Beijerinckiaceae bacterium RH AL1: RHAL1_01296
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Entry
RHAL1_01296 CDS
T06029
Name
(GenBank) Protein-glutamate methylesterase
KO
K13924
two-component system, chemotaxis family, CheB/CheR fusion protein [EC:
2.1.1.80
3.1.1.61
]
Organism
bbar
Beijerinckiaceae bacterium RH AL1
Pathway
bbar02020
Two-component system
bbar02030
Bacterial chemotaxis
Brite
KEGG Orthology (KO) [BR:
bbar00001
]
09130 Environmental Information Processing
09132 Signal transduction
02020 Two-component system
RHAL1_01296
09140 Cellular Processes
09142 Cell motility
02030 Bacterial chemotaxis
RHAL1_01296
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
02022 Two-component system [BR:
bbar02022
]
RHAL1_01296
02035 Bacterial motility proteins [BR:
bbar02035
]
RHAL1_01296
Enzymes [BR:
bbar01000
]
2. Transferases
2.1 Transferring one-carbon groups
2.1.1 Methyltransferases
2.1.1.80 protein-glutamate O-methyltransferase
RHAL1_01296
3. Hydrolases
3.1 Acting on ester bonds
3.1.1 Carboxylic-ester hydrolases
3.1.1.61 protein-glutamate methylesterase
RHAL1_01296
Two-component system [BR:
bbar02022
]
CheA family
CheA-CheYBV (chemotaxis)
RHAL1_01296
Bacterial motility proteins [BR:
bbar02035
]
Flagellar system
Chemotaxis proteins
Two component system proteins
RHAL1_01296
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
CheR
CheB_methylest
PAS_10
PAS_4
CheR_N
HAUS-augmin3
CENP-F_leu_zip
CCDC14
Sec8_N
LRIM1_dimer
IFT57
HAP1_N
Sec20
Filament
DUF3584
UPF0242
TPR_MLP1_2
Rootletin
Mod_r
AAA_23
DUF16
Golgin_A5
EXOC6_Sec15_N
DegS
OmpH
CCDC93_CC
Fez1
Exonuc_VII_L
THOC7
DUF2203
DUF3450
Seryl_tRNA_N
FapA
AAA_11
Spectrin
Fzo_mitofusin
Motif
Other DBs
NCBI-ProteinID:
VVC54398
UniProt:
A0A5E4NW73
LinkDB
All DBs
Position
1:complement(1340964..1343522)
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AA seq
852 aa
AA seq
DB search
MDRQHRFLMVGIGASAGGLEALGLFFQGLREPPGMAFVVISHIGRDRPSELATLLSNFTT
LSVFTVEDGVQIAPNHVYVSPPGVTMTMSSGRVKVHHDGSDLARTKAIDIFFSSLAEDQG
EYAAAIVLSGLDGDGTLGIKAIKERNGLTMAQTGNGPSPKFDSMPQSAIATGLVDLALPA
QEMGPRLIEFARGMGALADLGPGAGRTRLNDIISKKAEICTILLDQLGHDFSGYKDATFA
RRVQRRCLFLNIALASEYVEKLRAEPAEAATLFRDLLINVTDFFRDADAFDSLAKDVVPS
LLENRTSQDTLRVWVPGCATGEEVFSLAILLMEAIEGRESAPRVQVFATDIDERALDVAR
AGRYPAPMMKEVSEERRKRFFVKDGEGYLITRAIREICIFSPHSVFRDPPFSRIDLVSCR
NLLIYLGGDVQHQVLPIFHYSLRTRGYLFLGLSENIGSHSDLFEPIDRKNRIFRARGDKR
AMPQLPFRLDRKPGYPASVPRSSSVSRLRREAEMQILERHAPQFVLVNTAGDIVYFSSDT
GSFLQPSAGAPTRALIDLVRKGARVEVRSALRECMETWKPVRRSGLRIEIEPRKVLVHTI
TIEPLAKRDGEEPLLLVVFHQVGEEVAGRFAEAASQSATNEDPADVDAEMKDIRDRLQAT
IEEYETSMEELRSANEELVSLNEEQQSSNEELEASREELQSLNEELQTVNAELKMNIIEL
DAANEDLRHFFESTEVATVFLDSQLTIRNYTVPALEVFRMKPADKGRALADLSTRIDYPN
FERDLQTCLLEGSSKSVEVPARDGGTYYRLLIRPFDKLRNSEAGLVVTATDITELVQLRK
MSPPASGEHKRE
NT seq
2559 nt
NT seq
+upstream
nt +downstream
nt
atggaccgtcagcaccgcttcctaatggtcggcatcggtgcgtccgccggcggccttgaa
gcgctcgggctcttcttccaggggctccgcgagccgcccggaatggcctttgttgtcatc
tcgcatatcggtcgcgatcgtcctagcgagcttgcaacgctactgagcaatttcacgaca
ttgagcgtcttcacagtagaggacggcgtccagatcgcaccgaaccatgtgtatgtgtcg
ccgcccggtgtcacgatgacgatgagcagcggccgggtgaaagtccatcatgacggcagc
gatcttgcccgaacgaaggcaatcgacatatttttcagcagcctcgccgaagaccaaggc
gagtatgctgccgccatagtgctttccggtctcgatggcgacgggaccctcggcatcaag
gcaatcaaagagcgcaacgggctgaccatggcacagaccggcaacggcccgtcgccaaag
ttcgacagcatgccgcaaagcgcaatcgcaaccggcctcgtcgacctcgcccttccggcc
caggaaatgggaccacgcctgatcgagttcgcacgtggcatgggcgcgcttgccgatctt
ggtccgggcgccggtcgcacacgcttgaacgacatcatcagcaagaaagctgaaatctgc
acgatcttgcttgaccagctcggtcacgacttttccggctacaaggatgcaactttcgct
cggcgggtccagcggcgctgcttgtttctcaacattgctctggcatcggagtacgtagaa
aaattgcgcgctgaacccgcagaagccgcgacactcttccgcgacttgctcatcaacgtc
accgacttcttccgggacgccgacgcattcgatagtttggcgaaggacgttgtcccttcg
ctcctcgaaaacagaacgagccaggacacgttgcgcgtatgggtaccgggatgcgcaacc
ggcgaggaagtgttttcgcttgcgatccttttgatggaagcgatcgaggggcgggagtcg
gcaccacgcgtgcaggtgttcgcgactgacatcgacgaacgcgctctcgacgttgcgcga
gcagggcgatatccggcgccaatgatgaaggaggtctcggaagagagacggaagcgcttc
tttgtaaaagacggcgaaggttatttgattacgcgggccattcgcgagatatgtattttc
tcgcctcacagtgtcttccgggatccgcccttttcgcgcatcgatcttgtctcctgccgt
aacctgctgatttatcttggtggcgacgtccagcatcaggtgctgccgatcttccactat
tcactgcgcacgcgtggatatctatttcttggcttatcagaaaacattggcagccactcc
gatcttttcgagccgatagatcgtaaaaatcgtatctttcgagcacgcggcgacaagcgg
gcgatgccgcaattgcctttcagattggaccgcaaacccggatacccggcttccgtgcca
cgttcttccagcgtctcacggctccgacgcgaggccgaaatgcaaattctggagcggcac
gcaccccaattcgttctcgtcaacacggcgggcgacatcgtctacttctcctccgatact
ggatcattccttcagccgtctgccggcgcccccacgcgcgccttaatcgatctcgtgcgt
aaaggggctcgcgtcgaagtcaggagcgccttgcgcgagtgtatggagacttggaagcca
gtccgacgaagtggcctgagaatcgaaatcgaacctcggaaggtgctggtccatactatt
actatcgagcctctcgcgaagcgcgatggggaggagccgctactgctcgtcgtgtttcat
caggtaggcgaggaggtagccgggcgttttgccgaagcggcatcgcagtcggcaactaat
gaagacccagcagacgtcgacgctgaaatgaaggacattcgcgatcgactgcaggcaacc
atcgaggaatacgagacatcgatggaggaattgcgctcggctaatgaagagcttgtctcg
ctcaatgaagagcagcagtcctcgaatgaggaactggaggcgtcacgcgaagagctccaa
tctctgaatgaggagttacagacggtcaacgccgaacttaaaatgaatatcatagagctg
gatgcggccaacgaggatcttcggcattttttcgagagcaccgaagtcgcgacggtattc
ttagactcacaacttacgatccgcaattacacagttcctgcacttgaagtttttaggatg
aagcccgctgacaaggggcgcgcgcttgcggatctatctacaaggatcgattatccgaac
ttcgaacgggatctgcagacctgtctcttggaaggctcgtctaagtcagtagaggtcccg
gctcgggacggaggcacttactaccgtctgcttatccggccgttcgacaagcttcgaaac
agtgaagcggggcttgttgtcaccgcaaccgacatcacggagttagtgcagttgaggaaa
atgtctccgccggcgagcggcgagcacaaaagggaatga
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