Entry information : CrubPrx80Carubv10007381m.g
Entry ID 15078
Creation 2018-03-08 (Christophe Dunand)
Last sequence changes 2018-03-08 (Christophe Dunand)
Sequence status N/D
Reviewer Not yet reviewed
Peroxidase information: CrubPrx80Carubv10007381m.g
Name CrubPrx80Carubv10007381m.g
Class Class III peroxidase     [Orthogroup: Prx002]*
Taxonomy Eukaryota Viridiplantae Streptophyta Brassicaceae Capsella
Organism Capsella rubella    [TaxId: 81985 ]
Cellular localisation N/D
Tissue type N/D
Inducer N/D
Repressor N/D
Best BLASTp hits
Perox score E-value CrubPrx80
start..stop
S start..stop
CagraPrx18 671 0 1..329 1..329
AlyPrx63 613 0 1..328 1..328
BstrPrx39 608 0 1..329 1..328
AtPrx63 601 0 1..328 1..328
Literature and cross-references CrubPrx80Carubv10007381m.g
Protein sequence: CrubPrx80Carubv10007381m.g
Sequence Properties
first value : protein
second value (mature protein)
Length (aa):   %s   328 (301)
PWM (Da):   %s   36181.39 (33148.7)  
PI (pH):   %s   8.48 (8.20) Peptide Signal:   %s   cut: 28 range:28-328
Sequence
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Send to Peroxiscan
*.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
MVKHSQLKNL TIITILCLLS SPLLTSAAES HLTFDFYSKS CPKFLDIVRE TITNKQISTP TTAAAALRLF FHDCFPNGCD ASVLVSSTAF NTAERDSSIN LSLPGDGFDV VIRAKTALEL  ACPNTVSCSD IIAVAVRDLL VTVGGPYYEI PLGRRDSRTS KSSLVSDLLP LPSMQISKLI DQFSSKGFSV QEMVALSGAH TIGFSHCKEF TNRVNPNNST GYNPRFAVAL RKACANYKND 
PTLSVFNDVM TPNKFDNMYF QNIPKGLGLL ESDHGLFSDP RTRPFVELYA RDQDRFFKDF AGAMQKLSRF GVLTGRQGEI RRRCDAIN* 

Retrieve as FASTA  
Remarks
DNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGGTGAAAC ACTCTCAGCT TAAGAATCTC ACCATCATCA CCATCCTCTG CTTACTATCT TCCCCACTAC TAACCTCTGC CGCCGAATCT CACCTCACCT TCGATTTCTA CTCCAAATCT  TGCCCTAAGT TCCTCGACAT AGTCCGTGAA ACCATCACAA ACAAACAGAT CTCAACTCCA ACAACCGCCG CCGCAGCTCT CCGCCTCTTC TTCCACGACT GTTTCCCCAA CGGCTGCGAC  GCCTCCGTCC TCGTTTCCTC CACAGCTTTC AACACCGCCG AACGCGATTC ATCGATCAAT CTATCTCTCC CCGGCGACGG ATTCGACGTC GTGATCCGCG CTAAAACCGC TCTCGAACTC  GCCTGTCCCA ACACAGTATC CTGCTCCGAT ATCATCGCCG TCGCGGTCCG CGATCTCCTC GTCACCGTCG GTGGACCTTA CTACGAAATC CCCCTCGGCC GCCGCGATTC GCGAACGTCG  AAATCGTCTC TCGTCTCCGA TCTCCTCCCG CTTCCGTCGA TGCAGATCTC AAAGCTCATC GATCAGTTCA GCTCTAAAGG CTTCTCCGTT CAAGAGATGG TCGCTTTGAG CGGTGCTCAC  ACCATCGGAT TCTCACATTG TAAAGAGTTC ACAAACCGGG TTAACCCGAA CAACAGCACC GGGTATAACC CGAGATTCGC GGTTGCTTTA AGAAAAGCTT GTGCGAATTA CAAAAATGAC  CCTACGCTCT CCGTCTTCAA CGACGTTATG ACACCGAACA AATTCGACAA TATGTATTTC CAGAATATTC CGAAAGGTCT CGGGTTACTG GAGTCGGATC ACGGGTTATT CTCTGACCCG  AGAACCCGAC CTTTCGTTGA GCTATACGCG AGAGACCAAG ATCGATTCTT TAAAGACTTT GCTGGAGCTA TGCAGAAGCT GAGTCGTTTC GGCGTTTTGA CCGGACGGCA AGGAGAGATC 
CGGCGAAGAT GTGATGCGAT CAACTGA 

Retrieve as FASTA  
CDS
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGGTGAAAC ACTCTCAGCT TAAGAATCTC ACCATCATCA CCATCCTCTG CTTACTATCT TCCCCACTAC TAACCTCTGC CGCCGAATCT CACCTCACCT TCGATTTCTA CTCCAAATCT  TGCCCTAAGT TCCTCGACAT AGTCCGTGAA ACCATCACAA ACAAACAGAT CTCAACTCCA ACAACCGCCG CCGCAGCTCT CCGCCTCTTC TTCCACGACT GTTTCCCCAA CGGCTGCGAC  GCCTCCGTCC TCGTTTCCTC CACAGCTTTC AACACCGCCG AACGCGATTC ATCGATCAAT CTATCTCTCC CCGGCGACGG ATTCGACGTC GTGATCCGCG CTAAAACCGC TCTCGAACTC  GCCTGTCCCA ACACAGTATC CTGCTCCGAT ATCATCGCCG TCGCGGTCCG CGATCTCCTC GTCACCGTCG GTGGACCTTA CTACGAAATC CCCCTCGGCC GCCGCGATTC GCGAACGTCG  AAATCGTCTC TCGTCTCCGA TCTCCTCCCG CTTCCGTCGA TGCAGATCTC AAAGCTCATC GATCAGTTCA GCTCTAAAGG CTTCTCCGTT CAAGAGATGG TCGCTTTGAG CGGTGCTCAC  ACCATCGGAT TCTCACATTG TAAAGAGTTC ACAAACCGGG TTAACCCGAA CAACAGCACC GGGTATAACC CGAGATTCGC GGTTGCTTTA AGAAAAGCTT GTGCGAATTA CAAAAATGAC  CCTACGCTCT CCGTCTTCAA CGACGTTATG ACACCGAACA AATTCGACAA TATGTATTTC CAGAATATTC CGAAAGGTCT CGGGTTACTG GAGTCGGATC ACGGGTTATT CTCTGACCCG  AGAACCCGAC CTTTCGTTGA GCTATACGCG AGAGACCAAG ATCGATTCTT TAAAGACTTT GCTGGAGCTA TGCAGAAGCT GAGTCGTTTC GGCGTTTTGA CCGGACGGCA AGGAGAGATC 
CGGCGAAGAT GTGATGCGAT CAACTGA 

Retrieve as FASTA  
cDNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGGTGAAAC ACTCTCAGCT TAAGAATCTC ACCATCATCA CCATCCTCTG CTTACTATCT TCCCCACTAC TAACCTCTGC CGCCGAATCT CACCTCACCT TCGATTTCTA CTCCAAATCT  TGCCCTAAGT TCCTCGACAT AGTCCGTGAA ACCATCACAA ACAAACAGAT CTCAACTCCA ACAACCGCCG CCGCAGCTCT CCGCCTCTTC TTCCACGACT GTTTCCCCAA CGGCTGCGAC  GCCTCCGTCC TCGTTTCCTC CACAGCTTTC AACACCGCCG AACGCGATTC ATCGATCAAT CTATCTCTCC CCGGCGACGG ATTCGACGTC GTGATCCGCG CTAAAACCGC TCTCGAACTC  GCCTGTCCCA ACACAGTATC CTGCTCCGAT ATCATCGCCG TCGCGGTCCG CGATCTCCTC GTCACCGTCG GTGGACCTTA CTACGAAATC CCCCTCGGCC GCCGCGATTC GCGAACGTCG  AAATCGTCTC TCGTCTCCGA TCTCCTCCCG CTTCCGTCGA TGCAGATCTC AAAGCTCATC GATCAGTTCA GCTCTAAAGG CTTCTCCGTT CAAGAGATGG TCGCTTTGAG CGGTGCTCAC  ACCATCGGAT TCTCACATTG TAAAGAGTTC ACAAACCGGG TTAACCCGAA CAACAGCACC GGGTATAACC CGAGATTCGC GGTTGCTTTA AGAAAAGCTT GTGCGAATTA CAAAAATGAC  CCTACGCTCT CCGTCTTCAA CGACGTTATG ACACCGAACA AATTCGACAA TATGTATTTC CAGAATATTC CGAAAGGTCT CGGGTTACTG GAGTCGGATC ACGGGTTATT CTCTGACCCG  AGAACCCGAC CTTTCGTTGA GCTATACGCG AGAGACCAAG ATCGATTCTT TAAAGACTTT GCTGGAGCTA TGCAGAAGCT GAGTCGTTTC GGCGTTTTGA CCGGACGGCA AGGAGAGATC 
CGGCGAAGAT GTGATGCGAT CAACTGA 

Retrieve as FASTA