Entry information : LeAPx10(Solyc02g083630.2.1)
Entry ID 15363
Creation 2018-07-25 (Christophe Dunand)
Last sequence changes 2018-07-25 (Christophe Dunand)
Sequence status complete
Reviewer Not yet reviewed
Peroxidase information: LeAPx10(Solyc02g083630.2.1)
Name LeAPx10(Solyc02g083630.2.1)
Class Ascorbate peroxidase    [Orthogroup: APx2023]
Taxonomy Eukaryota Viridiplantae Streptophyta Solanaceae Solanum
Organism Lycopersicon esculentum (Tomato)    [TaxId: 4081 ]
Cellular localisation N/D
Tissue types Leaves
Roots
Seeds
Inducer N/D
Repressor N/D
Best BLASTp hits
Perox score E-value LeAPx10
start..stop
S start..stop
NtAPx06-1A 291 6.28e-99 3..293 4..307
LeAPx06 188 8.64e-59 2..282 3..286
HaAPx06 188 1.31e-58 2..277 5..282
PotacuAPx03 183 1.06e-56 3..282 5..285
Literature and cross-references LeAPx10(Solyc02g083630.2.1)
EST ref. GenBank:   BP896266.1 [5' end]  GO372928.1 [3' end]  FS182315.1 [Fragment]
Cluster/Prediction ref. Phytozome Gene 12:   36157351
Protein sequence: LeAPx10(Solyc02g083630.2.1)
Sequence Properties
first value : protein
second value (mature protein)
Length (aa):   %s   292 (303)
PWM (Da):   %s   32386.85 (33200.1) Transmb domain:   %s   o260-279i
PI (pH):   %s   7.7 (8.02) Peptide Signal:   %s   cut: 24 range:24-326
Sequence
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Send to Peroxiscan
*.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
MAPQVDEKYR EEINKARIEL GNLVKSKEFS APDFLRLAYA SQFTIANSHH NDDAANATST HDATKKKTQS ANNNSLNTID KIKANHPIIT YPDLYQLAGI VAVKELGGID IEFVPGRTES  LILPDENCLP DVKQSPEELR NVFRKVKISD PKHIVALYGG LKLATAGAQA TNLKLDNSYF VDLLDKKKNL SPAEKALLDD PEFHHCVQCY ATHKEDFFED YEEAHKKLAD LGLPYSAFIK 
STLEKSASQV KKVLAAQKAV GVGVAVAAAV VILSFFYVIN RRTAKHSSYQ YQ* 

Retrieve as FASTA  
Remarks Complete sequence from genomic and 7 ESTs. ch02:46968445..46970751
DNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGGCGCCAC AAGTAGATGA GAAATATCGT GAAGAGATAA ACAAAGCACG AATAGAACTT GGAAATCTTG TAAAATCGAA GGAGTTCAGT GCTCCTGATT TCCTTCGTTT AGCGTACGCA  TCCCAATTCA CAATTGCCAA TTCTCATCAT AACGATGATG CAGCAAATGC TACTTCTACT CATGATGCCA CAAAAAAGAA AACTCAATCT GCCAATAATA ATTCTCTCAA CACAATTGGT  AAGTTTATAT TTCATATGAA TCGATTGTTG GTGTATCTTT TTGAATTAGA CTAAAAAAAG AAAGTAAGAG AAATAAATCG AAACAGAGGG AGTACTATGC ACCTTCTTAT TAATGCCTTT  ATATTGCAGA TAAAATCAAG GCCAATCATC CCATAATAAC GTATCCTGAC CTCTATCAGG TGAGATATAT ATATACTTGT TGTATCAATA ATAATTATCC GTTTTGTAAT TTGCTAATTT  AATTAACACC AGATGCATGC AAGCTAGTAA TTGTTGAATA TTTGGTACTG CAGCTTGCTG GGATTGTTGC TGTTAAAGAA CTTGGTGGTA TAGACATCGA GTTTGTCCCT GGTAGAACGG  TACGCAAAGG AAATATGAAA ATTTATAATC CTATGTCATA CAGTTTAAGA AAGACTTTTA AAAATTGTGA TTTTAAACCT GTTTGACCGG GTGACTGTGA ATCAAGGATA AGAAAGAGAA  TTTTAAAGTT AATATTTCTA ATTATAGAAA GATAACATTA TTTTAGGAAC GGACTAAAAT GAAAATTGTA CCACATACAT TGGGACAATG CTAATTAGTA TACTACTCCT TCTGTCCCAA  TTTATATATG ACACCTTTTA TGTTTTGAGA GTCAAACAAT ATAAGTTTGA CAGGAAATTT GCGCATGAAA TCTTCAATTT TTTTGAAATG AAATTTATAT ATTTATAAAC TACGTAAAAT  ATACTACGAG TTATAATAAT TGATAATTCA AAATGTTTAA AAGACCTGTG AAAAATTTAA GATCACAGAT AGACTTGCTT GACTCTTGAA ATCTGAAAAG TGACGTATAA ACTTCTTTAC  CCTATTATTT ATTTGAAACG CATCACTAAA TTTTGCTACC TTTCTACCAG GAATCATTAA TTTTACCAGA TGAAAACTGC CTTCCTGATG TCAAACAAAG TAAGTTATAT GTAAATTAGC  TGATCTATAT ATCATTTTGA AGTTGCTATA TTCCTCCATA CGTCTTGTTG TTTACTGTGT TTCGATGCTG TTTTTTCAGG TCCAGAAGAA CTAAGAAATG TCTTCCGAAA AGTGAAAATC  TCTGATCCCA AGCATATAGT AGCATTATAT GGAGGTCTCA AACTGGTATA TGCATATATA GATCTGCATC AATATACTCA TATTTCTCAC ACGTATATAA ATGCTGTTTC GTCTTATCGT  TCCTCTTCTC GGTTTGCTGC TACAGGCCAC AGCTGGAGCT CAGGCTACAA ATTTGAAATT GGACAACTCA TACTTTGTGT AAGATTACTA TACACCCAGA CTTCTTCTAT ATTTCAACAT  TCATTACAAG GAAAAAAATG TCATATTTGC TTTTCCAAAT GATATCTTAG GGACCTCCTC GACAAGAAGA AGAATTTAAG TCCCGCGGAA AAAGCTCTGC TTGATGATCC GGAATTTCAC  CACTGCGTGC AATGTTATGC AACGGTATTA TAATAGCTCA TGTCTATTCT CAAAGTTCAA TTGTTGCAAC TCATCATAAA ACTCTTCAAC ATTATAAACA TATCTACTGT GGACTGTGGC  CCCTAAACAA CTGTATTATC TCCAACTCAA AATGATTTTT CATATTCAGC ATAAAGAGGA TTTCTTTGAG GACTATGAAG AGGCACACAA GAAGCTCGCT GATCTTGGCT TACCATATTC  AGCATTTATC AAATCAACAT TAGAAAAAAG TGCATCACAA GTGAAGAAGG TGCTGGCGGC ACAAAAGGCT GTTGGAGTTG GAGTTGCTGT TGCAGCCGCG GTTGTAATAT TGAGTTTCTT 
CTATGTAATC AACAGGAGGA CTGCTAAGCA TTCGTCATAT CAGTACCAGT AA 

Retrieve as FASTA  
CDS
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGGCGCCAC AAGTAGATGA GAAATATCGT GAAGAGATAA ACAAAGCACG AATAGAACTT GGAAATCTTG TAAAATCGAA GGAGTTCAGT GCTCCTGATT TCCTTCGTTT AGCGTACGCA  TCCCAATTCA CAATTGCCAA TTCTCATCAT AACGATGATG CAGCAAATGC TACTTCTACT CATGATGCCA CAAAAAAGAA AACTCAATCT GCCAATAATA ATTCTCTCAA CACAATTGAT  AAAATCAAGG CCAATCATCC CATAATAACG TATCCTGACC TCTATCAGCT TGCTGGGATT GTTGCTGTTA AAGAACTTGG TGGTATAGAC ATCGAGTTTG TCCCTGGTAG AACGGAATCA  TTAATTTTAC CAGATGAAAA CTGCCTTCCT GATGTCAAAC AAAGTCCAGA AGAACTAAGA AATGTCTTCC GAAAAGTGAA AATCTCTGAT CCCAAGCATA TAGTAGCATT ATATGGAGGT  CTCAAACTGG CCACAGCTGG AGCTCAGGCT ACAAATTTGA AATTGGACAA CTCATACTTT GTGGACCTCC TCGACAAGAA GAAGAATTTA AGTCCCGCGG AAAAAGCTCT GCTTGATGAT  CCGGAATTTC ACCACTGCGT GCAATGTTAT GCAACGCATA AAGAGGATTT CTTTGAGGAC TATGAAGAGG CACACAAGAA GCTCGCTGAT CTTGGCTTAC CATATTCAGC ATTTATCAAA  TCAACATTAG AAAAAAGTGC ATCACAAGTG AAGAAGGTGC TGGCGGCACA AAAGGCTGTT GGAGTTGGAG TTGCTGTTGC AGCCGCGGTT GTAATATTGA GTTTCTTCTA TGTAATCAAC 
AGGAGGACTG CTAAGCATTC GTCATATCAG TACCAGTAA 

Retrieve as FASTA  
cDNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
TTCATCAAAT CAAAGTTAAG CCAAAAGGCG AAGATCATTT GGCATAATAT ATAGTTTCAG CGTACCATTC ATGGCGCCAC AAGTAGATGA GAAATATCGT GAAGAGATAA ACAAAGCACG  AATAGAACTT GGAAATCTTG TAAAATCGAA GGAGTTCAGT GCTCCTGATT TCCTTCGTTT AGCGTACGCA TCCCAATTCA CAATTGCCAA TTCTCATCAT AACGATGATG CAGCAAATGC  TACTTCTACT CATGATGCCA CAAAAAAGAA AACTCAATCT GCCAATAATA ATTCTCTCAA CACAATTGAT AAAATCAAGG CCAATCATCC CATAATAACG TATCCTGACC TCTATCAGCT  TGCTGGGATT GTTGCTGTTA AAGAACTTGG TGGTATAGAC ATCGAGTTTG TCCCTGGTAG AACGGAATCA TTAATTTTAC CAGATGAAAA CTGCCTTCCT GATGTCAAAC AAAGTCCAGA  AGAACTAAGA AATGTCTTCC GAAAAGTGAA AATCTCTGAT CCCAAGCATA TAGTAGCATT ATATGGAGGT CTCAAACTGG CCACAGCTGG AGCTCAGGCT ACAAATTTGA AATTGGACAA  CTCATACTTT GTGGACCTCC TCGACAAGAA GAAGAATTTA AGTCCCGCGG AAAAAGCTCT GCTTGATGAT CCGGAATTTC ACCACTGCGT GCAATGTTAT GCAACGCATA AAGAGGATTT  CTTTGAGGAC TATGAAGAGG CACACAAGAA GCTCGCTGAT CTTGGCTTAC CATATTCAGC ATTTATCAAA TCAACATTAG AAAAAAGTGC ATCACAAGTG AAGAAGGTGC TGGCGGCACA  AAAGGCTGTT GGAGTTGGAG TTGCTGTTGC AGCCGCGGTT GTAATATTGA GTTTCTTCTA TGTAATCAAC AGGAGGACTG CTAAGCATTC GTCATATCAG TACCAGTAAC ATTGGTGGTG  AACTCAATTG AAAGAAAAGA TATGAACAGT TGGACTCCAT GGTTCAGCTA TAATAAATCT TGGATATCTC CTATTAACCT CAGTTGTAAA CATTCATCAA AATTCAATAA AAAAACTTGA 
ATTCCTTTTG AGCA 

Retrieve as FASTA