Bradyrhizobium brasilense CB627: QA636_33500
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Entry
QA636_33500 CDS
T09107
Name
(GenBank) AAA family ATPase
KO
K03657
ATP-dependent DNA helicase UvrD/PcrA [EC:
5.6.2.4
]
Organism
bbra
Bradyrhizobium brasilense CB627
Pathway
bbra03420
Nucleotide excision repair
bbra03430
Mismatch repair
Brite
KEGG Orthology (KO) [BR:
bbra00001
]
09120 Genetic Information Processing
09124 Replication and repair
03420 Nucleotide excision repair
QA636_33500
03430 Mismatch repair
QA636_33500
09180 Brite Hierarchies
09182 Protein families: genetic information processing
03400 DNA repair and recombination proteins [BR:
bbra03400
]
QA636_33500
Enzymes [BR:
bbra01000
]
5. Isomerases
5.6 Isomerases altering macromolecular conformation
5.6.2 Enzymes altering nucleic acid conformation
5.6.2.4 DNA 3'-5' helicase
QA636_33500
DNA repair and recombination proteins [BR:
bbra03400
]
Prokaryotic type
SSBR (single strand breaks repair)
NER (nucleotide excision repair)
GGR (global genome repair) factors
QA636_33500
MMR (mismatch excision repair)
Other MMR factors
QA636_33500
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
UvrD-helicase
AAA_19
AAA_11
UvrD_C
AAA_30
AAA_16
Motif
Other DBs
NCBI-ProteinID:
WFU62374
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Position
complement(7141920..7143830)
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AA seq
636 aa
AA seq
DB search
MSVVDDKFDSEADEAILACLNIEKPRSFFLYAGAGSGKTRSLVEAIRTVCKEQGRRLSLS
GQKIGVITYTNAACDEIKQRLEFDPRVEVSTIHAFAWSLIAGYDGDIRGWLSTRLLEDIA
ELEEAQAKGRANSKAASDRARSIESKRRRRANLSGISRFVYSPTGDNRTRDSLSHAEVIA
MTADFLSAKPGLRRLLVTRFPILLIDESQDTSRRLMDALLDVEAGYREAFCLGLFGDTMQ
RIYADGKERLAEAIPEAWAKPRKRMNHRCPTRVVTLINKIRRDEDGEEQQPRSDADEGVV
RLFVISQSIADKSAAEGAVAARMAEITGDPSWAEGAEAIKTLALEHLMSARRFGFEQFFE
PLYAVERIRTSFLQGTGAGIGLFTREIVPLVVALRAGDRFAVAAVVRRTSPLLERKALEA
AGEKQAEILGKVKVACDGLLTLVNADEKPTARTVLRYVAETNLFTIPEVLVPFSAADAVV
SEGDVDASAGDTADREEEVDAKSELGGWRLALEAPFDQIEKYDRYVRGVSQFDTHQGVKG
LEFPRVMVVVSDEEARGFMFAYDKLFGAKAKSKTDLENEAAGKETAIDRTRRLFYVTCSR
AEQSLAVVYYAADPTLARDAMIRQDWFGADEIELIA
NT seq
1911 nt
NT seq
+upstream
nt +downstream
nt
atgagcgtggttgacgacaaatttgattccgaagcagatgaagcgatactcgcctgcctg
aacattgagaagcccaggagcttctttctctacgctggcgccggatcgggcaagacgcgg
tcgctcgtcgaagctatccgaacggtatgtaaggagcagggccggcggctgtcgctatcc
ggtcagaagatcggggtgatcacctacaccaatgccgcctgcgacgagatcaaacagcgg
ctcgagttcgatcctcgcgtggaggtgtcgaccattcacgcattcgcgtggtcgctgatt
gccggctatgacggagatatccgggggtggctgtcgaccaggctccttgaggatattgcc
gaactggaagaagcgcaggcgaaggggcgggcaaacagcaaagccgcgtcggatcgcgcc
cgctcgatagaaagcaagcggcgtcggcgcgcgaacctctccggaatttcgcgtttcgtt
tacagccccaccggcgataaccgtacgcgggactctcttagccacgcagaggtcatcgcc
atgaccgccgattttctcagcgcaaagcctggtttgcgccggctcttggtgacccgattc
ccaatcctgcttatagacgagagccaggatacaagccggaggctcatggacgcgctgctc
gatgtcgaggcgggatatcgcgaagcattttgcctgggacttttcggcgacacgatgcag
cgtatctacgcggacggtaaggagcgtttggccgaggcgattccagaggcctgggccaag
ccgagaaagcggatgaaccatcgttgccccacgcgggtcgtcacgctcatcaacaaaatc
aggcgagatgaggatggagaggaacagcagccgcgcagcgatgctgacgagggcgttgtt
cggctgttcgtcatctcgcagtcgatagccgacaagagcgcggcggagggcgccgtagct
gcaagaatggcggagatcacgggcgacccgagttgggcggagggagccgaagcgatcaaa
acgctagcgctggagcacctgatgtccgcgcgccgctttggcttcgaacagttcttcgag
ccgctctacgcggtcgagcgtatccgcacgagctttttgcaagggacaggcgcgggcatc
ggcctcttcacccgcgagatagtgccgctggtcgtagccttgcgcgcgggagatcgattt
gccgtcgccgcagtcgttcggcgcacgtcgccactcctcgaacgcaaagcgcttgaagct
gccggcgagaagcaggctgagattctcggtaaggttaaggtagcctgcgatggcctgttg
accctggtgaacgccgatgagaagccgacggcacgcacagtcctgcgctatgtcgccgaa
actaacctcttcacgatccccgaggtgttggtcccgttttccgctgccgatgccgttgtc
tcggaaggtgatgttgacgcgtcagccggtgacaccgccgaccgggaagaagaagtcgat
gccaaaagcgagttgggtggttggcggttggcgctggaggcgcccttcgaccagattgag
aagtatgaccgctatgttcgcggcgtatcgcagttcgacacgcaccagggggttaagggg
ctggagtttccaagggtaatggttgtcgtcagcgacgaagaagcgcgcggctttatgttc
gcctatgacaagcttttcggggcgaaggcgaagagtaagacagatcttgagaatgaagcg
gccggaaaggagactgccatcgatcggacgaggcgcctgttttatgtgacctgtagccgc
gccgagcagagcctcgccgttgtttattacgctgcggatccgacgctcgcgcgcgacgcg
atgatcaggcaggactggttcggggccgatgagatagaactgatcgcctag
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