Gluconobacter frateurii: MKW11_04815
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Entry
MKW11_04815 CDS
T08020
Symbol
gyrA
Name
(GenBank) DNA gyrase subunit A
KO
K02469
DNA gyrase subunit A [EC:
5.6.2.2
]
Organism
gfa
Gluconobacter frateurii
Brite
KEGG Orthology (KO) [BR:
gfa00001
]
09180 Brite Hierarchies
09182 Protein families: genetic information processing
03032 DNA replication proteins [BR:
gfa03032
]
MKW11_04815 (gyrA)
03400 DNA repair and recombination proteins [BR:
gfa03400
]
MKW11_04815 (gyrA)
Enzymes [BR:
gfa01000
]
5. Isomerases
5.6 Isomerases altering macromolecular conformation
5.6.2 Enzymes altering nucleic acid conformation
5.6.2.2 DNA topoisomerase (ATP-hydrolysing)
MKW11_04815 (gyrA)
DNA replication proteins [BR:
gfa03032
]
Prokaryotic type
DNA Topoisomerases
MKW11_04815 (gyrA)
DNA repair and recombination proteins [BR:
gfa03400
]
Prokaryotic type
DSBR (double strand breaks repair)
NHEJ (non-homologous end-joining)
SHIIR (short-homology-independent illegitimate recombination)
Facilitator
MKW11_04815 (gyrA)
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
DNA_topoisoIV
DNA_gyraseA_C
Motif
Other DBs
NCBI-ProteinID:
UMM09389
LinkDB
All DBs
Position
complement(1019651..1022491)
Genome browser
AA seq
946 aa
AA seq
DB search
MTELNEPTDIVPSDRLPVTIEEEMRSSYLAYAMSVIVSRALPDVRDGLKPVHRRILYAMR
ESGFTSDKPYRKSARAVGDVMGKYHPHGDSSIYDAMVRMAQHWSMRVKLIDGQGNFGSVD
GDSPAAMRYTEARLAKSASFLLDDIERDTVDFQPNYDESEHEPKVLPATFPNLLVNGASG
IAVGMATNIPTHNPGEVIDATLAMIANPAIELDELMQIIPGPDFPTGGIIMGRSGIRKAF
ETGRGSVPVRARAEIEEIRKDRQAIIITEIPYQVNKATLQEKIADLVRAKEIEGISDIRD
ESDRSGMRVVIELKRDATPEVVLNQLYRFTQLQTSFSVNMLALDEGKPRTMGLKDVLEAF
IRFREDVILRRARFDLNKVRDRGHLLVGLVLAVANIDEVIALIRSAPDAATARELLMARE
WDASEVVPLLELIQDEGNIIFDGKVRLTEAQARGILELRLQRLTGLEREKIQGELSEVAA
KIGELLEIIGSHIRRMEVMRDELLAARAEIATPRMSEISDALGDQSDESLIEPGQMVVTI
TRDGFIKRTPLEMFRSQNRGGRGRTASGRRGDDVIIRSFNAHTHQWVLFFSSGGKAYRTK
VWHLPEASPTSKGRALVNLLPELGSDAITAVLPLPQDEELWEDLHLTFATASGNVRRNRL
NDFRNIRASGLIAMKLDEGDSLIGVATCREGQDVFLATKNARCIRFQITDDTLRVFAGRG
SSGVRGIRLGDGDAVISLCILNHVDASVEERAAYLRMANAKRRAENAALAEGAEEDVVSG
DEETVEIAGDLTQERFEELEQQEEILLTVTDGGFGRRSSAYDYRVSGRGGQGITNMTFSA
NRRGKEVVGTLPTLDGTDVMLVTDTGRLIRLPVSQVRVMARQASGVTLFRLNDSETVICV
FPVVEDDGEEGDLIEGDVVATPEGAAPAEDTSTDGEASEGDVAPDA
NT seq
2841 nt
NT seq
+upstream
nt +downstream
nt
ttgaccgagctgaacgagccgactgatattgtaccttccgatcgtcttccggtgacgatt
gaggaggagatgcgctcctcctatctggcctatgcgatgtcggtgatcgtctcgcgcgcc
ctgccggatgtgcgtgatggcctgaaacctgtccatcgccgcatcctgtatgcgatgcgc
gagagtggctttacgtctgacaagccataccgcaagtctgctcgtgcggtcggtgacgtg
atgggtaaataccatccgcacggtgacagctcgatttacgatgccatggtccgtatggcg
cagcattggtcgatgcgcgtcaagctgattgatgggcagggtaacttcggttcggtcgat
ggcgatagcccggccgccatgcgttacaccgaagcccgtctggccaagtctgcatcgttc
ctgctggatgatattgagcgggatacggtcgatttccagccgaactacgacgaaagcgaa
cacgagccgaaggttctgccggcgacgttcccgaatcttctggtgaatggcgcttcgggt
atcgcggtcggcatggccacgaatattccgacgcataatcctggcgaagtcattgatgcc
acgctggcgatgattgccaatccggcgattgagctggatgagctgatgcagattatcccc
ggtccggatttcccgaccggcggcatcattatgggccggagtggtatccgcaaggcattc
gagacgggtcgtggatcggtaccggttcgtgcccgtgcggagatcgaggagatccggaag
gatcgtcaggcgattatcatcacggaaatcccgtatcaggtgaacaaggcaacgcttcag
gagaagattgccgatctcgtccgcgccaaggaaatcgaaggtatttccgatatccgcgat
gagagtgatcgttcgggaatgcgcgttgtcatcgagctgaagcgcgatgcgacaccggaa
gtcgtgctgaaccagctctatcgcttcacgcagcttcagacgtccttcagtgtcaacatg
ctggcgctcgatgagggcaagccgcgcacgatgggcctgaaggacgttctggaagcgttt
atccgcttccgtgaagacgtcattctgcgtcgtgcccgtttcgatctgaacaaggttcgg
gatcgtgggcatctgctggttggtcttgttctggccgtcgccaatattgatgaagtcatc
gctctgatccgttccgcaccagatgcggcgacggcgcgtgagcttctcatggcgcgtgag
tgggatgccagcgaagttgtgcctctgctggagttgatccaggacgaaggcaatatcatc
tttgatggcaaggttcgccttacggaagctcaggcccgcggtattctggaactgcgtttg
cagcgcctgaccggtctggaacgtgagaagatccaaggcgagttgagcgaagttgctgcc
aaaattggtgaactgcttgaaatcatcggcagccatattcgccgcatggaagtcatgcgc
gatgagcttctcgctgctcgtgcggaaattgcgaccccacgcatgtcggaaatttccgat
gctctgggtgaccagtccgacgaaagcctgatcgagccgggtcagatggttgtgaccatc
acgcgtgacggcttcatcaagcggacgccgcttgagatgttccgctcacagaaccgcggt
ggccgtggtcgtacggcttccggccgtcgtggtgatgacgtcattatccgcagcttcaat
gctcatacccatcagtgggtcctattcttctcttcgggcggtaaggcgtatcgcaccaag
gtttggcacttgccggaagcatctccgacatccaagggccgtgcattggtgaacctgttg
ccggaactgggctcggacgccattacggcagttctgccactgccgcaggatgaggagctg
tgggaagatctgcacctcacttttgcaacggccagcggtaatgttcgtcgtaaccgtctg
aatgatttccggaatatccgggcgtcaggtctgattgcgatgaagctggatgagggcgat
tcccttatcggggtagcgacgtgtcgtgagggtcaggacgtgttcctggcaacaaaaaac
gcccgctgcatccgcttccagatcacggatgacacgctgcgtgtgtttgccggccgtggc
agttcgggtgtgcgcggtattcgtctgggggacggggatgcagtgatctcactgtgtatc
ctcaaccatgtggatgccagcgttgaagagcgggctgcgtatctgcggatggccaatgca
aagcgtcgtgccgagaatgcagcgctggccgagggtgccgaagaagacgtggtgtccggt
gacgaagaaactgtagagatcgctggcgatctgacgcaggagcgtttcgaggagctggaa
cagcaggaagaaattcttctgactgtgacggatggcgggtttggccgtcgttcttctgcc
tatgattatcgtgtgtcgggccgtggcggtcagggcatcacgaacatgactttctcggcc
aatcgtcgtggcaaggaagtggttgggacacttccgacgctggatggcacggatgtcatg
ctcgtgacggatacgggccgtctgatccgtctgccagtgtctcaggtgcgcgtcatggcg
cgtcaggccagtggcgtgacgctcttccgtctcaacgacagtgaaactgtcatctgcgtc
ttcccggttgtggaagatgacggggaagaaggcgatctgatcgaaggggatgtcgtggct
acaccagaaggtgcagcgcctgctgaagacacttcgacagacggtgaggcttctgagggt
gacgtagcccctgatgcctga
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