Erwinia persicina: CI789_12610
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Entry
CI789_12610 CDS
T05618
Name
(GenBank) DNA polymerase III subunit delta
KO
K02340
DNA polymerase III subunit delta [EC:
2.7.7.7
]
Organism
epe
Erwinia persicina
Pathway
epe03030
DNA replication
epe03430
Mismatch repair
epe03440
Homologous recombination
Brite
KEGG Orthology (KO) [BR:
epe00001
]
09120 Genetic Information Processing
09124 Replication and repair
03030 DNA replication
CI789_12610
03430 Mismatch repair
CI789_12610
03440 Homologous recombination
CI789_12610
09180 Brite Hierarchies
09182 Protein families: genetic information processing
03032 DNA replication proteins [BR:
epe03032
]
CI789_12610
03400 DNA repair and recombination proteins [BR:
epe03400
]
CI789_12610
Enzymes [BR:
epe01000
]
2. Transferases
2.7 Transferring phosphorus-containing groups
2.7.7 Nucleotidyltransferases
2.7.7.7 DNA-directed DNA polymerase
CI789_12610
DNA replication proteins [BR:
epe03032
]
Prokaryotic type
DNA Replication Elongation Factors
Elongation factors (bacterial)
DNA polymerase III holoenzyme
CI789_12610
DNA repair and recombination proteins [BR:
epe03400
]
Prokaryotic type
SSBR (single strand breaks repair)
MMR (mismatch excision repair)
DNA polymerase III holoenzyme
CI789_12610
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
DNA_pol3_delt_C
DNA_pol3_delta
DNA_pol3_delta_C
Motif
Other DBs
NCBI-ProteinID:
AXU95986
UniProt:
A0A3Q8H5N4
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All DBs
Position
2690033..2691064
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AA seq
343 aa
AA seq
DB search
MIRIYPEQLSAQLREGLRACYLLSGNEPLLLQEAQDAIRAAAQQQGFTEHFSVTLEAGTD
WQDIFAICQALSLFASRQTLQLTLPDNGPSAVMSEQLLTLSTLLHSDILLILRVVKLTKA
QENSAWYKALSAQGATVPCQTPEQAQLPRWVSARAKKYQLTLDDAANQLLCYCYEGNLLA
LSQALERLSLLWPDGKLTLPRVEQAVNDAAHFTPYHWVDALLAGKSKRALHILRQMHSED
SEPVILMRTLQRDLLLLVTLQRQMAQTPLRTLFDQHRVWQNRRTLFSDALQRLSAAQITQ
AVRLLMQIELTLKQDYGQSVWSELETLALVLCHPSFPASFCDV
NT seq
1032 nt
NT seq
+upstream
nt +downstream
nt
atgatcaggatttaccctgagcaactcagcgcgcaactccgtgaggggctgcgcgcctgt
tatttgttgagcggtaatgaaccgctgttgctgcaggaagcacaggatgccatccgtgcc
gccgcacagcagcagggttttaccgagcactttagcgtgacactggaagcgggcactgac
tggcaggatatctttgccatctgtcaggccctgagcctgtttgccagccgacagacgcta
cagctgaccctgccggacaacgggcccagtgccgtaatgagcgaacagctactgacgctc
tcgacgctgctccacagcgatattttgctgatccttcgtgtcgtgaaactgaccaaagcg
caggaaaacagtgcctggtacaaagcgttaagcgcccagggtgcgacagtgccctgtcag
accccggagcaggcgcagttgccccgctgggtttctgcacgggcgaaaaaataccagtta
acgctggatgatgccgcgaaccagctgctttgctactgctatgaaggtaacctgctggct
ctgtcccaggcgctggaaaggctgtcgctgctgtggcctgatggtaaactgacactgcca
cgtgttgaacaggcagtgaacgatgcagcacactttacgccttaccactgggttgatgcc
ctgctggccgggaagagtaaacgtgcgctgcatattctgcgccagatgcattcagaagat
agcgaaccggtgatcctgatgcgtacactgcagcgtgaccttctgctgctggtgacgcta
cagcgtcaaatggcacaaacgcccctgcgtacgctgtttgatcagcaccgtgtatggcaa
aaccgccgcacgttgttcagtgacgccttacagcgtctgagcgcagcacagatcacgcag
gcggtgcggctactgatgcagattgagctgacgctgaagcaggattacggacagtccgtc
tggtctgaactggaaacccttgcgctggttttgtgtcatccgtcatttccggcgagcttt
tgtgatgtctga
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