Xylanibacter ruminicola: PRU_0040
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Entry
PRU_0040 CDS
T01212
Symbol
clpA
Name
(GenBank) ATP-dependent Clp protease, ATP-binding subunit ClpA
KO
K03694
ATP-dependent Clp protease ATP-binding subunit ClpA
Organism
pru
Xylanibacter ruminicola
Brite
KEGG Orthology (KO) [BR:
pru00001
]
09180 Brite Hierarchies
09182 Protein families: genetic information processing
03110 Chaperones and folding catalysts [BR:
pru03110
]
PRU_0040 (clpA)
Chaperones and folding catalysts [BR:
pru03110
]
Heat shock proteins
HSP100
PRU_0040 (clpA)
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
AAA_2
AAA
AAA_lid_9
ClpB_D2-small
AAA_5
AAA_22
RuvB_N
Sigma54_activat
AAA_16
AAA_7
bpMoxR
Clp_N
AAA_18
RNA_helicase
AAA_33
TIP49
ResIII
Rad17
AAA_3
Mg_chelatase
TsaE
Torsin
IstB_IS21
AAA_6
Zeta_toxin
AAA_17
Lon_lid
AAA_PrkA
IPT
Motif
Other DBs
NCBI-ProteinID:
ADE82465
UniProt:
D5EVB0
LinkDB
All DBs
Position
complement(49274..51487)
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AA seq
737 aa
AA seq
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MAEIKQTKRAARMLSDTMKCCKEYRHEFIMPEHLLLVMMDDNEFYNTLDSYYSANLFQER
IENKLDEVETVPEDIDYEPEASTQMGQLIEFACAQIINSSATALDVPHLVMGLLNLPESW
ACYLLKDALGDNESNFMSDLISAYELADQLGTGDQQKGQEAWRRLVTCMNTLYQQHNPLI
GCEQELQRTIQVLCRRDKNNPLHVGEPGVGKTALVWGLARMIEEDQNLPERLKGSKIYQL
DLGTLLAGTQYRGDFENRIKQIMEGIQEESDKNIVYIDEIHTLVGAGATGEGAMDASNML
KPYLEAGGIRFIGSTTYEEYNRHFARSKGLVRRFQQIDIPEPTPEETKHIVRQLRSQYES
FHHVTYDEAALDFAVDASYKYVNDRFLPDKAIDLIDEAGAAAELKDGAQPANVNKVDIAD
VLAKTCKVDTMAMNSDDDNAQLETLAPRLLQKIYGQDEAIRQVVEAVQMSKAGLLDDNKP
LASLLFVGPTGVGKTEVARVLAKELGIALLRFDMSEYTEKHTVAKLIGSPAGYIGYEDGG
LLTDAIRKTPNCVLLLDEIEKAHQDIYNILLQVMDYARLTDNKGRKADFRNVILIMTSNA
GAQYAAQANIGFTGNTSRGEAMLKQVKKTFKPEFINRLSGTVVFNDMDHEMATLILKKKL
SELQDKLTAKQVEMTLSDEAFKLLLDEGYTHEYGAREMDRVIAQRLKPLLMREILFGSLK
QGGHIIISTRDGSLSIG
NT seq
2214 nt
NT seq
+upstream
nt +downstream
nt
atggcagagataaagcaaaccaaacgcgccgccaggatgctcagcgatactatgaagtgc
tgcaaagagtaccgacatgagtttatcatgcccgagcacctgctgttggtaatgatggac
gacaatgagttttacaacacactcgacagctactattcagccaacctgtttcaggagcga
atagaaaacaagttagacgaagtagagaccgtacccgaagacatagattacgaacccgaa
gcatcgacacaaatgggacaactgatagagtttgcctgcgcgcaaatcatcaatagcagt
gcaacagcactcgatgttcctcacttggtgatggggttacttaatctaccagaatcttgg
gcctgttacctactgaaagatgcgttaggcgataatgaaagcaactttatgagcgacctg
attagcgcctacgagttagccgaccaactgggcacaggcgaccagcaaaagggccaggaa
gcctggcgccgactggttacctgtatgaacacactgtaccaacagcacaacccactgatt
ggttgcgagcaggagttgcagcgtactatacaagtactttgtcgacgtgacaaaaacaac
ccgctgcacgtgggcgaacccggtgtaggcaaaacagccctagtttggggacttgcacgc
atgattgaggaggaccagaacctacctgaacgcctgaaaggcagcaagatataccagctt
gacctgggcacactgttggcaggcactcagtatcgcggcgactttgagaaccgcattaag
caaataatggagggcatacaagaggaaagcgacaaaaacatcgtttacatcgacgagata
catacgctggtaggcgcaggtgccaccggcgagggcgccatggatgcttcgaacatgctg
aaaccttacttagaagctggcggcatccgttttatcggatcgacaacctacgaagagtac
aaccgtcactttgcccgttcaaaaggtctggtgcgccgtttccagcaaatcgacattccc
gagccaacacccgaagaaaccaagcacatcgtgcgccagttacgctcgcaatacgagagt
ttccatcacgtcacatacgacgaggcggcactcgactttgccgttgatgccagctataaa
tacgtaaacgaccgttttctacccgataaagccatcgacttgatagacgaagcaggagct
gcagcagagcttaaagatggcgcacaacctgcaaacgtcaacaaagtcgatattgccgat
gtactggcaaaaacctgcaaggtagacactatggctatgaacagcgatgacgataacgct
caactggaaacactggccccacgtctgctccagaagatatacggacaggacgaggctatc
cgtcaggtagtagaagctgtacagatgtcgaaagccggactgcttgatgacaataagccg
ctggcatcactattgtttgttggtcccacaggtgtgggcaaaacagaggtggcacgcgtg
ctggccaaagagcttggcatagcgttgctacgtttcgatatgagtgaatataccgagaag
cacaccgttgccaagctgataggctcgcctgcaggctatataggctacgaggatggcgga
ctacttaccgatgccatccgcaaaacacctaactgcgtgttactactcgacgagatagaa
aaagcgcatcaggacatctataatatcctgctgcaggtaatggactatgcacgcttgacc
gacaacaaagggcgcaaggccgacttccgcaacgtgatactgattatgacctcgaacgca
ggtgcccaatatgctgcacaagccaacataggctttacaggtaacacatcgcgcggcgag
gccatgttgaaacaggtaaagaaaacattcaagcccgaattcatcaaccgcctgtcgggc
acggtagtgttcaacgatatggatcacgagatggccacactcatcctaaagaagaagtta
agcgagttgcaggacaaactgaccgcgaaacaagtagagatgacactgagcgacgaggcc
tttaagctgctgcttgacgagggctacacccacgaatacggtgcccgcgagatggaccgc
gtgatagcccagcgactgaaaccgctactcatgcgcgagatactgttcggcagtctgaaa
caaggtggacatattataataagtacacgcgatggcagtttatcaattggataa
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