgatg
gaggagatgcgcgcgtcgcaggaagagctccggtccatgaacgaggagctgcagagcacg
aacgaggagctgcagagcacgaacgaggagctgaccacctcgaaggaagagatgcaatcg
ctcaacgaagagcttgtgaccgtcaactcggagcttcaggccaagctggacgacctgacc
cgcacgaataatgacatgaagaacctgctcaacagcaccgacatcgccaccatttttata
aataataacctcaagataacgcgctttacgtcctcggccacgaagatcgtcaatttactc
cccggggacctgggccggcccatcaccgatatttcgacgaacattaaggatgcgaataat
ggcaatagtctaatagtacaggaatcacgcagagttctcgaaaagctcgttcctgtggaa
aagcagatcgtgactaaggatggcgactggtatatcatgcgtgtgttaccctacaggacc
gtggataacgtcatcgatggcgtggtgatcacgtttaatgacgtcactcagatgaaacag
cttgaaaagtctatgaaggccgcaaaagagtacacggaagctgttattgccaccatccgg
gagcctctggtggtgctcgataatgcgatgcacgtcattaatgccaataaatcattctac
aaaacgttccacgtctcccccgaagagactgagcatcatatattatatgaacttggcaac
ggtcaatggaacattcccgatctcaagaagctgctcgagaatatacttcccggcaaaaga
tcgttcgatgactttaaagtcgagcatgactttccgagtataggccgccgtgtgatgctg
ctcaacgcgagaatgatagagactggcgccggtgatggcttaattctgctgtccatcgag
gatgcgacggatcgggcttaa

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