Entry information : MpPrx152(Mapoly0047s0002 / Mp6g13510)
Entry ID 7370
Creation 2017-11-21 (Christophe Dunand)
Last sequence changes 2017-11-21 (Christophe Dunand)
Sequence status complete
Reviewer Not yet reviewed
Last annotation changes 2021-04-20 (Christophe Dunand)
Peroxidase information: MpPrx152(Mapoly0047s0002 / Mp6g13510)
Name MpPrx152(Mapoly0047s0002 / Mp6g13510)
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 MpPrx152
start..stop
S start..stop
MpPrx155 644 0 1..332 1..332
MpPrx153 627 0 1..332 1..332
MpPrx151 626 0 1..332 1..332
MpPrx154 624 0 1..332 1..332
Literature and cross-references MpPrx152(Mapoly0047s0002 / Mp6g13510)
Literature Yamato,K.T., et al., Gene organization of the liverwort Y chromosome reveals distinct sex chromosome evolution in a haploid system. Proc. Natl. Acad. Sci. U.S.A. 104 (15), 6472-6477 (2007).
EST ref. GenBank:   BJ850002.1 [5' end]  BJ849325.1 [3' end]
Protein sequence: MpPrx152(Mapoly0047s0002 / Mp6g13510)
Sequence Properties
first value : protein
second value (mature protein)
Length (aa):   %s   331 (309)
PWM (Da):   %s   36305.36 (33669.9)  
PI (pH):   %s   8.54 (8.54) Peptide Signal:   %s   cut: 23 range:23-331
Sequence
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Send to Peroxiscan
*.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
MMQFRWLLLV SLLTISGVVV DAYGTGDYGY VGLRDNYYAS SCKDAEKVIK KAVQTELAKN LKHAAGVLRM QFHDCFVEGC DASVLLDGPR TEKTAPVNAK LAGFEVIDAA KAAVEAICPG  VVSCADILAY AARDSTVELN GTAWAVQGGR KDGTVSRASR AEAELPPPEF QVSQLIDSFA RRGLSARQMV VLSGSHTVGV SFCDKFVSRL YNFNSAFFTD PSIDPAYAKE LKNICPQHTF 
NTTIEVFMDV ITPTSAGVFE ANYYKTLQEH KGLFTSDQSL FDDTRTKAMV TSLLNNRRFQ KEFGKAMRAM GRVGVKTKGQ IRTNCRVVNT Y* 

Retrieve as FASTA  
Remarks Complete sequence from genomic and 2 ESTs. Strain="E". Specific peptide found in cell wall proteome.
DNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGATGCAGT TCAGGTGGCT ACTTTTGGTC TCTCTCCTTA CGATCTCTGG AGTGGTGGTG GATGCTTATG GCACCGGTGA CTACGGCTAC GTGGGATTGA GAGATAACTA TTACGCGAGT  TCATGCAAGG ACGCAGAAAA GGTGATAAAG AAAGCCGTTC AGACTGAACT GGCCAAGAAC CTCAAGCATG CAGCTGGTGT CTTGCGTATG CAATTCCATG ACTGCTTCGT GGAGGTAAGC  GTCAGAAGGT GTTATGATCT CATGTGGATC CAGACGAGAC CATGGCACAT TTGCAATTTC GAGGTTTCAG CTACTTCAGT ATGAATTTAT TCTGTTCCTT CTTGAGTTTC CACTCTCATC  CGCCGCAGTC GTGCCTGATC AATAGAAGCC CAGTCTGAAG AGACCCTGCA TCTGTCAATG GTCCGTCACA GTTATCCACT TCACACTGCA TGTTGCTAAT GGAATGCATG TTTCGCAGGG  CTGCGATGCT TCTGTACTGC TCGACGGGCC TAGAACCGAA AAGACGGCTC CTGTCAACGC GAAGCTCGCA GGATTTGAAG TGATCGACGC TGCCAAAGCT GCCGTGGAAG CAATCTGTCC  TGGCGTCGTT TCATGCGCCG ACATCCTTGC GTACGCAGCT CGCGACAGCA CAGTCGAGGT ACACGACCTT CATGTCTCAG AAAGATGAGA CATTTCCCAG GCACTGACTG CACAAGTGGT  TTCTCAGACT TCCAACACGC CACTCAGAAT GACTACGATC GTGTTTCCTC ACGAGAGTTG ATTTTACTCC GTGTAATCCT TTTGATGTTC CAGAGCATAT TTGAACTTGC CGAGTTTTCA  CTCTGAAAGG CGATTCATTC GTACTGCTTT TATTCCGGAG TCTCCATGTG CATCCAGCAT GATTTCTCAA GGACTAATTT GACTGCTGTG TTGCCACTCG TATCTCAGCT GAACGGCACA  GCCTGGGCGG TGCAAGGTGG AAGAAAGGAT GGCACTGTTT CTCGGGCCTC CAGAGCCGAA GCCGAGCTGC CACCGCCGGA GTTCCAGGTG TCTCAGCTCA TAGATTCTTT TGCTCGGAGG  GGATTATCGG CCAGGCAGAT GGTGGTTCTT TCCGGCTCGC ACACCGTGGG AGTGAGTTTC TGTGACAAAT TCGTTTCGCG CCTCTACAAC TTCAACTCAG CCTTCTTCAC GGATCCCTCG  ATCGACCCTG CATATGCCAA GGAGCTCAAG AACATTTGTC CCCAGCACAC TTTCAACACC ACCATCGAGG TGTTCATGGA TGTAATCACT CCCACATCTG CAGGCGTGTT CGAGGCCAAT  TACTACAAGA CACTGCAGGA GCACAAGGGC CTCTTCACAT CCGACCAGTC GCTGTTTGAC GATACCCGCA CAAAGGCCAT GGTGACATCG CTGCTGAATA ATCGTCGATT CCAGAAGGAG 
TTCGGAAAGG CTATGCGCGC TATGGGAAGA GTGGGAGTCA AGACCAAGGG CCAGATCCGC ACCAACTGCA GGGTGGTGAA CACATACTAG 

Retrieve as FASTA  
CDS
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGATGCAGT TCAGGTGGCT ACTTTTGGTC TCTCTCCTTA CGATCTCTGG AGTGGTGGTG GATGCTTATG GCACCGGTGA CTACGGCTAC GTGGGATTGA GAGATAACTA TTACGCGAGT  TCATGCAAGG ACGCAGAAAA GGTGATAAAG AAAGCCGTTC AGACTGAACT GGCCAAGAAC CTCAAGCATG CAGCTGGTGT CTTGCGTATG CAATTCCATG ACTGCTTCGT GGAGGGCTGC  GATGCTTCTG TACTGCTCGA CGGGCCTAGA ACCGAAAAGA CGGCTCCTGT CAACGCGAAG CTCGCAGGAT TTGAAGTGAT CGACGCTGCC AAAGCTGCCG TGGAAGCAAT CTGTCCTGGC  GTCGTTTCAT GCGCCGACAT CCTTGCGTAC GCAGCTCGCG ACAGCACAGT CGAGCTGAAC GGCACAGCCT GGGCGGTGCA AGGTGGAAGA AAGGATGGCA CTGTTTCTCG GGCCTCCAGA  GCCGAAGCCG AGCTGCCACC GCCGGAGTTC CAGGTGTCTC AGCTCATAGA TTCTTTTGCT CGGAGGGGAT TATCGGCCAG GCAGATGGTG GTTCTTTCCG GCTCGCACAC CGTGGGAGTG  AGTTTCTGTG ACAAATTCGT TTCGCGCCTC TACAACTTCA ACTCAGCCTT CTTCACGGAT CCCTCGATCG ACCCTGCATA TGCCAAGGAG CTCAAGAACA TTTGTCCCCA GCACACTTTC  AACACCACCA TCGAGGTGTT CATGGATGTA ATCACTCCCA CATCTGCAGG CGTGTTCGAG GCCAATTACT ACAAGACACT GCAGGAGCAC AAGGGCCTCT TCACATCCGA CCAGTCGCTG  TTTGACGATA CCCGCACAAA GGCCATGGTG ACATCGCTGC TGAATAATCG TCGATTCCAG AAGGAGTTCG GAAAGGCTAT GCGCGCTATG GGAAGAGTGG GAGTCAAGAC CAAGGGCCAG 
ATCCGCACCA ACTGCAGGGT GGTGAACACA TACTAG 

Retrieve as FASTA  
cDNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ACTTTAGCTC ACTCTGGCTC TCGAATAGAT CCGATCAATA GTTTGATCGG AAGAAGAGAC GTTTCTCCAG ATCTACTCGA TCGCAAAATC CAAAAAAAAA CTTTTCCAAT TTTTCTGGTG  GAAGTCTCGA GGGCTAGGAA CTTTGAGGGT GACATTGTGA TCACTTTTCT CCCTCATTTA TTCCAACGAA TAGTGTACAT AAAAAGTGTA AATTTGAAGC TGTTAAAATT TCGACACGAT  GATGCAGTTC AGGTGGCTAC TTTTGGTCTC TCTCCTTACG ATCTCTGGAG TGGTGGTGGA TGCTTATGGC ACCGGTGACT ACGGCTACGT GGGATTGAGA GATAACTATT ACGCGAGTTC  ATGCAAGGAC GCAGAAAAGG TGATAAAGAA AGCCGTTCAG ACTGAACTGG CCAAGAACCT CAAGCATGCA GCTGGTGTCT TGCGTATGCA ATTCCATGAC TGCTTCGTGG AGGGCTGCGA  TGCTTCTGTA CTGCTCGACG GGCCTAGAAC CGAAAAGACG GCTCCTGTCA ACGCGAAGCT CGCAGGATTT GAAGTGATCG ACGCTGCCAA AGCTGCCGTG GAAGCAATCT GTCCTGGCGT  CGTTTCATGC GCCGACATCC TTGCGTACGC AGCTCGCGAC AGCACAGTCG AGCTGAACGG CACAGCCTGG GCGGTGCAAG GTGGAAGAAA GGATGGCACT GTTTCTCGGG CCTCCAGAGC  CGAAGCCGAG CTGCCACCGC CGGAGTTCCA GGTGTCTCAG CTCATAGATT CTTTTGCTCG GAGGGGATTA TCGGCCAGGC AGATGGTGGT TCTTTCCGGC TCGCACACCG TGGGAGTGAG  TTTCTGTGAC AAATTCGTTT CGCGCCTCTA CAACTTCAAC TCAGCCTTCT TCACGGATCC CTCGATCGAC CCTGCATATG CCAAGGAGCT CAAGAACATT TGTCCCCAGC ACACTTTCAA  CACCACCATC GAGGTGTTCA TGGATGTAAT CACTCCCACA TCTGCAGGCG TGTTCGAGGC CAATTACTAC AAGACACTGC AGGAGCACAA GGGCCTCTTC ACATCCGACC AGTCGCTGTT  TGACGATACC CGCACAAAGG CCATGGTGAC ATCGCTGCTG AATAATCGTC GATTCCAGAA GGAGTTCGGA AAGGCTATGC GCGCTATGGG AAGAGTGGGA GTCAAGACCA AGGGCCAGAT  CCGCACCAAC TGCAGGGTGG TGAACACATA CTAGATGATT CCGAGTAACT CTCATTTAAA ATTTTTAGAA GAGGAATTTA ACATTAGTAG TGCACTCCGA AGCCAGAGCA AAGTAAATTG  AGAAGCTAAC GATTAAGCTC ACCGAGTGGT CGTGTATTAA AACTTTATCA GAAGTAGAAT TCAACGTTCG GAGTGCACTC CGAACGACAG AGCACACGAT ATTGGAAAGC ACACGATCGA  GCGCACCGCT TGGTCATGTG CTTTCCAATT TACTGTCGAC AAATTCTTAT GAAGTGATCA ACAAAACTTT ATGGGTTTCA TCCTATCATG GGACCGAATC TTCTGCAGAA AACCTGGAAC 
GAACTTCGTC TGTGAATAAA ACCTTCGATT TACTACAATG TTAAATGCTC TCATATTACC ATCAAATAGA TCAATCTTGG TGTCG 

Retrieve as FASTA