Entry information : MpPrx[P]47(Mapoly0011s0055 / Mp4g10690)
Entry ID 14698
Creation 2017-12-12 (Christophe Dunand)
Last sequence changes 2017-12-12 (Christophe Dunand)
Sequence status theoretical translation / pseudogene
Reviewer Not yet reviewed
Last annotation changes 2021-04-04 (Christophe Dunand)
Peroxidase information: MpPrx[P]47(Mapoly0011s0055 / Mp4g10690)
Name MpPrx[P]47(Mapoly0011s0055 / Mp4g10690)
Class Class III peroxidase     [Orthogroup: Prx339]*
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 MpPrx[P]47
start..stop
S start..stop
MpalPrx47 268 2.01e-89 24..208 216..400
MpPrx72 209 3.49e-66 24..208 223..408
MpPrx73 205 5.94e-65 24..208 205..390
MpalPrx163 204 7.49e-65 24..207 161..344
Literature and cross-references MpPrx[P]47(Mapoly0011s0055 / Mp4g10690)
Protein sequence: MpPrx[P]47(Mapoly0011s0055 / Mp4g10690)
Sequence Properties
first value : protein
second value (mature protein)
Length (aa):   %s   227 (300)
PWM (Da):   %s   24745.49 (32138.9)  
PI (pH):   %s   8.22 (6.62) Peptide Signal:   %s   cut: 25 range:25-324
Sequence
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Send to Peroxiscan
*.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
MHLERNHLRS SGLPEAPLRM RLYDCFLRIG CPSWSVVSGR RDGLVSSAQI NPSIFPPSLP YYPFFENRFT RKGASEREMV VLSGAHKIGI THCGLIQAQV YNSTGPEIVD PILEPTMAAQ 
LNKQCPFGAV MNEVLIDPTS GSNNFDCRLF SRAQNNQAVF ISDAASTTNV SGRAIVLEEA PRSNAPFLDD FAAAMEKMSK IQGLSKPANL SVGIVGFSIR DRLSAAT* 

Retrieve as FASTA  
Remarks Pseudogene from enomic. Incorrect prediction from Phytozome. Exon 1 and 2 and GEIR are missing. Also pseudo in Mpolmon and Mpolpol.
DNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGGACTCAC ACCATCTTTC AAAATATGTC ATGGAAATGA AGCTTTGGAG ACCCCGAAGA GAATGAGATC TAGATTCACG CAAGGCTTTT CTTTCGAAGA CCATAAAGCG CCCGACCGAT  TTCGATTCTG AAGAAACTCA CAACACTCTA TGCATCTGGA ACGGAATCAT CTTAGGAGCA GCGGGCTGCC AGAAGCTCCT CTTCGAATGC GGCTCTATGA TTGCTTTTTG AGAGTAAGTG  ATCATTTTAT TCTCTGCAGT GATAGGGATG ATTCAATCCA AAGTTTGACT TCAGATGCTT GTATTTCCCT ACTAGAATCG TACTGAATTC TGAATTCAGT ACAATTCAGT AAAATTCACT  CTAAATTCAG AGTATCAAAA TGACCAGCCT TGGTCAGCTA TCTTGGCGGG CAACTCGAAC CTTCTCCTGT GCTCTGATGC ATTTCGCTTC TTAAAGTCTA CTCTCTCAAG CGAGATCATG  TATTAAAATC GCACCGTCCA CGTAAATTCC AAATTTTTAT TCTCTAAGCT GGCAGGCTTC TCGACTAACA TCTGGATCTC TGAACCAATT TGCTGCAGAT TGGATGTCCC TCCTGGTCCG  TAGTTTCTGG TCGAAGAGAT GGTTTGGTTT CCAGTGCACA GATAAATCCC AGCATTTTTC CGCCTTCTCT CCCATATTAC CCATTCTTCG AGAACAGGTT CACGAGGAAA GGAGCTTCAG  AGAGGGAGAT GGTCGTCCTT TCAGGTAGTA TGTACAGATT CATTTCCGTT GCTTTCACAA TCTCCACACT CTACGAGTCA GTAAATAGAT TTTACAAACT TATCACTCCA CAACTGTACG  GAAGTTCATG GACAAGACTG ACTGAACCGA GAGCAGGTGC TCACAAGATC GGCATCACAC ATTGCGGATT GATCCAAGCC CAAGTCTACA ACTCAACTGG CCCCGAGATA GTGGACCCAA  TCTTGGAACC GACTATGGCA GCTCAGCTGA ACAAGCAGTG TCCTTTCGGA GCTGTGATGA ACGAAGTACT CATAGACCCA ACCAGTGGCA GCAACAATTT TGACTGCAGG CTCTTCAGCA  GGGCTCAGAA CAACCAGGCA GTGTTTATCT CGGATGCTGC ATCGACTACC AATGTCAGCG GCCGAGCCAT CGTCTTGGAA GAAGCACCGC GTTCCAATGC TCCTTTCCTC GATGATTTTG  CCGCTGCCAT GGAGAAGATG AGCAAGATCC AAGGCCTGAG CAAACCAGCT AATTTATCAG TCGGAATTGT AGGTTTCTCA ATTCGTGATC GACTCTCCGC TGCAACTTAA TGCAGTTCGT  CTCGAACGCC TTGCAAGCAA CAAAGGTAGC AGTTTTCGGA TCCTGAAGTT CACCACAAGT AAGTACCTCA AATCTCTCAC TTCCCTCGAA TGCCAAGTAA AAGCGTCACG TCTTGTTCGA  CGGACTCGGA CAGTGAAAGT TATATGGAGC TTATCTATAC TCGGGAAGTC CAAAGGGATG TTTGGACTAT CCGAGGACAA ACAAATTATA GTAATCCTTC AACCTGGATG CGTAATGATG 
TTCAACATGG AG 

Retrieve as FASTA  
CDS
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGCATCTGG AACGGAATCA TCTTAGGAGC AGCGGGCTGC CAGAAGCTCC TCTTCGAATG CGGCTCTATG ATTGCTTTTT GAGAATTGGA TGTCCCTCCT GGTCCGTAGT TTCTGGTCGA  AGAGATGGTT TGGTTTCCAG TGCACAGATA AATCCCAGCA TTTTTCCGCC TTCTCTCCCA TATTACCCAT TCTTCGAGAA CAGGTTCACG AGGAAAGGAG CTTCAGAGAG GGAGATGGTC  GTCCTTTCAG GTGCTCACAA GATCGGCATC ACACATTGCG GATTGATCCA AGCCCAAGTC TACAACTCAA CTGGCCCCGA GATAGTGGAC CCAATCTTGG AACCGACTAT GGCAGCTCAG  CTGAACAAGC AGTGTCCTTT CGGAGCTGTG ATGAACGAAG TACTCATAGA CCCAACCAGT GGCAGCAACA ATTTTGACTG CAGGCTCTTC AGCAGGGCTC AGAACAACCA GGCAGTGTTT  ATCTCGGATG CTGCATCGAC TACCAATGTC AGCGGCCGAG CCATCGTCTT GGAAGAAGCA CCGCGTTCCA ATGCTCCTTT CCTCGATGAT TTTGCCGCTG CCATGGAGAA GATGAGCAAG 
ATCCAAGGCC TGAGCAAACC AGCTAATTTA TCAGTCGGAA TTGTAGGTTT CTCAATTCGT GATCGACTCT CCGCTGCAAC TTAA 

Retrieve as FASTA  
cDNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGGACTCAC ACCATCTTTC AAAATATGTC ATGGAAATGA AGCTTTGGAG ACCCCGAAGA GAATGAGATC TAGATTCACG CAAGGCTTTT CTTTCGAAGA CCATAAAGCG CCCGACCGAT  TTCGATTCTG AAGAAACTCA CAACACTCTA TGCATCTGGA ACGGAATCAT CTTAGGAGCA GCGGGCTGCC AGAAGCTCCT CTTCGAATGC GGCTCTATGA TTGCTTTTTG AGAATTGGAT  GTCCCTCCTG GTCCGTAGTT TCTGGTCGAA GAGATGGTTT GGTTTCCAGT GCACAGATAA ATCCCAGCAT TTTTCCGCCT TCTCTCCCAT ATTACCCATT CTTCGAGAAC AGGTTCACGA  GGAAAGGAGC TTCAGAGAGG GAGATGGTCG TCCTTTCAGG TGCTCACAAG ATCGGCATCA CACATTGCGG ATTGATCCAA GCCCAAGTCT ACAACTCAAC TGGCCCCGAG ATAGTGGACC  CAATCTTGGA ACCGACTATG GCAGCTCAGC TGAACAAGCA GTGTCCTTTC GGAGCTGTGA TGAACGAAGT ACTCATAGAC CCAACCAGTG GCAGCAACAA TTTTGACTGC AGGCTCTTCA  GCAGGGCTCA GAACAACCAG GCAGTGTTTA TCTCGGATGC TGCATCGACT ACCAATGTCA GCGGCCGAGC CATCGTCTTG GAAGAAGCAC CGCGTTCCAA TGCTCCTTTC CTCGATGATT  TTGCCGCTGC CATGGAGAAG ATGAGCAAGA TCCAAGGCCT GAGCAAACCA GCTAATTTAT CAGTCGGAAT TGTAGGTTTC TCAATTCGTG ATCGACTCTC CGCTGCAACT TAATGCAGTT  CGTCTCGAAC GCCTTGCAAG CAACAAAGGT AGCAGTTTTC GGATCCTGAA GTTCACCACA AGTAAGTACC TCAAATCTCT CACTTCCCTC GAATGCCAAG TAAAAGCGTC ACGTCTTGTT  CGACGGACTC GGACAGTGAA AGTTATATGG AGCTTATCTA TACTCGGGAA GTCCAAAGGG ATGTTTGGAC TATCCGAGGA CAAACAAATT ATAGTAATCC TTCAACCTGG ATGCGTAATG 
ATGTTCAACA TGGAG 

Retrieve as FASTA