Entry information : MpPrx123(Mapoly0196s0011 / Mp5g17140)
Entry ID 7379
Creation 2017-11-22 (Christophe Dunand)
Last sequence changes 2017-11-22 (Christophe Dunand)
Sequence status complete
Reviewer Not yet reviewed
Last annotation changes 2021-04-20 (Christophe Dunand)
Peroxidase information: MpPrx123(Mapoly0196s0011 / Mp5g17140)
Name MpPrx123(Mapoly0196s0011 / Mp5g17140)
Class Class III peroxidase    [Orthogroup: Prx405]
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 MpPrx123
start..stop
S start..stop
MpalPrx123 629 0 1..324 1..324
MpalPrx136 441 3.61e-157 1..324 1..323
MpPrx136 441 6.46e-157 10..325 6..324
MpPrx122 439 2.3e-156 10..325 11..328
Literature and cross-references MpPrx123(Mapoly0196s0011 / Mp5g17140)
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:   BJ840940.1 [Fragment]
Protein sequence: MpPrx123(Mapoly0196s0011 / Mp5g17140)
Sequence Properties
first value : protein
second value (mature protein)
Length (aa):   %s   324 (298)
PWM (Da):   %s   34833.76 (32117.3)  
PI (pH):   %s   9.14 (9.30) Peptide Signal:   %s   cut: 27 range:27-324
Sequence
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Send to Peroxiscan
*.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
MTSSSLIKCV LLSIGAILLV TSSVDAQLST TFYASKCPNV TAKVADVIKG WIKSDRQMGP ALLRLYFHDC FVRGCDASVL LDGSQSEKQA AGNLNSLRGF NIIDDVKAKV EAMCPGVVSC  ADILALSAKE AMAAFGGITW TVTLGRRDGI VSSVTEGNSD LPPPFANFTQ LVSMFAKKGL TMKDMVILSG AHTVGLTRCA TMQSRLYSFS SLTPTDPTIE PSFATTLKKQ CKQGDQNTII 
KMDQSKTTDT WDFNFYSNVI KGKVVFQSDQ ALRTDSAAFQ IVQAQNKAGG PFNSEFQAAM LKLGNIGVLT GNQGQIRKKC NKIN* 

Retrieve as FASTA  
Remarks Complete sequence from genomic and 1 EST. Strain="E". Specific peptide found in cell wall proteome + N-glycoproteome.
DNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGACGAGCT CCAGCTTGAT CAAGTGTGTT CTACTTTCCA TTGGAGCTAT TCTACTCGTC ACCAGTTCTG TGGACGCCCA ACTATCTACT ACATTCTACG CATCCAAATG CCCCAACGTC  ACGGCCAAAG TCGCTGATGT GATAAAAGGA TGGATTAAAA GCGATAGGCA AATGGGACCG GCCCTCCTGC GCCTTTACTT CCACGACTGC TTTGTTCGGG TACTTGTGAT CTACGCTCGG  TGAATTTCTT AAGAGCGAAT GAACAGACTG TCTATTTCAC TGAGCTATTG CTAGATTTGG CGCAGAAGGG TTCCTATTGT TGTTCTAGCT TCTGAATATA TTTCTCAAAT CATGCATGCA  TGTAAGACAA GGAAGTCTCA GGTGTCAAGG TTTGGAATAC AGCACTGAGC AAGATGTGGA CGATGTGACA GGGCTGTGAT GCGTCTGTTC TTTTAGACGG AAGTCAGAGC GAGAAGCAGG  CTGCAGGAAA CTTAAACTCT CTGCGTGGGT TCAACATTAT TGACGATGTC AAAGCTAAAG TCGAAGCTAT GTGCCCGGGA GTCGTCTCCT GCGCTGATAT ACTGGCCCTT TCGGCAAAAG  AAGCCATGGC AGCGGTAAAC TTCTGACTTG CTCTATTTTC TTCACTGGAG CTTTGAACTG GCAGTCATTG CAAATGCTTT CAGTGGGCTG TGGTCAGCAG TCGAGAGCTA TAGAGTACCG  TCGTATCGAG AAAATTCCTG AAAACCTGGA TGATTGTTGA ATCTGTTGAT ATGTATTCTT TTGCGCTCTC TATGGCAAAT CATCATAGTT TTGAATCACG AATAATGTTT AATCATGTTT  TTTAATCTGC AGTTCGGAGG AATCACATGG ACTGTTACCT TGGGTCGAAG GGATGGAATT GTCTCTTCGG TAACAGAAGG AAACAGCGAT TTGCCTCCTC CTTTTGCCAA TTTCACTCAA  TTGGTGTCGA TGTTTGCTAA GAAAGGGCTT ACAATGAAGG ACATGGTCAT TCTTTCTGGT GGGTGCTATC CTCGACATAA GTATCCATCT CTCATTCACA CCTGCAATGT TAATACTGCA  TGACTTATGA CTGTTATGCC GTAGTAACAC CAGCATCAAT AGTGGAAGCT CCACCTTCTT GTCACGTAGA GTAGCTTGGC ATATTCAGTT TCAAAAGTTT CTACTCCAAT GATTGATTTT  CGAGGTGCAT GTTGTAGCAT TTGAGATAAA GTCCAGGATT TTACAGGATC TGGAATGTAA CCTTCTCGTG GTTGCAACAT GGTCTCTATC TCCAACCGAT TCCAGTTCTG AAAGTGAAAT  TGTTTTGGAG TACGCAGGTG CCCACACCGT CGGCTTGACT CGCTGTGCGA CCATGCAGAG TCGGCTGTAC AGCTTTTCCT CATTGACACC CACTGATCCC ACAATCGAGC CGAGTTTCGC  CACCACGCTG AAGAAGCAGT GCAAACAGGG CGATCAGAAC ACAATCATCA AGATGGACCA GAGCAAGACA ACTGACACCT GGGACTTCAA TTTTTACTCG AACGTCATCA AAGGAAAGGT  CGTTTTTCAG TCCGACCAAG CCTTGAGGAC GGATTCCGCT GCCTTCCAGA TAGTGCAAGC CCAAAACAAG GCCGGGGGCC CCTTCAACTC AGAGTTCCAA GCTGCTATGT TGAAGTTGGG 
AAACATTGGC GTTCTCACGG GCAACCAAGG CCAAATTAGA AAGAAATGCA ACAAAATCAA CTGA 

Retrieve as FASTA  
CDS
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGACGAGCT CCAGCTTGAT CAAGTGTGTT CTACTTTCCA TTGGAGCTAT TCTACTCGTC ACCAGTTCTG TGGACGCCCA ACTATCTACT ACATTCTACG CATCCAAATG CCCCAACGTC  ACGGCCAAAG TCGCTGATGT GATAAAAGGA TGGATTAAAA GCGATAGGCA AATGGGACCG GCCCTCCTGC GCCTTTACTT CCACGACTGC TTTGTTCGGG GCTGTGATGC GTCTGTTCTT  TTAGACGGAA GTCAGAGCGA GAAGCAGGCT GCAGGAAACT TAAACTCTCT GCGTGGGTTC AACATTATTG ACGATGTCAA AGCTAAAGTC GAAGCTATGT GCCCGGGAGT CGTCTCCTGC  GCTGATATAC TGGCCCTTTC GGCAAAAGAA GCCATGGCAG CGTTCGGAGG AATCACATGG ACTGTTACCT TGGGTCGAAG GGATGGAATT GTCTCTTCGG TAACAGAAGG AAACAGCGAT  TTGCCTCCTC CTTTTGCCAA TTTCACTCAA TTGGTGTCGA TGTTTGCTAA GAAAGGGCTT ACAATGAAGG ACATGGTCAT TCTTTCTGGT GCCCACACCG TCGGCTTGAC TCGCTGTGCG  ACCATGCAGA GTCGGCTGTA CAGCTTTTCC TCATTGACAC CCACTGATCC CACAATCGAG CCGAGTTTCG CCACCACGCT GAAGAAGCAG TGCAAACAGG GCGATCAGAA CACAATCATC  AAGATGGACC AGAGCAAGAC AACTGACACC TGGGACTTCA ATTTTTACTC GAACGTCATC AAAGGAAAGG TCGTTTTTCA GTCCGACCAA GCCTTGAGGA CGGATTCCGC TGCCTTCCAG  ATAGTGCAAG CCCAAAACAA GGCCGGGGGC CCCTTCAACT CAGAGTTCCA AGCTGCTATG TTGAAGTTGG GAAACATTGG CGTTCTCACG GGCAACCAAG GCCAAATTAG AAAGAAATGC 
AACAAAATCA ACTGA 

Retrieve as FASTA  
cDNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
TTGAATACAA GTTCGAGTTC TGGAGATCTT CACCTCACTA TCTCTTCTCC AGACCCACAC CCAAATCCGC ACTCACTGCT CAGGGAGGTC CCAAAGGTTG CTCAGGTACA CTAAGGACAC  ATCCGTGGAC AGGCTCTCTC TCTCTCTATC TCTCTCTCTC TCTCTCTCTC TCTCTCTCTC CAGAACTCGA TGACGAGCTC CAGCTTGATC AAGTGTGTTC TACTTTCCAT TGGAGCTATT  CTACTCGTCA CCAGTTCTGT GGACGCCCAA CTATCTACTA CATTCTACGC ATCCAAATGC CCCAACGTCA CGGCCAAAGT CGCTGATGTG ATAAAAGGAT GGATTAAAAG CGATAGGCAA  ATGGGACCGG CCCTCCTGCG CCTTTACTTC CACGACTGCT TTGTTCGGGG CTGTGATGCG TCTGTTCTTT TAGACGGAAG TCAGAGCGAG AAGCAGGCTG CAGGAAACTT AAACTCTCTG  CGTGGGTTCA ACATTATTGA CGATGTCAAA GCTAAAGTCG AAGCTATGTG CCCGGGAGTC GTCTCCTGCG CTGATATACT GGCCCTTTCG GCAAAAGAAG CCATGGCAGC GTTCGGAGGA  ATCACATGGA CTGTTACCTT GGGTCGAAGG GATGGAATTG TCTCTTCGGT AACAGAAGGA AACAGCGATT TGCCTCCTCC TTTTGCCAAT TTCACTCAAT TGGTGTCGAT GTTTGCTAAG  AAAGGGCTTA CAATGAAGGA CATGGTCATT CTTTCTGGTG CCCACACCGT CGGCTTGACT CGCTGTGCGA CCATGCAGAG TCGGCTGTAC AGCTTTTCCT CATTGACACC CACTGATCCC  ACAATCGAGC CGAGTTTCGC CACCACGCTG AAGAAGCAGT GCAAACAGGG CGATCAGAAC ACAATCATCA AGATGGACCA GAGCAAGACA ACTGACACCT GGGACTTCAA TTTTTACTCG  AACGTCATCA AAGGAAAGGT CGTTTTTCAG TCCGACCAAG CCTTGAGGAC GGATTCCGCT GCCTTCCAGA TAGTGCAAGC CCAAAACAAG GCCGGGGGCC CCTTCAACTC AGAGTTCCAA  GCTGCTATGT TGAAGTTGGG AAACATTGGC GTTCTCACGG GCAACCAAGG CCAAATTAGA AAGAAATGCA ACAAAATCAA CTGATCGATC ATTAGTAAGC TAGAAGATCT CTGGGAGTCC  GCCTCGATCG CTTCACGATA CGGGAGCTGC GATGTGGAGA GATTTTTGCA CAATTAAATT GAACTTGTAG ACTCGAATGC AGGTGTTACT ACCTCTTGCT TCTGCAATCA AGGCAGCGCA  CCACTTAGAA ATCATCTAAT TATTCGTACA GGGGTTCAAA TCTGTACGTT TTGAAACTAA CCTGATCTTC TGACTAGTAT CTAAACTAGC TTATCTTCAC ATGTAGATAA GTGAACCTGT  CCTCATCAAC TAATTGCAAG AAAAATAGGG AGCATTGTCA ATTTTGACAT AATCATGCTA CTTTAAGACT GACAGTGGTA ACTAGTGAAA GTGATTCGTT CCATGCGCGA GCAGCATTTA 
GAGTGTCCTT CGCTAGTCAA ACAGAATCTG AAATTCATTT ATTAGAATTT CCGGAAAAAA CCGTAATAAA ACCTAGAATT TGCC 

Retrieve as FASTA