Entry
Symbol
secA
Name
(GenBank) preprotein translocase; secretion protein
KO
Organism
ssn Shigella sonnei Ss046
Pathway
Brite
KEGG Orthology (KO) [BR:ssn00001 ]
09120 Genetic Information Processing
09123 Folding, sorting and degradation
03060 Protein export
SSON_0106 (secA)
09130 Environmental Information Processing
09131 Membrane transport
03070 Bacterial secretion system
SSON_0106 (secA)
09140 Cellular Processes
09145 Cellular community - prokaryotes
02024 Quorum sensing
SSON_0106 (secA)
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
02044 Secretion system [BR:ssn02044 ]
SSON_0106 (secA)
Enzymes [BR:ssn01000 ]
7. Translocases
7.4 Catalysing the translocation of amino acids and peptides
7.4.2 Linked to the hydrolysis of a nucleoside triphosphate
7.4.2.8 protein-secreting ATPase
SSON_0106 (secA)
Secretion system [BR:ssn02044 ]
Sec (secretion) system
Prokaryotic Sec-SRP core components
SSON_0106 (secA)
BRITE hierarchy
SSDB
Ortholog Paralog Gene cluster GFIT
Motif
Motif
Other DBs
LinkDB
All DBs
Position
117622..120327
Genome browser
AA seq
901 aa AA seq DB search
MLIKLLTKVFGSRNDRTLRRMRKVVNIINAMEPEMEKLSDEELKGKTAEFRARLEKGEVL
ENLIPEAFAVVREASKRVFGMRHFDVQLLGGMVLNERCIAEMRTGEGKTLTATLPAYLNA
LTGKGVHVVTVNDYLAQRDAENNRPLFEFLGLTVGINLPGMPAPAKREAYAADITYGTNN
EYGFDYLRDNMAFSPEERVQRKLHYALVDEVDSILIDEARTPLIISGPAEDSSEMYKRVN
KIIPHLIRQEKEDSETFQGEGHFSVDEKSRQVNLTERGLVLIEELLVKEGIMDEGESLYS
PANIMLMHHVTAALRAHALFTRDVDYIVKDGEVIIVDEHTGRTMQGRRWSDGLHQAVEAK
EGVQIQNENQTLASITFQNYFRLYEKLAGMTGTADTEAFEFSSIYKLDTVVVPTNRPMIR
KDLPDLVYMTEAEKIQAIIEDIKERTAKGQPVLVGTISIEKSELVSNELTKAGIKHNVLN
AKFHANEAAIVAQAGYPAAVTIATNMAGRGTDIVLGGSWQAEVAALENPTAEQIEKIKAD
WQVRHDAVLEAGGLHIIGTERHESRRIDNQLRGRSGRQGDAGSSRFYLSMEDALMRIFAS
DRVSGMMRKLGMKPGEAIEHPWVTKAIANAQRKVESRNFDIRKQLLEYDDVANDQRRAIY
SQRNELLDVSDVSETINSIREDVFKATIDAYIPPQSLEEMWDIPGLQERLKNDFDLDLPI
AEWLDKEPELHEETLRERILAQSIEVYQRKEEVVGAEMMRHFEKGVMLQTLDSLWKEHLA
AMDYLRQGIHLRGYAQKDPKQEYKRESFSMFAAMLESLKYEVISTLSKVQVRMPEEVEEL
EQQRRMEAERLAQMQQLSHQDDDSAAAAALAAQTGERKVGRNDPCPCGSGKKYKQCHGRL
Q
NT seq
2706 nt NT seq +upstream nt +downstream nt
atgctaatcaaattgttaactaaagttttcggtagtcgtaacgatcgcaccctgcgccgg
atgcgcaaagtggtcaacatcatcaatgccatggaaccggagatggaaaaactctccgac
gaagaactgaaagggaaaaccgcagagtttcgtgcacgtctggaaaaaggcgaagtgctg
gaaaatctgatcccggaagctttcgccgtggtacgtgaggcaagtaagcgcgtctttggt
atgcgtcacttcgacgttcagttactcggcggtatggttcttaacgaacgctgcatcgcc
gaaatgcgtaccggtgaaggtaaaaccctgaccgcaacgctgcctgcttacctgaacgca
ctaaccggtaaaggcgtgcacgtagttaccgtcaacgactacctggcgcaacgtgacgcc
gaaaacaaccgtccgctgtttgaattccttggcctgactgtcggtatcaacctgccgggc
atgccagcaccggcaaagcgcgaagcttacgcagctgacatcacttacggtacgaacaac
gaatacggctttgactacctgcgcgacaatatggcgttcagccctgaagaacgtgtacag
cgtaaactgcactatgcgctggtggacgaagtggactccatcctgatcgatgaagcgcgt
acaccgctgatcatttccggcccggcagaagacagctcggaaatgtataaacgcgtgaat
aaaattattccgcacctgatccgtcaggaaaaagaagactccgaaaccttccagggcgaa
ggccacttctcggtggacgaaaaatctcgccaggtgaacctgaccgaacgtggtctggtg
ctgattgaagaactgctggtgaaagagggcatcatggatgaaggggagtctctgtactct
ccggccaacatcatgctgatgcaccacgtaacggcggcgctgcgcgctcatgcgctgttt
acccgcgacgtcgactacatcgttaaagatggtgaagttatcatcgttgacgaacacacc
ggtcgtaccatgcagggccgtcgctggtccgatggtctgcaccaggctgtggaagcgaaa
gaaggtgtgcagatccagaacgaaaaccaaacgctggcttcgatcaccttccagaactac
ttccgtctgtatgaaaaactggcggggatgaccggtactgctgataccgaagctttcgaa
tttagctccatctacaagctggataccgtcgttgttccgaccaaccgtccaatgattcgt
aaagatctgccggacctggtctacatgactgaagcggaaaaaattcaggcgatcattgaa
gatatcaaagaacgtactgcgaaaggccagccggtgctggtgggtactatctccatcgaa
aaatcggagctggtgtcaaacgaactgaccaaagccggtattaagcacaacgtcctgaac
gccaaattccacgccaacgaagcggcgattgttgctcaggcaggttatccggctgcggtg
actatcgcgaccaatatggcgggtcgtggtacagatattgtgctcggtggtagctggcag
gcagaagttgccgcgctggaaaatccgaccgcagagcaaattgaaaaaattaaagccgac
tggcaggtacgtcacgatgcggtactggaagcaggtggcctgcatatcatcggtaccgag
cgtcacgaatcccgtcgtatcgataaccagttgcgcggtcgttctggtcgtcagggggat
gctggttcttcccgtttctacctgtcgatggaagatgcgctgatgcgtatttttgcttcc
gaccgagtatccggcatgatgcgtaaactgggtatgaagccaggcgaagccattgaacac
ccgtgggtgactaaagcgattgccaacgcccagcgtaaagttgaaagccgtaacttcgac
attcgtaagcaactgctggaatatgatgacgtggctaacgatcagcgtcgcgccatttac
tcccagcgtaacgaactgctggatgtcagcgatgtgagcgaaaccatcaacagcattcgt
gaagatgtgttcaaagcgaccattgatgcctacattccgccacagtcactggaagaaatg
tgggatattccggggctgcaggaacgtctgaagaacgatttcgacctcgatttgccaatt
gccgagtggctggataaagaaccagaactgcatgaagagacgctgcgtgagcgaattctg
gcgcagtccatcgaagtgtatcagcgtaaagaagaagtggttggtgctgagatgatgcgt
cacttcgaaaaaggcgtcatgctgcaaactctcgactctctgtggaaagagcacctagcg
gcgatggactatctgcgtcagggtatccacctgcgtggctatgcacagaaagatccgaag
caggaatacaaacgtgaatcgttctccatgtttgcagcgatgctggagtcgttaaaatat
gaagttatcagcacgctgagcaaagtccaggtacgtatgcctgaagaggttgaggagctg
gaacaacagcgtcgtatggaagccgagcgtttagcgcaaatgcagcagcttagccatcag
gatgacgactctgcagccgcagctgcactggcggcgcaaaccggtgagcgcaaagtagga
cgtaacgatccttgcccgtgcggttctggtaaaaaatacaagcagtgccatggtcgcctg
caataa