KEGG   Anatilimnocola aggregata: ETAA8_15240
Entry
ETAA8_15240       CDS       T07027                                 
Symbol
polA_1
Name
(GenBank) DNA polymerase I
  KO
K02335  DNA polymerase I [EC:2.7.7.7]
Organism
aagg  Anatilimnocola aggregata
Pathway
aagg03030  DNA replication
aagg03410  Base excision repair
aagg03420  Nucleotide excision repair
aagg03440  Homologous recombination
Brite
KEGG Orthology (KO) [BR:aagg00001]
 09120 Genetic Information Processing
  09124 Replication and repair
   03030 DNA replication
    ETAA8_15240 (polA_1)
   03410 Base excision repair
    ETAA8_15240 (polA_1)
   03420 Nucleotide excision repair
    ETAA8_15240 (polA_1)
   03440 Homologous recombination
    ETAA8_15240 (polA_1)
 09180 Brite Hierarchies
  09182 Protein families: genetic information processing
   03032 DNA replication proteins [BR:aagg03032]
    ETAA8_15240 (polA_1)
   03400 DNA repair and recombination proteins [BR:aagg03400]
    ETAA8_15240 (polA_1)
Enzymes [BR:aagg01000]
 2. Transferases
  2.7  Transferring phosphorus-containing groups
   2.7.7  Nucleotidyltransferases
    2.7.7.7  DNA-directed DNA polymerase
     ETAA8_15240 (polA_1)
DNA replication proteins [BR:aagg03032]
 Prokaryotic type
  DNA Replication Elongation Factors
   Elongation factors (bacterial)
    Other elongation factors
     ETAA8_15240 (polA_1)
DNA repair and recombination proteins [BR:aagg03400]
 Prokaryotic type
  SSBR (single strand breaks repair)
   BER (base exicision repair)
    DNA polymerase I
     ETAA8_15240 (polA_1)
   NER (nucleotide excision repair)
    GGR (global genome repair) factors
     ETAA8_15240 (polA_1)
SSDB
Motif
Pfam: DNA_pol_A 5_3_exonuc_N 5_3_exonuc DNA_pol_A_exo1 DNA_polI_exo1 HHH_5 HHH_2 HHH
Other DBs
NCBI-ProteinID: QDU26446
UniProt: A0A517Y895
LinkDB
Position
1883612..1886632
AA seq 1006 aa
MAKKATSQPLLAGFDDPAPAPAVAITPTPATILPTVPVDHAALDTHAVVVNEAALAKAPA
NEPLSLKGKRVYLVDAYSLIYQVFHALPEMTGPSGQPVGAAHGFVRDMLDLIENRGADLL
IAAFDHPSATFRTELYTEYKANRQEMPVDLQPQIPLIKQFMDALGIPALALAGYEADDLL
ATLALQAHEAGAECLIVTSDKDCRQLITDNVRLYNIRKNEAMDAAGLLEVWGIRPNQVVD
FQSLVGDSVDNVPGIPGIGPKTATTLLQKYETLEGVYEHLDELKGKQRENIEKGRESAFM
SRDLVRLKADLELDFNWSIGLIGGMQPAVLAELNRHAGFKQLAKRMESLAAKFAGDALPT
APGPTHDFSSAEFVAKREIVASSPAAEVVSRPMVATADPWIVDYRTVATVEQLDELIEQM
KQQKEIVIDTETTSLRARQAEIVGYSFCWTPGVAYYLPVRAPAGETVIDPQLALEKLRPV
LEDPQIAKVGQNIKYDQLILRSAGVTLRGVAFDTMVADYLIDPGERSHNLDDLAVRHLGH
QNITIDTLIGTGKNQKRMDEVPVAIITQYAAEDADVPLRLKAVLEPRLAEQDLLPLFHEL
EIPLIDVLAEMEFNGIRVDRERLKQLDEQFTLRIAALEKEIYEIAGAEFNIDSRLQLSKL
LFEDLKLPIVKRTKTGPSTDVDVLEELARLHPLPAKIIDYRQNSKLQSTYVLALQELIHP
GTGRVHTSFKQDVAATGRLSSQDPNLQNIPVRSEAGRAIRSAFLPGPDGWLLMTADYSQI
ELRVLAHFSGDVTLQQAFILDRDIHTQVASDVYGVPLEQVTREMRRNAKAINFGIIYGQS
PFGLSKALDISQGDAAEFIEAYFSRLPGVEKFMEQVLLDCRRVGWVSTILGRRRPVQGVR
DPRVQVNKRQRTLPERIAINTVIQGSAADIIKRAMINVHRRLAKEQLQSRLLLQIHDELV
FEFPPDEQERLAQLVGEEMSTAAQLSVPLKVDVKTGPNWAACEVLE
NT seq 3021 nt   +upstreamnt  +downstreamnt
atggcaaaaaaagcgacctcgcaaccactgctcgccggcttcgacgatcctgcgcctgcg
cccgcagtagccattacaccaacacccgcgacgatcctgcctacagtgccagtggatcac
gcggcactcgatacgcacgccgtggtggtcaacgaagcggcgctcgcgaaagctcctgcg
aacgaaccgctgagcctcaagggaaagcgagtttatctcgtcgatgcctattcgctcatc
tatcaagtgtttcatgcgctgcccgagatgaccggcccttccggccagcccgtcggggcg
gcgcatggcttcgtccgcgacatgctcgacctgatcgagaaccgcggagccgatttgttg
atcgctgccttcgaccatccgagtgctacgtttcgcacggaactttacaccgagtacaag
gccaatcggcaggagatgccggtcgacttgcagccgcagattccgctcattaagcagttc
atggatgcgctgggcattcccgcgctggcgctcgcaggttacgaagccgacgacctgctc
gcaaccctcgccctgcaggcgcacgaagccggcgcggagtgcctgattgtgacgagcgac
aaggattgccgtcagctgattaccgataacgtccggctctacaacattcgcaagaacgaa
gcgatggacgcggccggcctgctcgaggtgtggggcattcggccgaatcaggtcgtcgat
tttcaatcgctggtcggggactcggtcgacaacgtccccggcattccaggcattggtccc
aaaacggccacgaccttgttgcaaaagtacgaaacgctcgaaggggtctacgagcatctg
gatgaactgaaaggaaaacagcgggagaatatcgagaaagggcgcgagtcggccttcatg
agccgcgatctcgtgcggctcaaggccgatctcgaacttgactttaattggagcatcggc
ctgatcggcggcatgcaacccgcagtccttgccgaactcaatcgccacgccggcttcaag
caactggccaagcggatggaatcgctcgcggcaaaattcgccggcgatgctctgcccacc
gcgcccgggccgacgcatgacttcagctcggcagagtttgttgccaagcgagaaatcgtg
gccagttcccccgcggcggaagttgtctcgcgccccatggtcgccacggccgatccgtgg
atcgtcgactatcgcaccgtcgccacggtggaacaactcgacgaactgatcgagcagatg
aagcagcagaaggaaatcgtcatcgataccgagacgacttcgctccgtgcgcgacaggcc
gagattgttggctattccttctgctggactccaggcgtcgcttattacctgcccgttcgc
gcgccagctggtgagacagttatcgatccgcaactcgcactcgagaaactgcgccccgtg
ctcgaagacccgcagattgccaaggtgggccagaacatcaagtacgatcagttgattcta
cgctccgccggtgtgacactgcgcggcgtggccttcgatacgatggtcgccgactatctg
atcgatccgggcgagcggagtcataacctcgacgacctggctgtgcggcatctggggcac
caaaacatcaccatcgatacactgatcggcacgggtaaaaaccagaagcgcatggacgaa
gtgccggtggccatcatcacgcagtacgcggccgaagatgccgatgtgcccctgcggttg
aaggccgtgctcgaaccgcgactggccgagcaggatttgctgccgctgtttcacgaactg
gagatccctctcatcgacgtgctggccgagatggaattcaacggcattcgcgtcgatcgc
gagcggctgaaacaactcgatgaacagtttacgctaaggattgccgcgctcgaaaaagag
atctacgaaattgccggggccgagttcaacatcgattcgcggctgcaactatcgaagctg
ctgttcgaagatctgaagctgccgatcgtcaaacgaacgaagaccggcccgagtaccgac
gtcgacgtgctcgaagaactcgcgcggctccatccgctgccggcgaagatcatcgactat
cggcagaattcgaaattgcaaagcacgtatgtcctcgcgctgcaggaattgattcatcct
ggcacaggccgcgtgcatacgtcgttcaagcaagatgtcgcggccaccggtcgcctcagt
tcgcaagatccgaacttgcagaacatccctgtgcggagcgaagcagggcgcgccatccgc
tcggcattcttgcccgggccagatggttggcttctcatgaccgctgactattcgcaaatc
gaactgcgggtgctcgcgcacttttccggcgatgtcacgctgcaacaggcgttcattctt
gaccgcgatattcacacgcaagtggccagcgatgtgtatggcgtgccgctcgagcaggtg
acgcgcgaaatgcgccgcaatgccaaggcaatcaacttcggcatcatctatggccagagc
ccgtttgggctttcgaaggccctcgatatcagccagggcgatgcagcggaattcatcgaa
gcctatttttcgcgcctccccggcgtcgaaaaattcatggagcaagtgctgctcgactgc
cgccgcgtcggctgggtgagcacgattcttggtcgtcgtcgcccggtccagggggtacgc
gatccgcgcgtccaggtgaacaagcgccagcggacgctccccgagcgcatcgccatcaac
accgtcattcaaggctccgctgctgatattatcaagcgggcaatgatcaacgtccatcgt
cggctggcaaaagagcagctgcaatctcgcttgctcctgcaaattcatgacgaactggtg
ttcgagtttccgcccgatgagcaggagcgcctggcgcaattggtcggggaagaaatgtcc
accgccgcgcagctcagcgtgccactcaaggtcgacgtaaagacgggtcccaactgggcc
gcctgcgaggtgctggaataa

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