KEGG   Hoyosella subflava: AS9A_3585
Entry
AS9A_3585         CDS       T01514                                 
Symbol
uvrD1
Name
(GenBank) ATP-dependent DNA helicase UvrD1
  KO
K03657  ATP-dependent DNA helicase UvrD/PcrA [EC:5.6.2.4]
Organism
asd  Hoyosella subflava
Pathway
asd03420  Nucleotide excision repair
asd03430  Mismatch repair
Brite
KEGG Orthology (KO) [BR:asd00001]
 09120 Genetic Information Processing
  09124 Replication and repair
   03420 Nucleotide excision repair
    AS9A_3585 (uvrD1)
   03430 Mismatch repair
    AS9A_3585 (uvrD1)
 09180 Brite Hierarchies
  09182 Protein families: genetic information processing
   03400 DNA repair and recombination proteins [BR:asd03400]
    AS9A_3585 (uvrD1)
Enzymes [BR:asd01000]
 5. Isomerases
  5.6  Isomerases altering macromolecular conformation
   5.6.2  Enzymes altering nucleic acid conformation
    5.6.2.4  DNA 3'-5' helicase
     AS9A_3585 (uvrD1)
DNA repair and recombination proteins [BR:asd03400]
 Prokaryotic type
  SSBR (single strand breaks repair)
   NER (nucleotide excision repair)
    GGR (global genome repair) factors
     AS9A_3585 (uvrD1)
   MMR (mismatch excision repair)
    Other MMR factors
     AS9A_3585 (uvrD1)
SSDB
Motif
Pfam: UvrD-helicase UvrD_C AAA_19 UvrD_C_2 PcrA_UvrD_tudor AAA_11 AAA_30 OstA_2 DEAD ResIII Terminase_6N AAA_16
Other DBs
NCBI-ProteinID: AEF42023
UniProt: F6ES19
LinkDB
Position
complement(3652364..3654817)
AA seq 817 aa
MLVGHSPWSWKRDVLITAGSIDHDRRSAVEGAAALLDGLNRHQREAVLHEGSPLLIVAGA
GSGKTAVLTRRIAYLLAERQARPSEILAITFTNKAAAEMRERVSQLVGPRAASMWVATFH
STCVRILRAQAGLVEGLNSNFSIYDADDSRRLLAMIAKDLEIDVRRYTPRMLATQISNLK
NELIGPAQAARDADTDPAEVSRTVARVYGVYQRRLREANALDFDDLISETVRILQDFHEV
AAYYHRRFRHVLVDEYQDTNHAQYVLVRELTGAGVNETEGVPTAELCVVGDADQSIYAFR
GATIRNIVEFERDFPDARTILLEQNYRSTQTILSAANAVISKNSGRRPKRLWTDSGDGES
ITGYVADNEHDEATFVASEIDRLTGSGSIGSGVAGDIKYSDIAVFYRTNNSSRAFEEVFI
RHGLPYKVVGSVRFYERKEVRDIVAYLRVLANPDDTVSLRRILNTPRRGIGDRAEACVAV
HAEQREISFAEALRDAAEGTVPLLGTRAQRCIASFVELLDTLRQPLTAREPADLDVGKLI
DGILSMTGYRKELEASNDPQDGSRLDNLNELVSVGHEFSAEAAQLIADGHEPAEGDPVPG
SLEAFLERVALVADSDQVPDSDAGVVTLMTLHTAKGLEFPVVFLTGWEDGQFPHMRALGD
PDELSEERRLAYVGITRARRRLYLSRAVTRAAWGQPVSNPESRFLQEIPAELLEWKRTDP
GPSRSFGTGRAIGSRWNAPSGGYDSPFGNGNRGSSTGRGRGAPLVLKAGDRVSHDKYGLG
TVVATEGSGNLARATIDFGATGKVSLLLIGGVPMVKL
NT seq 2454 nt   +upstreamnt  +downstreamnt
atgcttgtggggcacagtccatggtcgtggaagagggacgttctgattactgcaggttct
attgatcatgaccggaggtctgcggttgagggcgcggcagccctgctggacgggctcaat
cggcaccagcgtgaggccgtcttacatgaaggctccccgctcctgatcgtcgccggggcg
ggctccgggaagacagcggtcctgacgcggcgtattgcgtacttgctggccgagcgccaa
gcgcgtccgtccgagattctcgcaatcacgttcactaacaaggccgcggctgagatgcgc
gagcgcgtgtcacaactcgtcggtccccgcgcggcttcgatgtgggtggcgacgttccac
tccacatgtgtccgtatcttgcgcgcgcaagctggcctggttgaggggctcaactcgaac
ttctcgatctacgacgcggacgactcgcggcgactgctcgcgatgatcgccaaggatctg
gagattgacgtccggcggtacacgccccggatgctggctacgcagatttccaatctcaaa
aacgagctgattggcccggcgcaggcagcacgggacgccgataccgacccggccgaggtc
agtcgcactgttgctcgggtatacggcgtctaccagcggcgtctgcgcgaagcgaacgcg
ctcgacttcgacgacttgatcagtgagaccgtgcggatcttgcaggacttccatgaggtc
gccgcctactatcatcggcgtttccgccatgttcttgtcgatgagtaccaggacacgaac
cacgcgcaatacgtgctggtgcgggaactcacgggagcgggtgtgaacgaaaccgaaggc
gttccaaccgcagaactgtgcgttgtgggtgatgccgaccagtcgatctacgcgtttcgc
ggagccacgatccgcaacatcgtcgagttcgagcgggattttccggatgcccgaaccatc
ctgctggaacagaactacaggtcgacgcagacgatcctttcggccgcgaatgcggtgatc
tccaagaactccggccgcaggcccaagcgactgtggacggatagcggagatggcgagtcg
ataacggggtacgtcgctgacaacgagcacgacgaagcaacgttcgtcgcgtccgagatc
gaccggctcacgggttcgggcagcatcggcagcggtgtggccggagacatcaaatacagc
gatatcgcggtcttctaccgtacgaacaacagctcacgcgcatttgaagaagtgttcatc
cgccacgggctcccgtacaaggtggtggggagcgtgcgcttctatgagcgcaaggaagta
cgcgatatcgtcgcgtaccttcgtgtactcgccaaccctgacgacaccgtcagcctgcgc
cggattctgaacacacctcggcgggggatcggtgaccgcgccgaggcctgcgtagcggtg
cacgcggaacagcgcgagatcagtttcgcggaagctctccgagatgccgcagaaggaaca
gtgcccctacttggcaccagggcgcagcgttgtatcgcctccttcgtcgaattgcttgac
acgctgcggcagccgctcactgcacgtgagcctgctgatctcgatgttggcaagctcatc
gacgggatcctgtccatgacgggctaccgaaaggaactcgaggcgagtaacgatccccag
gacggctcccgcctcgacaacctgaacgaactcgtcagcgtcggccacgagttcagcgcc
gaggcggcacagttgatcgctgatggtcacgaaccggccgagggtgaccctgtgccaggc
tcactagaggcgttcctcgaacgtgtggcgctcgtcgcggattcggatcaggtcccggac
tctgatgctggtgtcgtcaccctcatgacgctgcacaccgcgaagggcctcgaatttccg
gtcgttttccttaccggttgggaagacggtcagttccctcatatgcgtgcgctgggggat
ccagatgagctttctgaagaacggcgtctcgcatatgttggcatcacgcgtgcgcggcgg
cgcctctatctctctcgggcagttacccgagcagcgtggggacagcccgtgtcgaacccg
gagtcgcgtttcctgcaggaaataccagcggagctcctggagtggaagcggacagacccc
gggccctcacgatcattcggcaccggccgtgcgatcggttcacgatggaatgcgcccagt
gggggatatgactcgccgttcgggaatggcaatcgtggttcgagtacgggacgtggccgc
ggcgcaccgcttgttctgaaagcgggagatcgcgtgagtcacgacaagtacggcctgggg
actgtagttgcgaccgaaggcagcggcaacctcgcgcgcgcgacgatcgactttggcgct
accggcaaggtttccttgctccttatcggcggcgtgcccatggtaaagctctaa

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