Entry information : MpPrx148 (Mapoly0035s0129 / Mp6g03490)
Entry ID 7348
Creation 2010-05-21 (Catherine Mathe)
Last sequence changes 2017-11-22 (Christophe Dunand)
Sequence status complete
Reviewer Not yet reviewed
Last annotation changes 2017-11-22 (Christophe Dunand)
Peroxidase information: MpPrx148 (Mapoly0035s0129 / Mp6g03490)
Name (synonym) MpPrx148 (Mapoly0035s0129 / Mp6g03490)
Class Class III peroxidase    [Orthogroup: Prx141]
Taxonomy Eukaryota Viridiplantae Streptophyta Marchantiaceae Marchantia
Organism Marchantia polymorpha    [TaxId: 3197 ]
Cellular localisation N/D
Tissue type Thallus
Inducer N/D
Repressor N/D
Best BLASTp hits
Perox score E-value MpPrx148
start..stop
S start..stop
MpPrx156 605 0 1..325 1..329
MpPrx154 590 0 1..325 1..329
MpPrx151 589 0 1..325 1..329
MpPrx155 587 0 1..325 1..329
Literature and cross-references MpPrx148 (Mapoly0035s0129 / Mp6g03490)
DNA ref. GenBank:   BJ852148.1 [Fragment]
Protein sequence: MpPrx148 (Mapoly0035s0129 / Mp6g03490)
Sequence Properties
first value : protein
second value (mature protein)
Length (aa):   %s   326 (304)
PWM (Da):   %s   35226.66 (32723.3)  
PI (pH):   %s   7.11 (7.05) Peptide Signal:   %s   cut: 23 range:23-326
Sequence
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Send to Peroxiscan
*.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
MAHFRSLLLL ALFTFSGVAV EATGPGDNGF VGLRDNYYRN SCKDAEKLIK KAVQAELAKN LKHAAGVLRM HFHDCFVEGC DGSVLLDGPG TEKTSHLAGF EVIDAAKAAV EAVCPGVVSC  ADILAYAARD STVELNGTGW AVQGGRKDCT VSLASRAEAE LPPPMFEVSQ LIDSFARRGL SARQMVVLSG AQTVGVGFCD KFVSRLYDFN STFFTDPSID PAYATELKNI CPQHSFNTSI 
EVFMDVITPT SAGVFEANYY KTLQEHKGLL TSDQSLFDDS RTRAVVTSLL NNRRFQKEFG KAMRAMGAVG VKTVGQIRTK CSAVNE* 

Retrieve as FASTA  
Remarks Complete sequence from genomic and 1 EST. Strain="E".
DNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGGCACACT TCAGGTCTCT TCTTTTACTT GCTCTATTTA CCTTCTCTGG AGTGGCGGTG GAGGCAACAG GCCCTGGTGA CAACGGGTTC GTGGGATTGA GAGATAACTA CTACAGGAAT  TCATGCAAGG ACGCGGAGAA GCTCATAAAG AAGGCCGTTC AGGCTGAACT CGCGAAGAAC CTCAAGCATG CAGCTGGTGT CCTTCGTATG CATTTCCATG ACTGCTTCGT TGAGGTAACC  CAGAAAGGTG TCTACGATCC CATGTGGATC CAGTCCATGA ACAGCTTGGA AGATAGAGGT TTCAGTTGCT GGAGTTGAAT TTTATTCATG AAGCTTCTTC TCGCTTGTCC TCAGTCACGA  GAGATCCTCA GAACCTGCAT CTGCCAATGG ACGTCAGAGT TTCAAAGGAC ACGATGCATG CTGCTCATGG ATTGCATGTT TCGCAGGGGT GCGATGGCTC TGTACTGCTC GACGGGCCTG  GAACGGAGAA AACATCTCAT GTCAACTGGC GTTGACATGA GATGTTTTCT CATGTCAAAA GCTGGCAGGT TTTGAAGTGA TCGACGCTGC CAAAGCTGCC GTGGAAGCAG TCTGTCCTGG  CGTTGTTTCA TGCGCCGACA TCCTTGCTTA TGCAGCTCGC GACAGCACAG TCGAGGTACG CGCACTTCAT GCCTGAGAAA AATGCAGTCA CCAGCTGCTG AGTGCACGAG CTCTTTCTCA  GAAATGCAAC ACTACACTCA CAATAATGAC TACGATCTAA TTTGCTCACA AAATTCGGGT TTACATCGTG TACTACTTTC GATATTCGAG AGCTTTTTCC AGCCTACCGA GATTTCGTAC  GTCATGGCAA TTCGTCCTGC TTTTATTCCC TAGTCTCGAT TTGCATCCTG CATGCTATCT CACTGGCTAA TTTGATCGCT GCCTTGCAAC TCGTTACTCA GCTAAACGGC ACAGGCTGGG  CCGTGCAAGG TGGAAGAAAA GATTGCACTG TTTCCCTCGC GTCTAGAGCC GAAGCCGAGC TGCCACCGCC AATGTTCGAG GTGTCTCAGC TCATAGATTC TTTTGCTCGG AGGGGATTAT  CGGCCAGGCA GATGGTGGTT CTGTCCGGGG CGCAGACGGT GGGAGTGGGA TTCTGCGACA AATTCGTTTC GCGCCTCTAC GATTTCAACT CAACCTTCTT CACGGATCCC TCGATCGACC  CTGCATACGC CACGGAGCTC AAGAACATTT GCCCCCAGCA CAGTTTCAAC ACCTCCATCG AAGTGTTCAT GGATGTTATC ACCCCCACAT CTGCAGGCGT GTTCGAGGCC AACTACTACA  AGACGCTGCA GGAGCACAAG GGCCTCCTCA CATCGGACCA GTCGCTTTTC GACGATAGCC GCACAAGGGC CGTGGTGACA TCGCTGCTGA ATAATCGTCG ATTCCAGAAG GAGTTCGGAA 
AGGCCATGCG GGCTATGGGA GCAGTAGGAG TCAAGACAGT GGGCCAGATT CGCACCAAGT GCAGTGCGGT GAACGAATAG 

Retrieve as FASTA  
CDS
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGGCACACT TCAGGTCTCT TCTTTTACTT GCTCTATTTA CCTTCTCTGG AGTGGCGGTG GAGGCAACAG GCCCTGGTGA CAACGGGTTC GTGGGATTGA GAGATAACTA CTACAGGAAT  TCATGCAAGG ACGCGGAGAA GCTCATAAAG AAGGCCGTTC AGGCTGAACT CGCGAAGAAC CTCAAGCATG CAGCTGGTGT CCTTCGTATG CATTTCCATG ACTGCTTCGT TGAGGGGTGC  GATGGCTCTG TACTGCTCGA CGGGCCTGGA ACGGAGAAAA CATCTCATCT GGCAGGTTTT GAAGTGATCG ACGCTGCCAA AGCTGCCGTG GAAGCAGTCT GTCCTGGCGT TGTTTCATGC  GCCGACATCC TTGCTTATGC AGCTCGCGAC AGCACAGTCG AGCTAAACGG CACAGGCTGG GCCGTGCAAG GTGGAAGAAA AGATTGCACT GTTTCCCTCG CGTCTAGAGC CGAAGCCGAG  CTGCCACCGC CAATGTTCGA GGTGTCTCAG CTCATAGATT CTTTTGCTCG GAGGGGATTA TCGGCCAGGC AGATGGTGGT TCTGTCCGGG GCGCAGACGG TGGGAGTGGG ATTCTGCGAC  AAATTCGTTT CGCGCCTCTA CGATTTCAAC TCAACCTTCT TCACGGATCC CTCGATCGAC CCTGCATACG CCACGGAGCT CAAGAACATT TGCCCCCAGC ACAGTTTCAA CACCTCCATC  GAAGTGTTCA TGGATGTTAT CACCCCCACA TCTGCAGGCG TGTTCGAGGC CAACTACTAC AAGACGCTGC AGGAGCACAA GGGCCTCCTC ACATCGGACC AGTCGCTTTT CGACGATAGC  CGCACAAGGG CCGTGGTGAC ATCGCTGCTG AATAATCGTC GATTCCAGAA GGAGTTCGGA AAGGCCATGC GGGCTATGGG AGCAGTAGGA GTCAAGACAG TGGGCCAGAT TCGCACCAAG 
TGCAGTGCGG TGAACGAATA G 

Retrieve as FASTA  
cDNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGGCACACT TCAGGTCTCT TCTTTTACTT GCTCTATTTA CCTTCTCTGG AGTGGCGGTG GAGGCAACAG GCCCTGGTGA CAACGGGTTC GTGGGATTGA GAGATAACTA CTACAGGAAT  TCATGCAAGG ACGCGGAGAA GCTCATAAAG AAGGCCGTTC AGGCTGAACT CGCGAAGAAC CTCAAGCATG CAGCTGGTGT CCTTCGTATG CATTTCCATG ACTGCTTCGT TGAGGGGTGC  GATGGCTCTG TACTGCTCGA CGGGCCTGGA ACGGAGAAAA CATCTCATCT GGCAGGTTTT GAAGTGATCG ACGCTGCCAA AGCTGCCGTG GAAGCAGTCT GTCCTGGCGT TGTTTCATGC  GCCGACATCC TTGCTTATGC AGCTCGCGAC AGCACAGTCG AGCTAAACGG CACAGGCTGG GCCGTGCAAG GTGGAAGAAA AGATTGCACT GTTTCCCTCG CGTCTAGAGC CGAAGCCGAG  CTGCCACCGC CAATGTTCGA GGTGTCTCAG CTCATAGATT CTTTTGCTCG GAGGGGATTA TCGGCCAGGC AGATGGTGGT TCTGTCCGGG GCGCAGACGG TGGGAGTGGG ATTCTGCGAC  AAATTCGTTT CGCGCCTCTA CGATTTCAAC TCAACCTTCT TCACGGATCC CTCGATCGAC CCTGCATACG CCACGGAGCT CAAGAACATT TGCCCCCAGC ACAGTTTCAA CACCTCCATC  GAAGTGTTCA TGGATGTTAT CACCCCCACA TCTGCAGGCG TGTTCGAGGC CAACTACTAC AAGACGCTGC AGGAGCACAA GGGCCTCCTC ACATCGGACC AGTCGCTTTT CGACGATAGC  CGCACAAGGG CCGTGGTGAC ATCGCTGCTG AATAATCGTC GATTCCAGAA GGAGTTCGGA AAGGCCATGC GGGCTATGGG AGCAGTAGGA GTCAAGACAG TGGGCCAGAT TCGCACCAAG 
TGCAGTGCGG TGAACGAATA G 

Retrieve as FASTA