KEGG   Colletotrichum fioriniae: CFIO01_08532Help
Entry
CFIO01_08532      CDS       T04796                                 

Definition
(GenBank) DNA ligase I
  KO
K10747  DNA ligase 1 [EC:6.5.1.1 6.5.1.6 6.5.1.7]
Organism
cfj  Colletotrichum fioriniae
Pathway
cfj03030  DNA replication
cfj03410  Base excision repair
cfj03420  Nucleotide excision repair
cfj03430  Mismatch repair
Brite
KEGG Orthology (KO) [BR:cfj00001]
 09120 Genetic Information Processing
  09124 Replication and repair
   03030 DNA replication
    CFIO01_08532
   03410 Base excision repair
    CFIO01_08532
   03420 Nucleotide excision repair
    CFIO01_08532
   03430 Mismatch repair
    CFIO01_08532
 09180 Brite Hierarchies
  09182 Protein families: genetic information processing
   03032 DNA replication proteins [BR:cfj03032]
    CFIO01_08532
   03400 DNA repair and recombination proteins [BR:cfj03400]
    CFIO01_08532
Enzymes [BR:cfj01000]
 6. Ligases
  6.5  Forming phosphoric-ester bonds
   6.5.1  Ligases that form phosphoric-ester bonds (only sub-subclass identified to date)
    6.5.1.1  DNA ligase (ATP)
     CFIO01_08532
    6.5.1.6  DNA ligase (ATP or NAD+)
     CFIO01_08532
    6.5.1.7  DNA ligase (ATP, ADP or GTP)
     CFIO01_08532
DNA replication proteins [BR:cfj03032]
 Eukaryotic Type
  DNA Replication Elongation Factors
   Other elongation factors
    CFIO01_08532
 Prokaryotic Type
   Elongation factors (archaeal)
    Other elongation factors
     CFIO01_08532
DNA repair and recombination proteins [BR:cfj03400]
 Eukaryotic Type
  SSBR (single strand breaks repair)
   BER (base exicision repair)
    Long Patch-BER factors
     CFIO01_08532
   NER (nucleotide excision repair)
    Other NER factors
     CFIO01_08532
   MMR (mismatch exicision repair)
    Other MMR factors
     CFIO01_08532
BRITE hierarchy
SSDB OrthologParalogGFIT
Motif
Pfam: DNA_ligase_A_M DNA_ligase_A_N DNA_ligase_A_C RNA_ligase SOG2
Motif
Other DBs
NCBI-ProteinID: EXF80355
UniProt: A0A010QUQ6
LinkDB All DBs
AA seq 878 aa AA seqDB search
MAPKQATLGKFFGAKGSKPEPQQSKLSFATKAAPKKEVKKEIKNEDDTDKEAVKTQKSPS
KPRKRTRSPSPAVQASSPKVKNETVEEDEDDEPATKRPRRGRKQVIEDEDEDEVMDEAPS
KSQPKSPKTSQAKKNGTEKSAKAANASKTAQPKKAAKSPTPVVEDDKEDATESASEDDVV
EDDEEEAKPTAAKKALEKVQMKLKTQTKDPYPDWKAGEPVPYAALCTTFSLIELTTKRLE
IMAHCSLFLRQVLRLTPDDLLPTVLLMINKLAPDYAGIELGIGESLIMKSIGESTGRSLA
VIKQDQKEIGDLGLVAVKSRSTQPTMFKPKALTIRGVHKGLMGIATVSGNGAQGRKVDAI
KKLLSAADSHSSGKVDITKDKGGPSEAKYLVRFLEGKLRLGLAERSVLVSLAQAVVFHEA
DAKGQVPKTTDVEQAEAVLKTVYSELPSYDVIIPAMVEHGIMNLREHCKLKPGVPLKPML
AKPTKAITEVLDRFEDQTFTCEYKYDGERAQIHYVAKSADEEISQSLPGATTAAANGVAA
IFSRNSEDLSKKYPDILAKLHTWVKEDTKSFVLDCETVAWDVDEKKVLPFQQLMTRKKKD
VKIEDVKVKVCVFAFDLLYLNGEAIVEKSLRERRELLLNAFTPVEGEFALATHMDGQELE
QIQVFLDESVKASCEGLMVKMLDGSESGYEPSKRSRNWLKIKKDYLSGIGDSLDLVVLGA
YYGKGKRTSVYGAFLLACYNPSFDSYETVCNIGTGFSEAVLEELHKQLSDIVIDRPKPFY
AHSSGGQHQPDVWFEPRYVWEVKTADLTLSPRYKAGCKEGVDPGGEKGISLRFPRFIKVR
DDKKADEATSSRQVAEMYRKQESVTKSKGPAVDDDFEY
NT seq 2637 nt NT seq  +upstreamnt  +downstreamnt
atggcgccaaaacaggcgacgctggggaaattcttcggagcgaaaggatccaagcctgag
ccacagcagagcaagctgagcttcgccaccaaggcagccccgaagaaggaggttaagaag
gagatcaaaaatgaggacgatacagacaaagaagccgtcaagacacagaaatctcccagt
aagccacggaaacgtaccagaagcccgagccccgccgtacaagcatcgagcccgaaggtc
aagaatgagactgtcgaagaggatgaggacgatgagcctgccacaaagaggccgcgcaga
ggccgcaaacaagtcattgaggacgaggacgaggacgaagtgatggacgaagcccctagc
aagtcccaaccaaaatcaccaaagacctcccaggccaaaaagaacggcacagagaagtct
gccaaggctgcaaacgcatccaagactgctcaaccgaagaaagcggccaagtctcccacg
cctgtcgttgaggacgataaggaggatgcaacggagtccgcatcagaagacgacgtagtt
gaagacgacgaagaggaggccaagcctacggcagcgaagaaggccttggaaaaggtgcaa
atgaaactgaagactcaaacaaaggacccgtatcccgactggaaggcgggcgaaccagtt
ccctatgctgcgctctgtacgaccttctccctaatcgagctcacgaccaagcggctcgag
attatggcacactgttctctgttcctccgacaggttctgcgtctgacccccgacgatctt
cttcctactgttctgctcatgatcaacaagctagctcctgactatgccggcattgagctg
ggcattggtgagtcactcatcatgaagtccattggtgaatctacgggacgaagtctcgcg
gtcatcaagcaggaccagaaggagattggagatcttggtcttgttgccgtcaagagtaga
tcgactcagccaaccatgttcaagcccaaagctttgacaatacgaggagtacacaagggt
ctcatgggcatcgccactgtttctggcaatggtgcccagggccgtaaggtggacgccatc
aagaagttgctctcagcagccgattctcattcctctggaaaggtagatatcacgaaggac
aaaggcggacccagcgaagccaagtatcttgtccgattcctcgagggtaaacttcgattg
ggactggcagagaggtctgttcttgtgtctttggcacaagctgtggtcttccacgaggcc
gacgccaaaggtcaggtaccaaagacgacagacgtggaacaggccgaggccgttctgaag
acagtctacagtgaacttccaagctacgatgtcatcatccccgccatggtagaacacggc
atcatgaacttgcgcgagcattgtaagctaaagcccggcgtacccctgaagccgatgttg
gcaaaaccaacgaaagctatcactgaagttctggaccgcttcgaggaccagaccttcacc
tgtgaatacaagtacgatggcgaacgagcgcagatccattacgttgcgaagtccgcagat
gaggagatcagtcaatctttgccaggagctacgacagctgcggcaaatggtgttgctgcc
atcttttcccgtaactcggaagatctctccaagaagtatcccgatatccttgccaaactg
catacttgggtcaaggaggatacgaagagcttcgtccttgactgtgagacagttgcgtgg
gatgttgacgagaagaaagtccttcctttccagcagctgatgacacggaagaagaaggac
gtcaaaatcgaagatgtcaaggtcaaggtctgcgtttttgcttttgacctcctctatctc
aatggcgaggccattgttgagaagtcgctcagggagcgtcgcgagctcctgctgaatgcc
tttaccccagtagaaggcgaatttgcccttgctacacatatggatggacaggagttggag
cagatccaagtgttcctcgacgagagtgtcaaggcgtcctgcgaaggtctgatggtgaag
atgttggacggctcggagagcgggtatgagcccagcaagaggagccgaaactggctcaag
atcaaaaaagattacttaagcggcatcggcgactcgcttgacctcgtagtactgggtgca
tattacggcaaaggcaagcgtacatcagtctacggcgccttcctcttggcctgctataat
ccgtcgtttgattcgtatgaaaccgtctgcaatatcggcacgggattctccgaagccgtc
ctcgaggaactgcacaagcagctctcggacattgtcattgaccggccaaagccgttttac
gcacactcctcgggcgggcaacatcagcccgacgtgtggttcgagcctcgttacgtctgg
gaggtcaagacggccgatttgacgctcagcccgcgctacaaggccgggtgcaaagaaggt
gtcgaccccggcggtgaaaagggaatcagtctgcgcttcccgcgcttcatcaaagtgcgc
gacgacaagaaggccgacgaggccacgtccagtcgccaggtggctgagatgtatcgcaag
caggagagcgtgaccaagagcaagggccctgctgtggatgatgattttgagtattaa

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