Entry information : AtCPF02 (AT4G10000/CPFC1)
Entry ID 13976
Creation 2016-10-24 (Christophe Dunand)
Last sequence changes 2016-10-24 (Christophe Dunand)
Sequence status complete
Reviewer Not yet reviewed
Last annotation changes 2016-10-24 (Christophe Dunand)
Peroxidase information: AtCPF02 (AT4G10000/CPFC1)
Name (synonym) AtCPF02 (AT4G10000/CPFC1)
Class CPF Grx    [Orthogroup: CPF002]
Taxonomy Eukaryota Viridiplantae Streptophyta Brassicaceae Arabidopsis
Organism Arabidopsis thaliana    [TaxId: 3702 ]
Cellular localisation N/D
Tissue type N/D
Inducer N/D
Repressor N/D
Best BLASTp hits
Perox score E-value AtCPF02
start..stop
S start..stop
ThasCPF02 526 0 5..330 9..349
ThasCPF02 72 0.00000000000002 127..214 266..353
MpCPF01 365 2e-126 43..327 76..361
MpCPF01 62 0.00000000005 124..208 279..362
MpCPF02 176 1e-52 118..331 142..353
MpCPF02 71 0.00000000000004 94..207 245..349
HaCPF01 175 2e-52 119..328 121..328
Literature and cross-references AtCPF02 (AT4G10000/CPFC1)
Omic ref. AtProteome:   At4g10000 ATTED-II:   At4g10000 e-FP Browser:   At4g10000 ePlant:   At4g10000 TAIR:   At4g10000
Protein sequence: AtCPF02 (AT4G10000/CPFC1)
Sequence Properties
first value : protein
second value (mature protein)
Length (aa):   %s   334
PWM (Da):   %s   37032.61  
PI (pH):   %s   8.94
Sequence
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Send to Peroxiscan
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MSISVVDSSL CHPTASFPSS MVHSNRFSKR ISGNGNWVRE RRRLYVKSSN SEGKKEEAAQ KSSSNNTSSF LSFLCPLLKV FSGGDPSQQR NHALEVATSS LASVARLPWG SRVSTGSIDN  QDVSSNPPLR LQLFEFEACP FCRRVREAMT ELDLSVEVYP CPKGSIRHRE LVRRSGGKEM FPFLVDPNTE TLMYESGDIV KYLFKQYGNG RGPSTGLLES TLFTGWMPTL LRAGRGMSLW 
DKASTDLPPK MLELFSYENN PYSRLVREAL CELELPYVLH NIGEGSTRMK SLLNASGSNK VPFLVDPNTG VQLGDYEKIL AYLFKTYSSA AFA* 

Retrieve as FASTA  
Remarks
DNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGTCAATTT CGGTGGTTGA TAGCAGTCTC TGCCATCCGA CTGCGTCGTT TCCGTCATCC ATGGTTCATT CTAATCGATT CTCGAAGAGA ATATCAGGGA ACGGGAATTG GGTTCGCGAA  AGGAGAAGAC TTTATGTGAA ATCGAGTAAC TCAGAAGGTA AAAAGGAGGA AGCAGCACAG AAATCGAGCA GTAATAATAC ATCTAGCTTC TTGTCTTTTC TCTGTCCATT GCTTAAAGTT  TTCTCTGTAA GTGCTTCTTT CTTTCGCAAT TTTGAGTTTT TGATTGGCTC TTGTTACTTG AAACTTTATG CTGTTGTGTT CTCATCAAGT GTGTATTGTT CATTTTTGTG TTCGATGTTG  TTTCTCTAAT ATTTCTCAGC TGTTGTTTCC AGGGAGGTGA TCCTTCTCAA CAGCGGAATC ATGCTCTCGA GGTTAGTCCT GTTTTTAATT CATGGAGTTG TTTTCTCATT TAGTCAAATA  ATTATGTTCA TGTTTTGCAA CACTTATGTT TTTGGGCGTA ATCTCTAAAA CAAGGCTCTG CAGCCAAATG TGTATCAACA AGTCAATTAG ATAACTCAGA GAAAAAAAAA ACATTGAATA  AGATTTGACA TGAGCCTAAT GGGGTTTGAC TGTTGTGGAA GTGTTTAGGT TTTAGTTTAC TGGTTCTATA AAGCTTGTTT GGATATTAGC ATTGTAAACC GTTTCATGGT CCCTTAGACT  TAGCAGAAGG GTTGTGAGGG AGGATGACGT TTTCTGAACT TTCTTAGAGC CGTTTATAGA ATATTGTTTT ACTGATTTGT TACAATTGGT TACGTGACTA AGAGCTCTTA ATTTCTTTTG  ATTTATCTTA TGGTTGGCAT GAATACAGGT TGCAACTTCT TCATTGGCAT CTGTTGCAAG ACTTCCATGG GGATCTCGAG TATCAACTGG GAGTATAGAT AACCAGGATG TCTCTTCTAA  TCCGCCTTTG CGATTGCAGC TTTTTGAATT TGGTATGTTT TGTTAGTGCC ATGTAAACAA AGAGCATTAG TGGAAAGCTA ATTTTACATT TGTGAGAGTT TTCTTGGTTT TTGGATAACA  GAGGCATGTC CCTTTTGTCG GAGAGTGCGG GAAGCCATGA CTGAGCTAGA CCTTTCAGTA GAAGTAAGAA CCGAATCATA TTTTCCAGAG AGATGGCTCA TTAAGCAATA TACAAAGTTT  ATCCTGACAT TTGTTGGTGA CTTGTTGTTC AGGTTTATCC TTGTCCTAAA GGATCTATAA GACACAGAGA ACTGGTTAGA AGATCTGGCG GAAAAGAGAT GTAATTTTAC GTTCTTGTTC  TGTCAATTGG TTTCGTTTTC ATCATTCCAT AGCAGTTTTT GTTTTCCTTC TGTCGTCAGT CTTTAAACTT CTGAGAATGA AAATCTGCAG GTTTCCATTT CTCGTCGACC CGAATACTGA  AACTTTAATG TATGAGAGTG GTGAGTCGTA AGTTCCATCA TCAATACCTG ATTGTCGTTT TTCTCTGGAT ATCTTTTCAT CGGTTCTTTT CTCTCTTTGA ATTTAGGTGA CATCGTAAAG  TACCTATTTA AACAATATGG AAATGGAAGA GGCCCTTCCA CAGGACTTCT GGAAAGGTGA GCATTCTCAG AATCTGGTAT ACTTGGTCAA ACTATCTGGG ATGTGTAGTC TCCAGCTCCT  AGCGTGAATA AGTTTTAATT GTATCACTGA CTTCATTAGA ATTGTCCAGC ACCTTGTTCA CTGGATGGAT GCCAACTCTT CTCCGAGCAG GTAGAGGCAT GTCATTGTGG GATAAGGCTT  CAACAGATCT GCCACCTAAA ATGCTCGAGC TCTTCTCTTA CGAAAACAAC CCGGTACTAT GCTTTTTTCC TTTCTTGTAT CCAAGACTCT TCTCGAGAAT TTAAATCTAT GCATTGTTAT  TATGGAGTAA ATAATTCACT ATTAGTGCTC ATATCATCTT TCCTATTCCG GAGAAAACTT TGGTGACACT TTGGTGACCA ACGGTTTTGA TTCCTCTTTT CCTTCCCAGT ATTCACGGTT  GGTGCGTGAA GCACTGTGTG AGCTGGAGCT TCCCTATGTA TTACACAACA TTGGAGAAGG GTCCACACGG ATGAAATCAC TTCTAAATGC TTCAGGATCC AATAAGGTCC ATTTTCTCGT  CCGCTCTTTG TCTATATCAG AATCTACAAT CTTACAAATC ACTTATCAAA AGGCTGCAAC TGCTGATGCT CAATATAATT TACAGGTTCC ATTCTTGGTT GATCCAAACA CCGGTGTCCA 
ATTAGGTGAT TACGAGAAGA TTCTGGCTTA CCTCTTCAAG ACATATTCTT CAGCAGCATT TGCATAG 

Retrieve as FASTA  
CDS
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGTCAATTT CGGTGGTTGA TAGCAGTCTC TGCCATCCGA CTGCGTCGTT TCCGTCATCC ATGGTTCATT CTAATCGATT CTCGAAGAGA ATATCAGGGA ACGGGAATTG GGTTCGCGAA  AGGAGAAGAC TTTATGTGAA ATCGAGTAAC TCAGAAGGTA AAAAGGAGGA AGCAGCACAG AAATCGAGCA GTAATAATAC ATCTAGCTTC TTGTCTTTTC TCTGTCCATT GCTTAAAGTT  TTCTCTGGAG GTGATCCTTC TCAACAGCGG AATCATGCTC TCGAGGTTGC AACTTCTTCA TTGGCATCTG TTGCAAGACT TCCATGGGGA TCTCGAGTAT CAACTGGGAG TATAGATAAC  CAGGATGTCT CTTCTAATCC GCCTTTGCGA TTGCAGCTTT TTGAATTTGA GGCATGTCCC TTTTGTCGGA GAGTGCGGGA AGCCATGACT GAGCTAGACC TTTCAGTAGA AGTTTATCCT  TGTCCTAAAG GATCTATAAG ACACAGAGAA CTGGTTAGAA GATCTGGCGG AAAAGAGATG TTTCCATTTC TCGTCGACCC GAATACTGAA ACTTTAATGT ATGAGAGTGG TGACATCGTA  AAGTACCTAT TTAAACAATA TGGAAATGGA AGAGGCCCTT CCACAGGACT TCTGGAAAGC ACCTTGTTCA CTGGATGGAT GCCAACTCTT CTCCGAGCAG GTAGAGGCAT GTCATTGTGG  GATAAGGCTT CAACAGATCT GCCACCTAAA ATGCTCGAGC TCTTCTCTTA CGAAAACAAC CCGTATTCAC GGTTGGTGCG TGAAGCACTG TGTGAGCTGG AGCTTCCCTA TGTATTACAC  AACATTGGAG AAGGGTCCAC ACGGATGAAA TCACTTCTAA ATGCTTCAGG ATCCAATAAG GTTCCATTCT TGGTTGATCC AAACACCGGT GTCCAATTAG GTGATTACGA GAAGATTCTG 
GCTTACCTCT TCAAGACATA TTCTTCAGCA GCATTTGCAT AG 

Retrieve as FASTA