Entry information : MpPrx14 (Mapoly0009s0184)
Entry ID 6482
Creation 2009-01-19 (Christophe Dunand)
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: MpPrx14 (Mapoly0009s0184)
Name (synonym) MpPrx14 (Mapoly0009s0184)
Class Class III peroxidase    [Orthogroup: Prx007]
Taxonomy Eukaryota Viridiplantae Streptophyta Marchantiaceae Marchantia
Organism Marchantia polymorpha    [TaxId: 3197 ]
Cellular localisation N/D
Tissue types Reproductive organs
Thallus
Inducer N/D
Repressor N/D
Best BLASTp hits
Perox score E-value MpPrx14
start..stop
S start..stop
MpPrx15 377 4e-132 35..324 22..321
MpPrx18 356 2e-123 18..325 7..330
TsPrx71 314 4e-107 34..325 30..327
BrPrx71-1Aa_other 313 1e-106 35..325 32..328
Literature and cross-references MpPrx14 (Mapoly0009s0184)
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:   BJ842248 [5' end]   BJ860761 [3' end]   BJ851009 [Fragment]   BJ862124 [Fragment]
Protein sequence: MpPrx14 (Mapoly0009s0184)
Sequence Properties
first value : protein
second value (mature protein)
Length (aa):   %s   325 (298)
PWM (Da):   %s   33857.16 (30853.6) Transmb domain:   %s   i12-34o (i12-34o)
PI (pH):   %s   7.31 (6.25) Peptide Signal:   %s   cut: 28 range:28-325
Sequence
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Send to Peroxiscan
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MATRIKIMPQ SMFAIIMLLS SMHLASTNVQ GAFGGGGLQI GFYALTCPSA EFLVKSAVSS ALSSNRRTGA GLIRLLFHDC FVEGCDASVL LDGPNTEKTA QPNLSLHGFE VIDAAKAAIE  AVCPGVVSCA DIVAIAARDS VSLLGGTPYL VETGRKDGTV SVAANTNDIP SPLNDAAALI SSFAKKGLST SQMVILSGAH TVGKAQCGAF LNRLYPTVDP TLDPAYAAQL IAQCPQNGDA 
TVLNDLDPTT PLQMDSNYYK NLIQSRGLLT SDQTLYTSGA TKGFVLGNAN FFWSPSFSQA IQAMGRIGVK TGASGEIRRT CRSIN 

Retrieve as FASTA  
Remarks Complete sequence from genomic and 10 ESTs (BJ847336, BJ857112, BJ846506, BJ870126). Strain="E"
DNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGGCGACTA GAATAAAAAT TATGCCCCAG AGCATGTTCG CCATTATTAT GCTCCTGTCG AGCATGCACC TGGCGTCTAC CAATGTGCAA GGAGCATTCG GGGGAGGGGG ACTTCAAATT  GGATTCTACG CCTTGACATG TCCTTCTGCT GAGTTTTTGG TAAAATCGGC TGTCTCCAGT GCTCTCAGCT CCAACAGAAG AACGGGCGCC GGTCTCATCC GTCTTCTCTT CCACGACTGC  TTCGTCGAGG TGCGTGGCAT TCATGAACTC TGCTCCCTGT CTGCATGAGG GAACCGGACG TGAGAATCGA ACGAGGGTCT TGACTGTGAG TGGGAAGCAC AAAATTGTGT GGACTGCAGA  ATCAGTTCGA CGGAATCTCT GTAAACAAAA AAAATGGAGA AAGTCGAATG ATTTCGAGCT CGCTGCCTAT ATCTTGAGTC CTGAGGTTTG CACCTTGAAA ATCGATGGGT GAAGAACTCG  GACTCATTGG CCAACCATTT GGGGGCAGCT GGACGGAGGG GAAGGCGTTA TGAAATTGCT GTCAGCATGA AAACGAGGAT TGTGTAACTG GATCAATTCA TCTGGACGAT GTGTCTCATT  GATTCCAACT GTTTATTGAA TTCATGTCTG CTTGATGAAC CAGGGATGTG ATGCATCTGT TCTGCTCGAC GGGCCGAATA CCGAGAAAAC TGCACAACCC AATCTTTCGC TGCATGGATT  TGAAGTCATC GACGCTGCCA AGGCCGCAAT TGAGGCCGTC TGCCCGGGCG TGGTCTCGTG TGCTGACATC GTAGCCATCG CTGCTCGAGA CAGTGTTTCT CTGGTACGTG CCGGATTTGA  GTCTTTCACT TCTGCTCCAA CCTATCAAAC AATTCCATCG GGCTTGCATG ACTGATTCTT CAAAATCATT TTCAAGTTGT TCATGACTCG TATGTTCTGC CATGTACGTG CAGCTCGGAG  GCACTCCTTA CCTCGTTGAG ACAGGCCGTA AGGACGGAAC TGTATCAGTG GCCGCGAACA CAAACGACAT TCCGTCTCCT CTGAACGACG CAGCGGCTCT GATCAGCAGT TTCGCCAAGA  AGGGACTCAG TACAAGCCAG ATGGTCATCC TTTCAGGTAC GAAAAAATAG ACTCGAGGAT ACTCGAGTGT CAGTCTACCT TCGCCCAAAT CTAAATTGAC CATTACCTTC GACAACTCTT  GCCAGCAACT CTGTCGGTGG TCGTTGATCC CACTTGCTGC CGCAGTGATC TGGATCTAGA GCCTACTCGA TTCTTCCTCT TGTATTGTTC TGCATCGAAC GAATGCAGGA ATTAGATTTC  GTTAGACTTC TCGGTCACCC GTGAAGGAAT CAGACTTTTG TCGATAACTT AAAGATGATA ATTCTACTGA CAGCAGTTCT GGTTTGATAA CAATTACACA TATAATGAAT GCAGAGGCTA  AATCAAGTGT CCTCGGAGCT TCTGTTTGCT AGCATTGATG AGGTGAAGGT GCTCATGTTG TGCAGGCGCT CACACGGTGG GAAAAGCACA ATGCGGGGCT TTCCTGAACC GTCTGTACCC  GACCGTCGAC CCCACGCTCG ACCCCGCCTA CGCAGCGCAA TTGATCGCTC AATGCCCTCA GAACGGAGAC GCCACCGTGC TCAACGATTT GGACCCAACT ACGCCTCTGC AGATGGACAG  CAACTACTAC AAAAACCTCA TCCAGAGCAG AGGTCTGCTC ACCTCCGATC AAACTTTGTA CACATCGGGA GCCACCAAAG GTTTCGTACT CGGCAATGCC AACTTCTTCT GGTCGCCCAG 
CTTCTCGCAG GCCATTCAAG CCATGGGTCG CATCGGAGTG AAGACTGGTG CCAGTGGTGA GATTCGCAGA ACCTGCCGCT CTATCAACTA A 

Retrieve as FASTA  
CDS
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGGCGACTA GAATAAAAAT TATGCCCCAG AGCATGTTCG CCATTATTAT GCTCCTGTCG AGCATGCACC TGGCGTCTAC CAATGTGCAA GGAGCATTCG GGGGAGGGGG ACTTCAAATT  GGATTCTACG CCTTGACATG TCCTTCTGCT GAGTTTTTGG TAAAATCGGC TGTCTCCAGT GCTCTCAGCT CCAACAGAAG AACGGGCGCC GGTCTCATCC GTCTTCTCTT CCACGACTGC  TTCGTCGAGG GATGTGATGC ATCTGTTCTG CTCGACGGGC CGAATACCGA GAAAACTGCA CAACCCAATC TTTCGCTGCA TGGATTTGAA GTCATCGACG CTGCCAAGGC CGCAATTGAG  GCCGTCTGCC CGGGCGTGGT CTCGTGTGCT GACATCGTAG CCATCGCTGC TCGAGACAGT GTTTCTCTGC TCGGAGGCAC TCCTTACCTC GTTGAGACAG GCCGTAAGGA CGGAACTGTA  TCAGTGGCCG CGAACACAAA CGACATTCCG TCTCCTCTGA ACGACGCAGC GGCTCTGATC AGCAGTTTCG CCAAGAAGGG ACTCAGTACA AGCCAGATGG TCATCCTTTC AGGCGCTCAC  ACGGTGGGAA AAGCACAATG CGGGGCTTTC CTGAACCGTC TGTACCCGAC CGTCGACCCC ACGCTCGACC CCGCCTACGC AGCGCAATTG ATCGCTCAAT GCCCTCAGAA CGGAGACGCC  ACCGTGCTCA ACGATTTGGA CCCAACTACG CCTCTGCAGA TGGACAGCAA CTACTACAAA AACCTCATCC AGAGCAGAGG TCTGCTCACC TCCGATCAAA CTTTGTACAC ATCGGGAGCC  ACCAAAGGTT TCGTACTCGG CAATGCCAAC TTCTTCTGGT CGCCCAGCTT CTCGCAGGCC ATTCAAGCCA TGGGTCGCAT CGGAGTGAAG ACTGGTGCCA GTGGTGAGAT TCGCAGAACC 
TGCCGCTCTA TCAACTAA 

Retrieve as FASTA  
cDNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
GTGCAGATTC TCGAAGAGCT TGAAGTTTTC AAAAGTTGTT CTTTCTGATG ACCACTGGAA TCAGTCCACG TGCTGTTGGT CGTCCAGAAA TCAGGATCGG TATTATTATG CCAAAGCTTA  AAAATGTTCC CACGATCTTA GCCGTGAGCC ATCTTGAGTG ATACTGCTCT TCCTTGGGAA GACATCCAAA CTTGTCCTCG GTTTGGAGGA ATGCTTTCCG AGTCCAACAC GTTTGACCTC  GTTTCTTGCA ACTTTGGATC TAGTGGGACG AAGAGCGGCA TCTTCTGCGA CCTCCACACT TGCTCTCTCT CTCGCTCTAT GCTCTGCTCT GTGGAGTCTG ATGGCAACTA TATATCTCAG  TAGCAGCTGA CATTGGTACT CACTCATTGG CCACTCATGC AACCTGACAG CGACTTTACG TTACTGTCGT CTGATCATCT TTCTGACCAT TCCTCCTGAA GCAAGAGGAG TCTGGCAGAC  GTAGCCTTCA GCTGCTCGTG GCACTGAAGC TCTCGATCCC CAGGGGAAAC CAGAGCTGCC CACTTTTTGA GCCGCCTCGC CTCGATACGA TCAGTGGTGC GGAATTAAGC CACAAGATCT  GCGGAATCTC GAGCTTCTCA GTTTAGAATG GCGACTAGAA TAAAAATTAT GCCCCAGAGC ATGTTCGCCA TTATTATGCT CCTGTCGAGC ATGCACCTGG CGTCTACCAA TGTGCAAGGA  GCATTCGGGG GAGGGGGACT TCAAATTGGA TTCTACGCCT TGACATGTCC TTCTGCTGAG TTTTTGGTAA AATCGGCTGT CTCCAGTGCT CTCAGCTCCA ACAGAAGAAC GGGCGCCGGT  CTCATCCGTC TTCTCTTCCA CGACTGCTTC GTCGAGGGAT GTGATGCATC TGTTCTGCTC GACGGGCCGA ATACCGAGAA AACTGCACAA CCCAATCTTT CGCTGCATGG ATTTGAAGTC  ATCGACGCTG CCAAGGCCGC AATTGAGGCC GTCTGCCCGG GCGTGGTCTC GTGTGCTGAC ATCGTAGCCA TCGCTGCTCG AGACAGTGTT TCTCTGCTCG GAGGCACTCC TTACCTCGTT  GAGACAGGCC GTAAGGACGG AACTGTATCA GTGGCCGCGA ACACAAACGA CATTCCGTCT CCTCTGAACG ACGCAGCGGC TCTGATCAGC AGTTTCGCCA AGAAGGGACT CAGTACAAGC  CAGATGGTCA TCCTTTCAGG CGCTCACACG GTGGGAAAAG CACAATGCGG GGCTTTCCTG AACCGTCTGT ACCCGACCGT CGACCCCACG CTCGACCCCG CCTACGCAGC GCAATTGATC  GCTCAATGCC CTCAGAACGG AGACGCCACC GTGCTCAACG ATTTGGACCC AACTACGCCT CTGCAGATGG ACAGCAACTA CTACAAAAAC CTCATCCAGA GCAGAGGTCT GCTCACCTCC  GATCAAACTT TGTACACATC GGGAGCCACC AAAGGTTTCG TACTCGGCAA TGCCAACTTC TTCTGGTCGC CCAGCTTCTC GCAGGCCATT CAAGCCATGG GTCGCATCGG AGTGAAGACT  GGTGCCAGTG GTGAGATTCG CAGAACCTGC CGCTCTATCA ACTAAAATGA AGAAGGACTT CGTCGATAGA AACCTCCTTC AGTCTGTCTG CTAATGTCAA CTGCGACAGT CTCCCGATCT  CAGACACCGT CCCCGTCCAG CCAAGTTTTC TATTTACTCT CTGCATCTCA TGTTTGTAGC GAACGAGGTA TCGTTGCATT CAGCGACCTC TGGCATTACA GAATTAAATT CTCTAAATTC  TCATTAGAGA ATTTGTAGTT TTCCCTCTGA TTGTTGCATT AGTTCGGGTT GCACCATCGA CCATCAAATG TAAGTCTGTG GTCTTGTAGA GATTAAGTTT CGATAGCCTA GGACTTGTGT  GCACGAGCAG TTGTGCGACC TGCCGGTACA TAACCAAGTC GACAGGAACA GATTTCGATG GAAACCTGTT CCTGTCCTCG AGTTGGAATA CTTGAGACCG TACATAGTCA GGATGCCCAT 
TACAGGCTGT GTATATAAAG CTGATTTACA TTGTACGAAA GAGAACTGCT CGTTCAGCAG TATGTTTGTT TCTCCATCG 

Retrieve as FASTA