Entry information : MpPrx170(Mapoly0009s0083 / Mp7g13980)
Entry ID 6511
Creation 2010-05-17 (Catherine Mathe)
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: MpPrx170(Mapoly0009s0083 / Mp7g13980)
Name MpPrx170(Mapoly0009s0083 / Mp7g13980)
Class Class III peroxidase    [Orthogroup: Prx246]
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 MpPrx170
start..stop
S start..stop
MpalPrx170 633 0 1..333 1..333
PtPrx78 298 7.14e-101 19..333 4..321
CsPrx29 290 8.52e-98 38..333 16..314
MguPrx92 290 1.11e-97 38..333 20..319
Literature and cross-references MpPrx170(Mapoly0009s0083 / Mp7g13980)
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:   BJ853503.1 [5' end]  BJ870832.1 [3' end]  BJ856181.1 [Fragment]
Protein sequence: MpPrx170(Mapoly0009s0083 / Mp7g13980)
Sequence Properties
first value : protein
second value (mature protein)
Length (aa):   %s   333
PWM (Da):   %s   35319.83  
PI (pH):   %s   4.27
Sequence
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Send to Peroxiscan
*.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
MGRGRGSSTN MGLAQLSVLW LLSWQFQGLM IGVTSQVLST TFYDFTCPVA EQLVQNTVQQ AFLLDNTITA AIIRLLFHDC FVNGCDASIM LAGLNSEQVA VPNLTVRGYD VINNAKVQIE  AVCPGIVSCS DIIVLAARDS VGLLGGPTYD VALGRLDGLG PGNVVLPTPS DTVATSIGQF LFNGLTVADM VVLLGAHSVG QSQCQFFNNR LYNFNNSGFP DPSLNATFLA TLQGLCPQNG 
SGNANVPLDD QTEFVLDTDY YRTILDGRGL LTIDQDLVAD AGTRNVVDNL AGRASDLNLT FSSAFVAAMD KMSRIGLKTL IDGQVRRVCS AVN 

Retrieve as FASTA  
Remarks Complete sequence from genomic and 19 ESTs. 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
ATGGGCAGGG GAAGAGGATC GTCGACGAAT ATGGGACTCG CTCAATTGAG CGTTCTATGG TTGTTGAGCT GGCAGTTCCA GGGGCTCATG ATCGGCGTCA CTTCCCAAGT TCTGTCCACC  ACTTTCTACG ATTTCACTTG CCCCGTGGCC GAACAATTGG TCCAGAACAC CGTGCAGCAA GCGTTTCTCC TCGACAACAC CATCACCGCC GCCATCATTC GACTTCTGTT CCACGACTGC  TTCGTCAATG TAAATTCTCC CTCCGCCTCC TCCCATCTCC ACTCCCCTCT CAGCATCCCC TCAGTTCCCT CAGAATCTCG TGCTCCTTCC ATTCCATTCT CATCAGGGTA CTCCGAACCT  GCGAATTTCC TCACTCTCCT GTCTGTAGCT CCGGTTCTCA TCGGAAGCTC GCCCATTCGA TCAATGCATG GCTAGAGGAA AGTCCTAATG GCCCAAAAAT TCAACCGCGT GTCATGAATG  TCGACGAATG CAGCGTCATT CGTGCCCTCT GCGCTGCCTC CAGTCGCAGC TATCAATTAA CTTCAGAGTA TTCGAGAGCT GGACTTTGGT TGTTCTGTTT CTGTGTGCTG TCAAGAGGGA  CGACTGGAGA GTCGGAATCG GCTGATAATA ATCGGAAAGC TCTGGCTCTG GCTCTGGCTC TCTGGCGCAG GGATGTGACG CGTCCATTAT GCTGGCGGGG CTCAACAGCG AGCAAGTTGC  CGTGCCCAAT CTCACCGTGC GAGGCTACGA CGTGATCAAC AACGCCAAAG TACAGATCGA GGCCGTCTGC CCGGGAATCG TCTCGTGCTC GGACATTATC GTCCTCGCTG CTCGGGATTC  CGTAGGTCTG GTAAGCAACC GCATGCACCG CATCCCTTGG CGCTTTGTTT TGGAACTCTG AGCTGCACTG CACTGCAATG CAATGCAATG GATTGGAATG GAATGCAATG GAATTCGTGA  TCCGGGGGCT AATTCAGACT CGTCTGCCGC CGCCGCTGCT GCTGCATTGC GGGCGAACAG CTCGGAGGGC CGACGTACGA CGTCGCGCTG GGGCGACTGG ACGGACTTGG GCCGGGGAAC  GTGGTGCTGC CGACGCCGTC CGACACGGTG GCCACGTCCA TCGGCCAATT CCTCTTCAAC GGGCTCACGG TGGCGGACAT GGTCGTCCTT CTAGGTGAGT CAGCACACTG CCCTTGCTTG  CCCTCGTCGC ATGAATGCCC GTCGGCCCGT CCACGCACGC AATGCTGTCT GTCGATGAGC AGAGGTGGCA TCGAGGACAT GGCACGGCAC GGAAGCTGAC GGCGCGGGCG GTGGTGCTGT  GCAGGGGCGC ATTCGGTGGG GCAGTCGCAG TGCCAGTTCT TCAACAACCG GCTCTACAAC TTCAACAACA GCGGGTTTCC GGACCCGAGC CTGAACGCAA CGTTCCTGGC GACGCTGCAG  GGCCTGTGCC CGCAGAACGG GTCGGGCAAC GCCAACGTGC CACTGGACGA CCAGACGGAG TTCGTTCTGG ACACCGACTA CTACCGCACG ATTCTGGACG GGCGCGGGCT GCTGACCATC  GATCAGGACC TGGTGGCCGA CGCCGGCACG CGCAACGTGG TGGACAACTT GGCCGGCCGC GCCAGCGACC TCAACCTCAC CTTCTCCTCC GCCTTCGTCG CGGCCATGGA CAAGATGTCG 
CGCATCGGCC TCAAGACGCT CATCGACGGC CAGGTCCGCC GCGTCTGCTC CGCCGTCAAC TGA 

Retrieve as FASTA  
CDS
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGGGCAGGG GAAGAGGATC GTCGACGAAT ATGGGACTCG CTCAATTGAG CGTTCTATGG TTGTTGAGCT GGCAGTTCCA GGGGCTCATG ATCGGCGTCA CTTCCCAAGT TCTGTCCACC  ACTTTCTACG ATTTCACTTG CCCCGTGGCC GAACAATTGG TCCAGAACAC CGTGCAGCAA GCGTTTCTCC TCGACAACAC CATCACCGCC GCCATCATTC GACTTCTGTT CCACGACTGC  TTCGTCAATG GATGTGACGC GTCCATTATG CTGGCGGGGC TCAACAGCGA GCAAGTTGCC GTGCCCAATC TCACCGTGCG AGGCTACGAC GTGATCAACA ACGCCAAAGT ACAGATCGAG  GCCGTCTGCC CGGGAATCGT CTCGTGCTCG GACATTATCG TCCTCGCTGC TCGGGATTCC GTAGGTCTGC TCGGAGGGCC GACGTACGAC GTCGCGCTGG GGCGACTGGA CGGACTTGGG  CCGGGGAACG TGGTGCTGCC GACGCCGTCC GACACGGTGG CCACGTCCAT CGGCCAATTC CTCTTCAACG GGCTCACGGT GGCGGACATG GTCGTCCTTC TAGGGGCGCA TTCGGTGGGG  CAGTCGCAGT GCCAGTTCTT CAACAACCGG CTCTACAACT TCAACAACAG CGGGTTTCCG GACCCGAGCC TGAACGCAAC GTTCCTGGCG ACGCTGCAGG GCCTGTGCCC GCAGAACGGG  TCGGGCAACG CCAACGTGCC ACTGGACGAC CAGACGGAGT TCGTTCTGGA CACCGACTAC TACCGCACGA TTCTGGACGG GCGCGGGCTG CTGACCATCG ATCAGGACCT GGTGGCCGAC  GCCGGCACGC GCAACGTGGT GGACAACTTG GCCGGCCGCG CCAGCGACCT CAACCTCACC TTCTCCTCCG CCTTCGTCGC GGCCATGGAC AAGATGTCGC GCATCGGCCT CAAGACGCTC 
ATCGACGGCC AGGTCCGCCG CGTCTGCTCC GCCGTCAACT GA 

Retrieve as FASTA  
cDNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
GCTCTGCTCT GTTGTCACAC ATACCCATCC GCATGCAGCA GCAGCAGCAG CAGCGAGCTG ACGGAAGGAC CACAAGTCTC ATTCCGAAGG GTATCTACAA CTCGATCCAT CCATCAGCAA  TCCGATCATC TCCAAGAGCA GGTCGACGAG GCGAGTCCTG ATAATTGGGC TCGGAGTCTG AGACGGGGAG AGGAGAATTG GGCGAGAGCG GCGAGGAAGA AAAGAAAATT CAGTGGATCG  AGGCATCCGC GAACGATGGG CAGGGGAAGA GGATCGTCGA CGAATATGGG ACTCGCTCAA TTGAGCGTTC TATGGTTGTT GAGCTGGCAG TTCCAGGGGC TCATGATCGG CGTCACTTCC  CAAGTTCTGT CCACCACTTT CTACGATTTC ACTTGCCCCG TGGCCGAACA ATTGGTCCAG AACACCGTGC AGCAAGCGTT TCTCCTCGAC AACACCATCA CCGCCGCCAT CATTCGACTT  CTGTTCCACG ACTGCTTCGT CAATGGATGT GACGCGTCCA TTATGCTGGC GGGGCTCAAC AGCGAGCAAG TTGCCGTGCC CAATCTCACC GTGCGAGGCT ACGACGTGAT CAACAACGCC  AAAGTACAGA TCGAGGCCGT CTGCCCGGGA ATCGTCTCGT GCTCGGACAT TATCGTCCTC GCTGCTCGGG ATTCCGTAGG TCTGCTCGGA GGGCCGACGT ACGACGTCGC GCTGGGGCGA  CTGGACGGAC TTGGGCCGGG GAACGTGGTG CTGCCGACGC CGTCCGACAC GGTGGCCACG TCCATCGGCC AATTCCTCTT CAACGGGCTC ACGGTGGCGG ACATGGTCGT CCTTCTAGGG  GCGCATTCGG TGGGGCAGTC GCAGTGCCAG TTCTTCAACA ACCGGCTCTA CAACTTCAAC AACAGCGGGT TTCCGGACCC GAGCCTGAAC GCAACGTTCC TGGCGACGCT GCAGGGCCTG  TGCCCGCAGA ACGGGTCGGG CAACGCCAAC GTGCCACTGG ACGACCAGAC GGAGTTCGTT CTGGACACCG ACTACTACCG CACGATTCTG GACGGGCGCG GGCTGCTGAC CATCGATCAG  GACCTGGTGG CCGACGCCGG CACGCGCAAC GTGGTGGACA ACTTGGCCGG CCGCGCCAGC GACCTCAACC TCACCTTCTC CTCCGCCTTC GTCGCGGCCA TGGACAAGAT GTCGCGCATC  GGCCTCAAGA CGCTCATCGA CGGCCAGGTC CGCCGCGTCT GCTCCGCCGT CAACTGATTC TCGCCCCCCA CATTTTTGCT CCGCTGTGTC TCCATTCTCT CCCTCCCTCC CTCATGCTCC  TGCTCTCATC CCTCGGCTGC CACACGCTTC ATGCCGCCTT CTCATTTTTC TTCTCGGTGC TTTGGATTTC GGATCTTCAT TTCGGATCCG AGCCTGCATT TCGATTGTCT ACGGGAGGAC  ACCCAATCTG CGCACATGAC AGATCTTTGT AACTATAGAT TGCCCAGAGA TTTTCGAGCA ATAATTTTTA CGCAGTTCCT TCTTACTTGT ATATCTGAGG AATAAAACTT TAGCGAAATT  TGAGAGAGAG AGAGAGAGAG GATCAGTTGC TTGGAGTGCG TGCGCGAGTA CATATGCAAG AAGCTCGAGA ATGGTGCGCG CACACAATTA GGTGCTATAG AAGAAGAAGG CAGCAGATAT  TGTAGGACAT TGGCGAGTCG TGTGGGTGGG TACTTCCGCA CGAGCATGCA GAACGACGAA GAGGACGACG ACGAACCCGC AAAATTGAAT CTGAGCTCGA ATTCnACTCG ACnATTATTG  ATTGATTCAG CTGAGAAGTG CCTCGGCGGA CTATGAAGGA ACCGACGAAC GACGACTTAT CGAAAACTTA GACGAGAAAT TGATCGACGA CATACGGAAC GAGAGAACGA ATTGAGTTAA  TTAGCCTTCG AGTGTACTAT GTGCGTCCAC GGACGGACGA TCGGATGAGT CCGGAGGACT TGACTGACTG ACAATCAGAC AGCAGCCTCC TCCCCGGCGG CTGGTCCGGT CTGATCTGGG 
CTTCCTATTT GAGTAAAGCT ATTTCCACTC GATTCATCCC CTAAAAAAAA AA 

Retrieve as FASTA