Entry information : MpPrx155 (Mapoly0182s0025)
Entry ID 14707
Creation 2017-12-12 (Christophe Dunand)
Last sequence changes 2017-12-12 (Christophe Dunand)
Sequence status partial
Reviewer Not yet reviewed
Last annotation changes 2017-12-14 (Christophe Dunand)
Peroxidase information: MpPrx155 (Mapoly0182s0025)
Name (synonym) MpPrx155 (Mapoly0182s0025)
Class Class III peroxidase    [Orthogroup: N/D] N/D
Taxonomy Eukaryota Viridiplantae Streptophyta Marchantiaceae Marchantia
Organism Marchantia polymorpha    [TaxId: 3197 ]
Cellular localisation N/D
Tissue type N/D
Inducer N/D
Repressor N/D
Best BLASTp hits
Perox score E-value MpPrx155
start..stop
S start..stop
MpPrx132 229 4e-76 1..148 1..147
MpPrx154 216 4e-71 9..148 6..145
MpPrx131 216 5e-71 1..143 1..142
MpPrx153 207 2e-67 27..148 26..147
Literature and cross-references MpPrx155 (Mapoly0182s0025)
Protein sequence: MpPrx155 (Mapoly0182s0025)
Sequence Properties
first value : protein
second value (mature protein)
Length (aa):   %s   160 (131)
PWM (Da):   %s   17740.86 (14369.0) Transmb domain:   %s   i13-32o
PI (pH):   %s   6.09 (5.17) Peptide Signal:   %s   cut: 30 range:30-160
Sequence
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Send to Peroxiscan
.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
MTSQRTRLQW RMLASTILLF LLAAVVADAQ LSPGFYHWTC PHAASVVKAK VDAFVEADRG LAADLMRLHF HDCFVRGCDG SVLLDSTDPN VLTEKSALLN NNSLRGFEQI DKIKMELECA 
CPGVVSCADI LALVARDATV KDGRCRYPFE EVGDTFTRWD * 

Retrieve as FASTA  
Remarks Partial sequence from genomic. Only exon 1 and 2 => scaffold border
DNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
CCTTAGCTCA TAAGTTGGAG CAGTTTCATT TCCTTCTCAG ACTTTCTCGG CTGCTTATCG GAGCTCGACT GGGCAGTTTT GATAACTGAT GGTATTCTTA CTCGTGGCGT CATGCAGGAA  GGTGGCTGTG ACCATCGCTT GTGGTGGCCA TCTGCCTCCG GGTGGGGTCG AGGTTTCATT CAGTCGTTGA CGAAAAGCAA CACCGAGAAA ATAATCTGAT CTTAAACATT CGGCAATGAC  GTCACAAAGA ACAAGACTGC AGTGGAGGAT GCTCGCTTCT ACCATTCTTT TGTTCCTTCT TGCGGCAGTT GTTGCAGATG CGCAACTGTC TCCGGGATTC TACCATTGGA CTTGTCCACA  TGCCGCTTCT GTCGTGAAAG CAAAGGTTGA TGCTTTCGTC GAAGCCGATC GGGGATTAGC AGCAGATCTC ATGCGCCTGC ATTTCCACGA TTGCTTCGTT CGAGTAAGAA GAATTACCTC  ATTGTCGAAA GGGCATGTTA CTCCATGTTC GGGATACTTG TTTCTTATGG CTGTTCTTGC TCGTACAACA ATAAGACCAG GACAGGGACA CTAGATCCGA GCATCGTCTT TGATGCACAG  TATCCGTAGA CAAAAGCGTA CTTGAAAATG GTATCGAAAA TATATACTGC TCATATATAA GTCTGGTGCA TGTGCAGGGA TGTGATGGAT CCGTCCTTCT CGATTCAACT GATCCAAATG  TTCTCACGGA GAAGTCAGCG TTGCTGAACA ATAACTCCTT GAGAGGATTC GAGCAAATCG ATAAAATCAA GATGGAGCTC GAGTGTGCAT GCCCAGGTGT TGTATCATGT GCGGATATAC  TAGCTCTCGT CGCCCGCGAT GCCACAGTCA AGGTGAGCCA AGAGCTCATT TCTGATGATT CTTTCAATCA AACACAGTCT TCAGCTGGAT CAAATTATGT CCTTCATAAA TTCTGAATGT  TTGGCACACG TCTCCTTGAA TGCAACGGAG AGAAGTGGTT GGCTGCTTGC CGAGATCGCA TATCGGGTTT CTGTGTCGGC CATCCACATC TTCTCATATC GAAAATCCAC TCGCTCATTT  TGGCTTATGC ACCAGAGTTG AATATCAGTC AGTTTTCGAT GTTTCGTACG ATCTGGCTAA GTACAAAGAA TTCTCGAACT TCAACTCAAT TTTTATGGGG TAATATGAAA TTTTTGTAAG  TGATTTTAAA GATTATTTTA AAATATTAAG TAAAAATTTC GATACTCTAA ACTTGCAAGT AGGATGCTAA CCAATCATAG CAGAACACTC CAAATATGGA TTCGTCACGA AATGACATCT  TTCTAGATTG AAGTAGATCA CATGATTGGT TTTTACCAGG AACGTAAAGA TACATACAAT AATAAATTAA ATGCTAAGCA TGAAAGTATG GCACTAAAAA TCTAGAACCT TCCTGCGTAA  TGAACTTAAG AACGAAGACG ACTCCGAACG ATGCAAATGT CCAATCAGGT TCACTCACAA GGAGGGAACG TTATCTCACT GGAATCTTAT ATGGAAGGTT TCCATCACAG GATGGCCGAT  GCAGATACCC TTTTGAGGAG GTAGGCGATA CCTTCACGCG ATGGGACTGA ACGTTCAAAG TCGGCTGATA TCGAATAGGC GCTGCATGAC CTTGAAACTG TCATAATGAT TCTGTTGGAT  AATCGCAGTA AGGTTTTTTT AAGATAGTCG AACATAGTCG AAAAGAGTAC TTTCCAGAGC AAATTATGTT GTATTCTGGT GCACATCCTT TGATGTTGGA TTAAGTAGCA TTTCATGGCT 
TGGGCACAAA AGAATAAAAT GTAAATAA 

Retrieve as FASTA  
CDS
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGACGTCAC AAAGAACAAG ACTGCAGTGG AGGATGCTCG CTTCTACCAT TCTTTTGTTC CTTCTTGCGG CAGTTGTTGC AGATGCGCAA CTGTCTCCGG GATTCTACCA TTGGACTTGT  CCACATGCCG CTTCTGTCGT GAAAGCAAAG GTTGATGCTT TCGTCGAAGC CGATCGGGGA TTAGCAGCAG ATCTCATGCG CCTGCATTTC CACGATTGCT TCGTTCGAGG ATGTGATGGA  TCCGTCCTTC TCGATTCAAC TGATCCAAAT GTTCTCACGG AGAAGTCAGC GTTGCTGAAC AATAACTCCT TGAGAGGATT CGAGCAAATC GATAAAATCA AGATGGAGCT CGAGTGTGCA  TGCCCAGGTG TTGTATCATG TGCGGATATA CTAGCTCTCG TCGCCCGCGA TGCCACAGTC AAGGATGGCC GATGCAGATA CCCTTTTGAG GAGGTAGGCG ATACCTTCAC GCGATGGGAC 
TGA 

Retrieve as FASTA  
cDNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
CCTTAGCTCA TAAGTTGGAG CAGTTTCATT TCCTTCTCAG ACTTTCTCGG CTGCTTATCG GAGCTCGACT GGGCAGTTTT GATAACTGAT GGTATTCTTA CTCGTGGCGT CATGCAGGAA  GGTGGCTGTG ACCATCGCTT GTGGTGGCCA TCTGCCTCCG GGTGGGGTCG AGGTTTCATT CAGTCGTTGA CGAAAAGCAA CACCGAGAAA ATAATCTGAT CTTAAACATT CGGCAATGAC  GTCACAAAGA ACAAGACTGC AGTGGAGGAT GCTCGCTTCT ACCATTCTTT TGTTCCTTCT TGCGGCAGTT GTTGCAGATG CGCAACTGTC TCCGGGATTC TACCATTGGA CTTGTCCACA  TGCCGCTTCT GTCGTGAAAG CAAAGGTTGA TGCTTTCGTC GAAGCCGATC GGGGATTAGC AGCAGATCTC ATGCGCCTGC ATTTCCACGA TTGCTTCGTT CGAGGATGTG ATGGATCCGT  CCTTCTCGAT TCAACTGATC CAAATGTTCT CACGGAGAAG TCAGCGTTGC TGAACAATAA CTCCTTGAGA GGATTCGAGC AAATCGATAA AATCAAGATG GAGCTCGAGT GTGCATGCCC  AGGTGTTGTA TCATGTGCGG ATATACTAGC TCTCGTCGCC CGCGATGCCA CAGTCAAGGA TGGCCGATGC AGATACCCTT TTGAGGAGGT AGGCGATACC TTCACGCGAT GGGACTGAAC  GTTCAAAGTC GGCTGATATC GAATAGGCGC TGCATGACCT TGAAACTGTC ATAATGATTC TGTTGGATAA TCGCAGTAAG GTTTTTTTAA GATAGTCGAA CATAGTCGAA AAGAGTACTT 
TCCAGAGCAA ATTATGTTGT ATTCTGGTGC ACATCCTTTG ATGTTGGATT AAGTAGCATT TCATGGCTTG GGCACAAAAG AATAAAATGT AAATAA 

Retrieve as FASTA