Entry
Name
(RefSeq) hypothetical protein
KO
Organism
Pathway
hro00983 Drug metabolism - other enzymes
Module
hro_M00053 Deoxyribonucleotide biosynthesis, ADP/GDP/CDP/UDP => dATP/dGTP/dCTP/dUTP
Brite
KEGG Orthology (KO) [BR:hro00001 ]
09100 Metabolism
09104 Nucleotide metabolism
00230 Purine metabolism
HELRODRAFT_93558
00240 Pyrimidine metabolism
HELRODRAFT_93558
09106 Metabolism of other amino acids
00480 Glutathione metabolism
HELRODRAFT_93558
09111 Xenobiotics biodegradation and metabolism
00983 Drug metabolism - other enzymes
HELRODRAFT_93558
09180 Brite Hierarchies
09182 Protein families: genetic information processing
03400 DNA repair and recombination proteins [BR:hro03400 ]
HELRODRAFT_93558
Enzymes [BR:hro01000 ]
1. Oxidoreductases
1.17 Acting on CH or CH2 groups
1.17.4 With a disulfide as acceptor
1.17.4.1 ribonucleoside-diphosphate reductase
HELRODRAFT_93558
DNA repair and recombination proteins [BR:hro03400 ]
Eukaryotic type
Other factors with a suspected DNA repair function
Modulation of nucleotide pools
HELRODRAFT_93558
BRITE hierarchy
SSDB
Ortholog Paralog GFIT
Motif
Motif
Other DBs
LinkDB
All DBs
Position
Unknown
AA seq
756 aa AA seq DB search
MKVINGLYPGVTTVELDNLAAEICATLTAKHPDYAILAARIAMSNLHKETKKIFSGVVSD
LYNYYNPLTEQNTPLVSKEFYNIVMANADRLNSAIINDRDYGYTYFGFKTLEKSYLLKMD
NKVAERPQHMLMRVSVGIHGQDIESAIETYNLLSEKWFTHASPTLFNAGTNKPQLSSCFL
VAMKEDSIEGIYDTLKQCALISKSAGGVGLAIHCIRATGTFIAGTNGTSNGLLPMLRVYN
NTAKYVGQGGNKRPGAFAVYLEPWHADIFDFLDCKKNTGKEECRARDLFFALWVPDLFME
RVEQDGDWTLMCPHECPGLYQTWGDDFRALYEEYEKKGKGRRVVKAQELWYQIITSQTET
GTPYMLYKDSCNRKSNQQNLGTITCSNLCTEIIQYCDPNEVAVCNLASIALNQFVKSDRT
FDFEKLEFVVGVAVKNLNKIIEVNYYPVPEAKVSNMRHRPIGLGVQGLADAFLLMRLPFE
SEEAQQLNKDIFETIYYAALKASCSLAEKFGPYETYQDSPVSKGILQFDMWNVDPSDRHD
WTSLRENIKKYGVRNSLLVAPMPTASTAQILGNCESFEPYTSNIYTRRVLSGEFQVVNRH
LLKDLVELNLWNDDMKNLLIANNGSVQNIDCIPYHIKRLYKTVWEISQKTIIKMAADRAP
FIDQSQSLNIHISEPTYGKLSSVHFYCWRMGLKTGMYYLRTRPAANAIQFTVDKSKLKIQ
NNITIQNGPATQNVSEIMEVGVCSLKNKDECLVCSS
NT seq
2271 nt NT seq +upstream nt +downstream nt
atgaaagtcataaatgggttgtaccctggcgtgacaacagttgagttagataatctagca
gctgaaatttgtgcaactttaacagccaagcacccagactatgccatacttgctgcaagg
attgccatgtccaatctccataaggagaccaagaagatatttagcggtgtggtgtctgac
ctctacaactattacaacccactcaccgagcaaaacaccccattggtatcgaaagagttt
tacaatatcgtcatggcaaatgctgatcgactcaactctgccatcatcaatgacagagac
tatggatacacttactttgggttcaagacactagaaaaatcatacctgttgaagatggac
aacaaagtggcagaacgcccccaacacatgctcatgagggtttctgttggcatccacggc
caggacatcgagtctgccatcgagacgtacaatttgctgtctgagaaatggttcacacat
gcttctcccaccctcttcaatgctggcacgaacaaaccccagctatctagctgtttctta
gtagccatgaaggaagacagcatagaggggatctacgacaccctcaagcaatgcgccctc
atctcaaaatcggcggggggtgtcgggttggccatccattgcattcgagctactggtaca
tttattgccgggaccaatggtacatctaatggcctgcttccaatgcttcgtgtctacaac
aacactgctaagtatgtgggccaaggaggaaataagaggccaggtgcttttgcagtttac
ttagaaccatggcatgcagacattttcgattttcttgactgcaaaaaaaatacaggcaaa
gaagaatgcagggcgcgagacctcttctttgccctctgggttccagatctgttcatggag
agggtggaacaggatggtgactggaccttgatgtgtccccacgaatgtccggggttgtat
caaacctggggtgatgatttcagagccctctatgaagagtacgagaagaagggcaaaggt
cgcagagttgtcaaagctcaggagctctggtatcaaataatcacatcacagactgaaaca
ggcactccttacatgttgtacaaggacagttgtaacagaaagtcgaaccagcagaatctg
ggaaccattacatgtagcaacctctgcactgagattattcaatattgtgatcctaatgag
gtagctgtgtgtaacttggcttccattgcattgaaccaatttgtaaagtcagatcgtacg
tttgattttgagaagctggagtttgttgttggtgtggcagtcaagaatttgaacaaaatc
atcgaagtcaactattacccagtgcctgaggccaaagtgagtaacatgagacacagacca
ataggactgggggttcaaggcttggctgatgccttcctgctcatgaggttaccatttgaa
agtgaagaggcccaacaactgaacaaggacatctttgaaacaatttattatgcagccctc
aaagcaagctgctcattggctgagaagtttggtccctacgagacataccaggactcacca
gtcagcaaggggatcctgcagtttgacatgtggaatgttgatccatcagatcgacatgat
tggacctcgctcagagaaaacattaaaaagtacggcgtgagaaacagcctgctggtggcc
ccaatgcctacagcttcgacagcacagattctcggtaactgtgaaagttttgagccctac
accagcaatatttacaccaggagggtgctgtccggggagtttcaggtggtgaatcgccat
ctcttgaaagatcttgttgaactaaatttatggaacgatgacatgaagaatttgctgatt
gccaacaacggatctgtccagaatatcgactgcatcccctaccacatcaagcgcttgtac
aaaacagtctgggagatctcgcagaagacgataatcaagatggctgccgatcgagccccc
ttcattgatcagagccagtcactgaacattcacatttcggaacctacctatggaaagctt
tccagtgtgcatttctactgctggcggatgggtctgaagacgggcatgtactacctgaga
actcgaccagctgccaacgccatccagtttactgtcgacaaatctaaactgaaaattcaa
aataatatcacaattcaaaatggccccgctactcaaaatgtgtcagaaatcatggaggtg
ggggtctgttccctgaagaacaaagatgagtgcctggtgtgtagcagttag