Entry information : MpPrx175 (Mapoly0009s0185 / Mp7g15010)
Entry ID 7347
Creation 2010-05-18 (Catherine Mathe)
Last sequence changes 2017-11-21 (Christophe Dunand)
Sequence status complete
Reviewer Not yet reviewed
Last annotation changes 2017-11-21 (Christophe Dunand)
Peroxidase information: MpPrx175 (Mapoly0009s0185 / Mp7g15010)
Name (synonym) MpPrx175 (Mapoly0009s0185 / Mp7g15010)
Class Class III peroxidase    [Orthogroup: Prx036]
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 MpPrx175
start..stop
S start..stop
MpalPrx175 551 0 1..321 1..320
MpPrx184 382 1.37e-133 11..321 18..329
MpPrx174 378 3.44e-132 22..321 35..324
MpalPrx184 374 1.24e-130 1..321 1..329
Literature and cross-references MpPrx175 (Mapoly0009s0185 / Mp7g15010)
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:   BJ842526.1 [5' end]
Protein sequence: MpPrx175 (Mapoly0009s0185 / Mp7g15010)
Sequence Properties
first value : protein
second value (mature protein)
Length (aa):   %s   323 (301)
PWM (Da):   %s   34281.76 (31991.5) Transmb domain:   %s   i7-29o (i7-29o)
PI (pH):   %s   4.22 (4.25) Peptide Signal:   %s   cut: 23 range:23-323
Sequence
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Send to Peroxiscan
*.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
MASAQVLLVA LLLSISIFYA EGGALQYGFY GTSCPSAEGL VNSAVTAAIN DNKRTAAGLI RLLFHDCFVE GCDASILIDS TDGNTAEKDA TPNLTIQGFD VIDSAKASIE AVCPGIVSCA  DIVALAARDS VRQLAGISYQ VETGRRDGTV SLSSALSDFP SPLSDAQTLT QNFNAKGLSL EQMVVLSGAH SIGKAHCGAF SNRLYNFDST SNTDPSLDSS YAANLKAMCP ESNTNNETVT 
DLDLITPTTL DSQYYSNLIN NRGLLTSDQT LYTSSSTQQQ VILNANSYWW EDQFSDAMQA MGRIGVKTGS DGQIRQYCRV VKA 

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
ATGGCAAGTG CTCAGGTGCT ACTGGTGGCA CTTTTGTTGA GTATATCTAT TTTCTATGCC GAGGGAGGAG CCCTTCAATA CGGATTTTAC GGCACATCAT GTCCCAGTGC AGAGGGGCTA  GTGAACTCTG CAGTCACAGC TGCCATAAAT GACAACAAGC GAACAGCAGC GGGACTCATA CGACTATTGT TTCACGACTG CTTTGTAGAG GTGAGCCAAT ATGAAAAACA TAAAAAATCG  CCAGTCCAGA GCTTTTTTTG TTATTTTGTC GATTCTTGTA GTGACTTACT TTTTGGTACA AAATTGTCTT AATTAATCTT CTTAAACCAG TGGCTCAGAC TTCAATTTGA TCAAGTTCTT  GGCACTACGG AATCTGGGAC AACGACATTC AGCGTAACGG AAGAGTATAA GCACAAGTTT GTCACTAATC ATCTTTTCGT CATCCAGGGA TGCGATGCTT CGATTCTGAT CGATTCAACT  GATGGAAACA CAGCTGAAAA GGATGCCACT CCAAACCTCA CCATCCAGGG GTTTGATGTT ATAGACTCTG CCAAGGCCAG CATCGAAGCC GTATGTCCCG GCATTGTCTC CTGCGCCGAC  ATAGTTGCCC TTGCCGCCAG GGACAGTGTC AGACAGGTAC CAACACTTAT ATTAAGCTGC ACTGCAACTT CAGCTATTTC CGAGTTCGCA TACGTAGACC TTTTCTACGA TAATGAATAC  GATTTTCTGC AATACCACGA TAGATTCAGG ACGTACAATT CATGGCATTC TTTCTCTGCC CGAATCGAAT TTGACTTGGA GTGATCACTT TTGAACAGCT TGCAGGTATA TCTTATCAAG  TGGAGACTGG TCGGAGGGAT GGAACGGTTT CACTAAGCTC AGCACTTTCT GACTTTCCAT CTCCTCTAAG CGACGCACAG ACTCTCACCC AAAACTTCAA CGCCAAAGGG CTGTCTCTGG  AGCAGATGGT TGTTCTTTCA GGCAAGTTCA TATTTCGTTT TCAGGACAAT TAGTTGCAGC TGGAGATCTA TGCATGACAA AGCCGGAGAT GCACTTCAAA ACTAAAAGTT CAGAACCAAA  GTTCGGCGTT GAATTTAGGC ACATTGGATC TGCTGGCCTC ACAATCTGCT CAATTATGCA GCCGCTCGAG AAAATATCGC GATTGTTTCG CTAGGTCCTA TAAAATTACA GAACAGCTTC  TACCATATCG TATTACATGT GTAGTAAGTA CTTCGTCAAC TGGTTGTTCA AAGGACTGAC ATATGTGAGC CGTTGTTTTC TCCAGGAGCA CATTCCATTG GCAAGGCTCA TTGTGGGGCA  TTCAGCAACC GATTGTACAA CTTCGACAGT ACTTCGAACA CCGACCCAAG CCTAGACTCG TCGTATGCAG CGAATTTGAA GGCCATGTGC CCAGAGTCTA ATACCAATAA CGAAACTGTG  ACCGACCTGG ATCTGATCAC GCCTACGACG TTGGACAGTC AGTACTACAG CAATCTGATC AACAACAGGG GTTTGCTGAC TTCTGATCAA ACGCTCTACA CATCTTCCAG CACTCAGCAG  CAGGTCATCC TCAATGCCAA CTCCTACTGG TGGGAGGACC AATTTTCGGA CGCTATGCAA GCCATGGGTC GCATCGGAGT GAAGACTGGC TCAGATGGTC AGATTCGCCA ATACTGCCGT 
GTAGTTAAAG CCTAA 

Retrieve as FASTA  
CDS
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGGCAAGTG CTCAGGTGCT ACTGGTGGCA CTTTTGTTGA GTATATCTAT TTTCTATGCC GAGGGAGGAG CCCTTCAATA CGGATTTTAC GGCACATCAT GTCCCAGTGC AGAGGGGCTA  GTGAACTCTG CAGTCACAGC TGCCATAAAT GACAACAAGC GAACAGCAGC GGGACTCATA CGACTATTGT TTCACGACTG CTTTGTAGAG GGATGCGATG CTTCGATTCT GATCGATTCA  ACTGATGGAA ACACAGCTGA AAAGGATGCC ACTCCAAACC TCACCATCCA GGGGTTTGAT GTTATAGACT CTGCCAAGGC CAGCATCGAA GCCGTATGTC CCGGCATTGT CTCCTGCGCC  GACATAGTTG CCCTTGCCGC CAGGGACAGT GTCAGACAGC TTGCAGGTAT ATCTTATCAA GTGGAGACTG GTCGGAGGGA TGGAACGGTT TCACTAAGCT CAGCACTTTC TGACTTTCCA  TCTCCTCTAA GCGACGCACA GACTCTCACC CAAAACTTCA ACGCCAAAGG GCTGTCTCTG GAGCAGATGG TTGTTCTTTC AGGAGCACAT TCCATTGGCA AGGCTCATTG TGGGGCATTC  AGCAACCGAT TGTACAACTT CGACAGTACT TCGAACACCG ACCCAAGCCT AGACTCGTCG TATGCAGCGA ATTTGAAGGC CATGTGCCCA GAGTCTAATA CCAATAACGA AACTGTGACC  GACCTGGATC TGATCACGCC TACGACGTTG GACAGTCAGT ACTACAGCAA TCTGATCAAC AACAGGGGTT TGCTGACTTC TGATCAAACG CTCTACACAT CTTCCAGCAC TCAGCAGCAG  GTCATCCTCA ATGCCAACTC CTACTGGTGG GAGGACCAAT TTTCGGACGC TATGCAAGCC ATGGGTCGCA TCGGAGTGAA GACTGGCTCA GATGGTCAGA TTCGCCAATA CTGCCGTGTA 
GTTAAAGCCT AA 

Retrieve as FASTA  
cDNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
CATTCATCTT CGTCTACCAG TCGTCCAAGG TATTGAACTT GCTTCGGCCA GAAGAGCAAG CTTGGATTCC GGATCAATCA CGAGCTTTGT ACTGGATTCT GTACCTCAGT TAGAGGCTTT  TATCCACTGC TGTCATACGA CACGCGCGAT CACTGAAGCA CACGTGCTTC TTCTACACCT ATATTACTTT GAGGAACATT TTGCCTGTAG TCTGCACGTG AAGAGCGAGC AAATTGTTGT  TGATATCATC GCTGAAAGTT CAAAAGGGTC GAGGGGCTTG ATTGGCACAG CCAGTACTAT GGCAAGTGCT CAGGTGCTAC TGGTGGCACT TTTGTTGAGT ATATCTATTT TCTATGCCGA  GGGAGGAGCC CTTCAATACG GATTTTACGG CACATCATGT CCCAGTGCAG AGGGGCTAGT GAACTCTGCA GTCACAGCTG CCATAAATGA CAACAAGCGA ACAGCAGCGG GACTCATACG  ACTATTGTTT CACGACTGCT TTGTAGAGGG ATGCGATGCT TCGATTCTGA TCGATTCAAC TGATGGAAAC ACAGCTGAAA AGGATGCCAC TCCAAACCTC ACCATCCAGG GGTTTGATGT  TATAGACTCT GCCAAGGCCA GCATCGAAGC CGTATGTCCC GGCATTGTCT CCTGCGCCGA CATAGTTGCC CTTGCCGCCA GGGACAGTGT CAGACAGCTT GCAGGTATAT CTTATCAAGT  GGAGACTGGT CGGAGGGATG GAACGGTTTC ACTAAGCTCA GCACTTTCTG ACTTTCCATC TCCTCTAAGC GACGCACAGA CTCTCACCCA AAACTTCAAC GCCAAAGGGC TGTCTCTGGA  GCAGATGGTT GTTCTTTCAG GAGCACATTC CATTGGCAAG GCTCATTGTG GGGCATTCAG CAACCGATTG TACAACTTCG ACAGTACTTC GAACACCGAC CCAAGCCTAG ACTCGTCGTA  TGCAGCGAAT TTGAAGGCCA TGTGCCCAGA GTCTAATACC AATAACGAAA CTGTGACCGA CCTGGATCTG ATCACGCCTA CGACGTTGGA CAGTCAGTAC TACAGCAATC TGATCAACAA  CAGGGGTTTG CTGACTTCTG ATCAAACGCT CTACACATCT TCCAGCACTC AGCAGCAGGT CATCCTCAAT GCCAACTCCT ACTGGTGGGA GGACCAATTT TCGGACGCTA TGCAAGCCAT  GGGTCGCATC GGAGTGAAGA CTGGCTCAGA TGGTCAGATT CGCCAATACT GCCGTGTAGT TAAAGCCTAA CATTCAAAAG CAAGCAGTCC CGCTCGTGTA CAGAATTGTT TTGGCCTGAT  ATAAGGACCG ACAGATTTTA TCCTGTATCC TCCACAAAGG GAGGTAACCC ACATCGGAGG ATTACCTATT TGATGGACTG ATTCTCTCCC CGTTCACAAG CTGATGTGAA TCACATGTCC  CTCATCAAGA TTCGAAGGAG ACTATTGCAC TGCGAAAGTT ACTCCAAAGC TGCCACTGCA GTTGTTTGCT AGCCTAATCA TGAGGATAAA GATCCTCAGA GCTTTTCAGT GATCATTACT  TCTTATGTTT CTTTCATATT AATAGTCATT GTTTTGGGCC GAGATTCTCA AATCGGGCCC CTCTTCGATT GACCCAGTCA GCTGAAGCTT GAAGAACGAC ATGCACTGTA CGAGCATCAG  CAGATTGTGA TTCATGCTCT TTGGAATGTC AAGGAGTTGT GCAATTCTGA GCAAAAGTGC GCTCTATTTA CTCCTGTAAC GGTCGGGCTG TTCAACCAGC TCATGAAGAA ATTATAATTG 

Retrieve as FASTA