Entry information : NtPrx35-1A(Nitab4.5_0004708g0050)
Entry ID 8226
Creation 2011-04-08 (Christophe Dunand)
Last sequence changes 2011-04-08 (Christophe Dunand)
Sequence status complete
Reviewer Not yet reviewed
Last annotation changes 2022-08-18 (Christophe Dunand)
Peroxidase information: NtPrx35-1A(Nitab4.5_0004708g0050)
Name NtPrx35-1A(Nitab4.5_0004708g0050)
Class Class III peroxidase    [Orthogroup: Prx001]
Taxonomy Eukaryota Viridiplantae Streptophyta Solanaceae Nicotiana
Organism Nicotiana tabacum    [TaxId: 4097 ]
Cellular localisation N/D
Tissue type N/D
Inducer N/D
Repressor N/D
Best BLASTp hits
Perox score E-value NtPrx35-1A
start..stop
S start..stop
NtPrx35-2B 654 0 1..330 1..330
LePrx70 641 0 1..330 1..330
StPrx10 641 0 1..330 1..330
LePrx24 639 0 1..330 1..330
Literature and cross-references NtPrx35-1A(Nitab4.5_0004708g0050)
Protein sequence: NtPrx35-1A(Nitab4.5_0004708g0050)
Sequence Properties
first value : protein
second value (mature protein)
Length (aa):   %s   330 (308)
PWM (Da):   %s   36276.3 (33820.1) Transmb domain:   %s   o4-23i
PI (pH):   %s   9.51 (9.64) Peptide Signal:   %s   cut: 23 range:23-330
Sequence
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Send to Peroxiscan
.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
MAWSMSFFIF IALLAFAPIC FSFKSNNDYL YPQYYYRSCP KAQEIVKSVV AKAVAKEARM AASLLRLHFH DCFVKGCDAS LLLDSSRGIV TEKGSNANRN SARGFEVLDE IKSALEKECP  QTVSCADILA LAARDSTVLA GGPNWEVPLG RRDSRSASLS GSNNNIPAPN NTFDTILSKF KRQGLDLVDL VALSGSHTIG NSRCTSFRQR LYNQSGNNQP DSTLDQSYAA QLRNRCPKSG 
GDQNLFFLDF VSPTKFDNSY FKNLLASKGL LNSDQVLATK SQASLALVKQ YAENNALFFE HFAKSMVKMG NISPLTGSRG EIRKNCRKMN 

Retrieve as FASTA  
Remarks Complete sequence from genomic and ESTs.
DNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGGCTTGGT CCATGAGCTT CTTCATTTTC ATAGCTCTCC TTGCTTTTGC ACCAATTTGT TTCTCTTTTA AGAGTAACAA TGATTACCTA TACCCACAAT ATTATTACCG ATCATGCCCA  AAAGCACAAG AAATTGTCAA GTCTGTTGTT GCCAAGGCTG TTGCTAAAGA AGCCCGAATG GCTGCTTCGT TGCTGAGGCT CCATTTCCAC GACTGTTTTG TCAAGGTAAA ACATATTTCC  TGTGACTAGA TATTTATGCT ACTAGTTATA GCAATGCTGA ACTTCTCATA TTCATGTGAA TCCTTTGATG GTAACATTTG AACAAGGCTC CAACTCCTTT GGTTGAGTCT GTTGTCTAAA  TCCTGTTAAA TGTACATGTA CATAAATATT GTGGCATAAC AACTCTACAT GGCAGAAATT TACATGTTGG AAAAACTCTG AATAAGAAGT GCAGTAGCAT ATTAGCATGC AAAAATAGAC  TTGCTAAAAG TTACAGTACT AATTTTGCAC TGAGAGTATA TACCAAAAAA AAAAAAAACC CTTCTTTCTT TTGGCTTTTG CGGCTTTGAA CTTCTTAATT ACAGTCAAAC CTCTCTATAA  TATATAGAAA ACATATACTA TAATATAACA TGAAAATTAG CTCCAAAGAA ATTTGGCCGG CGAAGTGTTG TTATAGAGGA TGACTGTAAT AGAGAAGTTG GACGGAATAG CTTATCAGGA  AGGTAAGTGT GTGTATGCTG ATAGAGATGT ATAAACTTAT GCCAGAGTGA TTATTTCACC ATGTCCTGTA GGGATGTGAT GCATCTCTGC TTCTGGATAG CAGCAGAGGT ATTGTAACAG  AAAAAGGATC AAACGCCAAC AGGAATTCAG CTCGCGGATT TGAAGTCCTT GATGAGATTA AATCTGCACT GGAGAAGGAA TGTCCTCAAA CTGTCTCTTG TGCTGATATA TTGGCGCTTG  CTGCAAGGGA TTCTACTGTA TTAGTAAGTA TAGCCACTTA AAGTACTTTA CTAGGAGGCC TAAAAAGAAT AAAACAGAGC TAACTTTTAT TTTCTTTATA CAATACAGGC TGGTGGACCA  AACTGGGAGG TTCCATTGGG AAGAAGAGAC TCCAGAAGTG CCAGTTTGAG TGGTTCCAAC AACAACATTC CTGCTCCAAA CAATACATTT GATACCATTC TCTCAAAGTT CAAGAGACAA  GGACTTGATC TTGTTGACCT TGTAGCTTTA TCCGGTAAAA GTTACTCTTT TTCTTTTTGT GCTTGCTAAT TTCTTTTTTA TCCAGACAAG TAATCACACG TGAGAAAGGG AGCCTTGGCA  TAACTGGTAA AGCTGTTGCC AAGTGACCAG GAGGTCACGG GGTTCGAGCC GTGGAAACAA CCTCTTGCAG AAATGCAGGG TAAGGCTGTG TACTGTAGAC CCTTGTGGTC CGACCCTTTA  CTGGACTCTG TGCATAGCGG GAGCTTAATG CATCAGGCTG TCTTTTTACA AGTAATCACA CGTGAAACCA TATAGTTAAT ACCAATAATT TGTTATGCAG GGAGCCACAC AATTGGAAAC  TCGAGATGTA CCAGCTTCAG GCAAAGGCTC TACAACCAGT CAGGAAACAA TCAACCAGAC TCTACGCTGG ATCAATCATA TGCTGCCCAA TTGCGCAATA GGTGCCCAAA ATCTGGAGGT  GATCAGAACC TATTTTTCTT GGACTTTGTC TCTCCCACAA AATTTGATAA CAGCTACTTC AAGAACTTGT TGGCTTCAAA GGGCCTCCTG AACTCAGATC AAGTTCTTGC TACCAAGAGT  CAAGCATCAT TAGCTTTGGT GAAACAATAT GCAGAGAACA ATGCGCTTTT CTTCGAGCAC TTTGCCAAGT CTATGGTTAA GATGGGGAAC ATCTCGCCTT TGACAGGTTC CAGGGGAGAG 
ATCAGGAAGA ATTGCAGGAA GATGAACTGA 

Retrieve as FASTA  
cDNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
GATCACAGCA AATTAACTAG CCTTCTTCAA TATTCAAATT AAGCCTTTTC TACACCGTGT GCTTAGAACT TAATTTTAAA ATGGCTTGGT CCATGAGCTT CTTCATTTTC ATAGCTCTCC  TTGCTTTTGC ACCAATTTGT TTCTCTTTTA AGAGTAACAA TGATTACCTA TACCCACAAT ATTATTACCG ATCATGCCCA AAAGCACAAG AAATTGTCAA GTCTGTTGTT GCCAAGGCTG  TTGCTAAAGA AGCCCGAATG GCTGCTTCGT TGCTGAGGCT CCATTTCCAC GACTGTTTTG TCAAGGGATG TGATGCATCT CTGCTTCTGG ATAGCAGCAG AGGTATTGTA ACAGAAAAAG  GATCAAACGC CAACAGGAAT TCAGCTCGCG GATTTGAAGT CCTTGATGAG ATTAAATCTG CACTGGAGAA GGAATGTCCT CAAACTGTCT CTTGTGCTGA TATATTGGCG CTTGCTGCAA  GGGATTCTAC TGTATTAGCT GGTGGACCAA ACTGGGAGGT TCCATTGGGA AGAAGAGACT CCAGAAGTGC CAGTTTGAGT GGTTCCAACA ACAACATTCC TGCTCCAAAC AATACATTTG  ATACCATTCT CTCAAAGTTC AAGAGACAAG GACTTGATCT TGTTGACCTT GTAGCTTTAT CCGGGAGCCA CACAATTGGA AACTCGAGAT GTACCAGCTT CAGGCAAAGG CTCTACAACC  AGTCAGGAAA CAATCAACCA GACTCTACGC TGGATCAATC ATATGCTGCC CAATTGCGCA ATAGGTGCCC AAAACCTGGA GGTGATCAGA ACCTATTTTT CTTGGACTTT GTCTCTCCCA  CAAAATTTGA TAACAGCTAC TTCAGGAACT TGTTGGCTTC AAAGGGCCTC CTGAACTCAG ATCAAGTTCT TGCTACCAAG AGTCAAGCAT CATTAGCTTT GGTGAAACAA TATGCAGAGA  ACAATGCGCT TTTCTTCGAG CACTTTGCCA AGTCTATGGT TAAGATGGGG AACATCTCGC CTTTGACAGG TTCCAGGGGA GAGATCAGGA AGAATTGCAG GAAGATGAAC TGATCTTAGA  GCGCACATAA CCTTCATTGC AGCAGCAGAT ATCAATAATT GTGCCTCTAT CGTTGAACTG TTATGTATTT TCTATTTGTG TTCTTTTTTA CAGCATTTTT CTTGGCTTTT TCGTCCTTGA 
GGATTTCACT GCTTGTGTCC ATCCTCAAGG ACCCCCTTTT GTTCGAGGAG TATTTGGAGT TGCTTTATTA AAAGTGTGCT AAAACTGTCA GCGGCCGCAT GAGGGGAACC T 

Retrieve as FASTA