KEGG   Tepidanaerobacter acetatoxydans Re1: TepRe1_1198
Entry
TepRe1_1198       CDS       T01495                                 
Name
(GenBank) signal recognition particle protein
  KO
K03106  signal recognition particle subunit SRP54 [EC:3.6.5.4]
Organism
tep  Tepidanaerobacter acetatoxydans Re1
Pathway
tep02024  Quorum sensing
tep03060  Protein export
tep03070  Bacterial secretion system
Brite
KEGG Orthology (KO) [BR:tep00001]
 09120 Genetic Information Processing
  09123 Folding, sorting and degradation
   03060 Protein export
    TepRe1_1198
 09130 Environmental Information Processing
  09131 Membrane transport
   03070 Bacterial secretion system
    TepRe1_1198
 09140 Cellular Processes
  09145 Cellular community - prokaryotes
   02024 Quorum sensing
    TepRe1_1198
 09180 Brite Hierarchies
  09183 Protein families: signaling and cellular processes
   02044 Secretion system [BR:tep02044]
    TepRe1_1198
Enzymes [BR:tep01000]
 3. Hydrolases
  3.6  Acting on acid anhydrides
   3.6.5  Acting on GTP to facilitate cellular and subcellular movement
    3.6.5.4  signal-recognition-particle GTPase
     TepRe1_1198
Secretion system [BR:tep02044]
 Sec (secretion) system
  Prokaryotic Sec-SRP core components
   TepRe1_1198
  Eukaryotic Sec-SRP protein
   TepRe1_1198
SSDB
Motif
Pfam: SRP54 SRP_SPB SRP54_N AAA_22 CbiA AAA_30 AAA_31 AAA_19 APS_kinase ArlS_N AAA_26 AAA_33 AAA_18 Zeta_toxin 6PF2K AAA_24 ArsA_ATPase ATP_bind_1 nSTAND3 AAA_16 ResIII PDE8A_N ParM_N AAA_5 cobW
Other DBs
NCBI-ProteinID: AEE91344
UniProt: F4LTL4
LinkDB
Position
1249822..1251159
AA seq 445 aa
MAFESLTQKLNDIFKKLRGKGKLSEADVKQAMKEVRLALLEADVNFKVVKDLISKITERA
IGQEVMESLTPAQQVIKIVNEELTSLMGSTQSKVDFSKEITIIMLVGLQGSGKTTTAGKL
GKLLSKNGKKPLLVAADIYRPAAITQLKIVGEKVGLPVFTMGQQDPVDISKASVDYAKKH
NHDVVIIDTAGRLHVDDDLMNELVNISHAVDPSEILLVVDSMTGQDAVNVAEEFNNRLQL
TGLILTKLDGDSRGGAALSVKAVTGCPIKYVGMGEKLDDLEIFHPERMASRILGMGDVLT
LIEKATADFDLKKAQELEDKLKTQSFDLNDFKDQLSQVKKMGSLDQILNMIPGFSQQKLK
GVEIDDKELSRVEAIINSMTLEERSNPSIINGSRRKRIAAGSGTAIQDVNRLLKQYAQTK
KMIKQFAGSDKSRKRSKQKLPFLNF
NT seq 1338 nt   +upstreamnt  +downstreamnt
ttggcttttgagtcccttactcagaaactaaatgatatttttaagaaacttagaggaaaa
ggcaagctatctgaagctgatgttaaacaagctatgaaagaagttcggcttgcgctgctc
gaagccgatgtaaattttaaggttgtaaaggatttaatttccaagataactgagcgagca
attggtcaggaagttatggaaagcttgactccagcacagcaagtgataaaaatcgttaat
gaagagcttacgtcgctgatgggttctactcagagcaaggtagatttttcaaaagagatt
acaattataatgctggttggacttcaaggctccggaaaaactacaactgcaggtaaactt
ggtaaattactttccaagaatggcaaaaaacctcttttagtagctgccgatatttatcgt
ccggcggctataacgcagcttaaaatagtcggagaaaaagtcgggctacctgtttttacc
atgggacaacaggatcccgttgatatatctaaggcatcagtagattatgcaaaaaagcac
aatcatgatgtagtaataatagatacagctggacgtctacatgttgatgacgacttaatg
aacgaacttgtcaatatcagccatgctgttgaccccagcgagatattgcttgtggtagat
agcatgactggtcaagatgcggtaaatgtagctgaggaatttaataacaggctgcaactg
acgggtttaattttaacgaagctagatggcgatagtcgtggtggagcagctctttcggtt
aaagcggttaccggttgtcctataaaatatgtaggaatgggagaaaaacttgatgattta
gaaatttttcaccctgaaagaatggcttcaaggattttagggatgggtgatgtcttaaca
cttatagagaaagcaaccgcagattttgatttaaaaaaggctcaagaactagaagataaa
ctcaaaactcagtcctttgatttaaacgattttaaagaccagttatcacaagttaaaaag
atgggttctttagatcaaatattaaacatgatacccggtttttcacaacaaaagctcaag
ggagttgagattgacgataaagaactcagtcgagttgaggctattattaattcaatgaca
ttggaagaacgaagcaacccttctattattaatggtagccgtcgaaagcgtattgcagcc
gggagcggcactgcaattcaagatgtgaatagactgttaaagcagtacgcgcaaacaaaa
aagatgataaaacaatttgcagggtcagataagagccgcaaaagaagtaaacagaaatta
ccgtttttaaatttttaa

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