Chenopodium quinoa (quinoa): 110711789
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Entry
110711789 CDS
T05764
Name
(RefSeq) DNA polymerase I A, chloroplastic/mitochondrial-like
KO
K02335
DNA polymerase I [EC:
2.7.7.7
]
Organism
cqi
Chenopodium quinoa (quinoa)
Pathway
cqi03030
DNA replication
cqi03410
Base excision repair
cqi03420
Nucleotide excision repair
cqi03440
Homologous recombination
Brite
KEGG Orthology (KO) [BR:
cqi00001
]
09120 Genetic Information Processing
09124 Replication and repair
03030 DNA replication
110711789
03410 Base excision repair
110711789
03420 Nucleotide excision repair
110711789
03440 Homologous recombination
110711789
09180 Brite Hierarchies
09182 Protein families: genetic information processing
03032 DNA replication proteins [BR:
cqi03032
]
110711789
03400 DNA repair and recombination proteins [BR:
cqi03400
]
110711789
Enzymes [BR:
cqi01000
]
2. Transferases
2.7 Transferring phosphorus-containing groups
2.7.7 Nucleotidyltransferases
2.7.7.7 DNA-directed DNA polymerase
110711789
DNA replication proteins [BR:
cqi03032
]
Prokaryotic type
DNA Replication Elongation Factors
Elongation factors (bacterial)
Other elongation factors
110711789
DNA repair and recombination proteins [BR:
cqi03400
]
Prokaryotic type
SSBR (single strand breaks repair)
BER (base exicision repair)
DNA polymerase I
110711789
NER (nucleotide excision repair)
GGR (global genome repair) factors
110711789
BRITE hierarchy
SSDB
Ortholog
Paralog
GFIT
Motif
Pfam:
DNA_pol_A
DNA_pol_A_exo1
Motif
Other DBs
NCBI-GeneID:
110711789
NCBI-ProteinID:
XP_021745906
LinkDB
All DBs
Position
Unknown
AA seq
1079 aa
AA seq
DB search
MAVSSPFRAAYSPPLFWVCPHSLSSSSSMVASLRPRFFCSRAAYKWKEFHRLQNQYGISH
DDELFKVVQLRQPEPMFSTGQHANSTRYNGTFVRQWRSGESAQPRVSRHTDKTVWAQETF
KVKKSKMGFRHGVMELELLPSKEATENRGHNSTSDNLNGIPGFTGITSATSSPRFATTTV
DVEADLDQLQETFGETLHEFDDVARRALYANGLSSRKDVAGELLSNERNDVSLKPATESK
KSVRKSKKTLSTNGASSAKELDESSLNQGINGVHEKFSELDILDGAQTDDQLKLQMRLCS
IFDKVLVVDNVTIARKVVHKLTHEYRHHVHACDTEVSKIDVKQETPVDHGEIICFSIYSG
EKVDYGNGKTCIWVDVLDGGGNDILAEFAPFFEDSSIKKVWHNYSFDCHVVENYGIKPSG
FHADTMHMARLWDSSRRADGGYSLEALTGNPDVMSESTMCQEKDLMGKISMKSIFGKRKA
KKDGSLGKTVSLPSVEELQREERLPWICYSSLDSMSTLKLYESLKSKLSKMPWIMEGNYR
GNMLNFYENYWQPFGRLLVQMETEGMLVDRAYLSEVEKVAIAQQQVAADRFRNWTSKYCP
DARYMNVGSDAQLRLLLFGGICNRKNHNEFLPTEKKFKVPNTENVIEDGKKTPKKYCDIT
LHKIGSSLQTDFYTASGWPSVSGDALKAIAGKVSAEYDFSSDDVEDPLNDDLQNSERKDV
DISAYGTAYAAFGGGQEGMEACHAIASLCEVCSIDSLISNFILPLQGSHVSGKNGRIHCS
LNINTETGRLSARRPNLQNQPALEKDRYKIRQAFVASPGNSLIVADYGQLELRILAHLAD
CKSMKEAFEAGGDFHSRTAMNMYPYIRDAVQQEEVILEWHPQPGEEKPPVPLLKDAFGSE
RRKAKMLNFSIAYGKTPMGLAKDWKVSVKEAKETVDLWYKERQEVLKWQEARKKEAAKRG
CVHTLLGRARRFPSMAHASPPQRSHIERAAINTPVQGSAADVAMCAMLEIDTNNRLKELG
WKLLLQVHDEVILEGPSESAEEAKALVVECMSKPFNGRNILTVELAVDAKCAQNWYAAK
NT seq
3240 nt
NT seq
+upstream
nt +downstream
nt
atggcggtttcttccccctttagggctgcttattctcctcctcttttctgggtttgccct
cattctctctcttcttcctcttccatggtggcttctcttcgtcctcggtttttctgctct
agagctgcttataaatggaaggagtttcatcgtcttcagaatcaatatgggatttcacat
gatgatgaattgttcaaagttgtgcagctaagacagcctgaaccaatgttttctacaggg
caacatgctaactcaaccagatataatgggacgtttgtgaggcaatggagatctggagag
tctgcccaaccaagagtgtcgagacacactgacaaaactgtttgggctcaagagactttt
aaggtgaagaagagtaaaatgggctttaggcatggtgtgatggaactagaattattacca
tccaaggaagccacagaaaatcgcggtcataactcaacaagcgataacttgaatgggatt
cctgggtttaccggtattacttctgctacaagctccccacgttttgcaaccaccactgtt
gatgtagaagcagacttagatcaacttcaggagacatttggtgaaacactgcatgaattt
gatgatgttgctagaagagccctttatgctaatggcttatcatcacgaaaagatgtagct
ggtgaacttttatctaatgaaaggaatgatgtgagcttgaagcctgctacagagagcaaa
aaatctgtcaggaagtcgaaaaagactttgtctaccaatggcgcatcatcagcaaaagaa
ttggacgaaagctccttaaatcagggaataaatggtgtacatgagaagttttctgagctt
gatattcttgatggtgcacaaacggatgatcaactaaaacttcaaatgaggctctgcagc
atctttgacaaagttcttgtagttgataatgtcaccatcgctaggaaagttgtgcataag
cttacacatgagtatagacatcacgtacatgcatgtgataccgaggtgtccaagattgat
gtgaagcaggagacacctgtagatcacggggagataatatgcttcagtatttattctggc
gaaaaagtggattatggtaatgggaaaacttgtatatgggtagatgtgctagatggtggc
ggaaatgatattttggctgaatttgctccattctttgaagactcgtcaataaaaaaggtg
tggcacaattacagctttgattgccacgttgtagaaaactatgggattaaaccttctggg
ttccatgctgatacaatgcacatggcacgattatgggattcttctagacgagcagatggt
ggctactctcttgaagcattaacaggtaatccagatgtaatgtctgagagtactatgtgc
caagaaaaagatctgatgggaaaaatttcaatgaaatccatatttggcaagagaaaggca
aagaaagatgggtccctgggtaaaactgtctctcttccttcagttgaagagctgcaaagg
gaagaaaggctaccatggatatgctattcttctttagattccatgagtactttaaagcta
tatgagagcttgaaatccaagttatcaaaaatgccatggattatggagggtaattatagg
gggaatatgcttaatttctatgaaaactattggcagccctttggcagacttctcgtgcaa
atggaaacagaaggtatgctagtagaccgagcatatctctcagaggtggagaaggtggct
attgctcaacaacaagttgctgctgatcgttttcggaactggacttctaagtattgccct
gatgctagatatatgaatgtaggtagtgatgcacaattgagactactcctttttggtgga
atatgcaacaggaagaaccataatgagtttctccctacagagaaaaagttcaaagtccca
aatactgaaaatgtaattgaagatggaaagaagactcctaaaaagtattgtgacattaca
ttgcataaaattggttctagtttacaaactgacttttatacggcaagtggttggccttct
gttagtggagatgccttaaaagctattgctgggaaggtctctgctgaatatgatttttca
agtgacgatgttgaagatccattgaatgacgatctacaaaactcggaaagaaaagatgtt
gacatttctgcttatggaactgcttatgctgcttttggaggagggcaggaaggaatggag
gcctgccatgctattgcctctttgtgtgaagtttgctccattgattcgttaatatccaat
ttcattctgcctttgcagggaagtcatgtgtctgggaagaatggccgaattcattgctcc
ttaaatataaatacagaaaccggccgcttgtctgctagaagaccgaatttacagaatcaa
cctgctttagagaaagacagatataagatccgccaagcatttgtcgcttcccctggaaac
tcacttattgttgcagattatgggcagctggaacttaggattcttgcacaccttgctgat
tgtaagagtatgaaagaagcatttgaagctggtggagatttccattcaagaactgctatg
aatatgtatccatatatccgggatgccgttcaacaggaagaagtaattcttgaatggcat
cctcaacctggtgaagaaaagcctcctgttcctctactcaaggatgcttttgggtctgaa
agaaggaaagcaaaaatgctgaacttttccattgcatatgggaaaactcccatgggtctt
gctaaagactggaaggtttctgttaaagaagcaaaggaaactgttgatttgtggtataaa
gaacgtcaggaggttctaaaatggcaagaagcacggaagaaagaagctgcaaaacgtggt
tgtgttcacaccctgctagggagagctcgtcgcttcccttcaatggctcatgcttcaccc
ccacaaaggagtcacattgagcgtgctgcaatcaacacgccagtgcaggggagtgctgct
gatgttgccatgtgtgccatgctggaaatagatacaaataatcgtctgaaagagcttggt
tggaagctgcttttgcaggttcatgatgaagtgatattagagggaccttcagaatcagca
gaagaagcaaaggctctagtagttgaatgcatgtccaaaccttttaatgggagaaacatt
ctcacagttgagcttgctgttgacgccaagtgcgctcaaaattggtatgcagccaaataa
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