Entry information : MpPrx178(Mapoly0067s0040 / Mp7g19380)
Entry ID 7351
Creation 2010-05-25 (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: MpPrx178(Mapoly0067s0040 / Mp7g19380)
Name MpPrx178(Mapoly0067s0040 / Mp7g19380)
Class Class III peroxidase    [Orthogroup: Prx203]
Taxonomy Eukaryota Viridiplantae Streptophyta Marchantiaceae Marchantia
Organism Marchantia polymorpha    [TaxId: 3197 ]
Cellular localisation N/D
Tissue type Reproductive organs
Inducer N/D
Repressor N/D
Best BLASTp hits
Perox score E-value MpPrx178
start..stop
S start..stop
MpalPrx178 597 0 7..328 1..322
MpPrx177 441 2.82e-157 2..328 1..320
MpPrx179 351 1.88e-121 3..322 5..331
PtaPrx47 348 1.59e-120 9..322 7..317
Literature and cross-references MpPrx178(Mapoly0067s0040 / Mp7g19380)
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:   BJ863331.1 [3' end]  BJ860402.1 [Fragment]
Protein sequence: MpPrx178(Mapoly0067s0040 / Mp7g19380)
Sequence Properties
first value : protein
second value (mature protein)
Length (aa):   %s   328 (303)
PWM (Da):   %s   34503.98 (31664.5) Transmb domain:   %s   i13-32o (i13-32o)
PI (pH):   %s   4.37 (4.15) Peptide Signal:   %s   cut: 26 range:26-328
Sequence
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Send to Peroxiscan
*.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
MMARKKMNIC MPVLFVLIAA APAHAALTSN FYENTCPSVQ RIVQQIVAGA IANETRMGAS LLRLHFHDCF VNGCDGSVLL DDTATLIGEK TATPNLDSLR GFDVVDTIKA SVEAACPNTV  SCADILAIAA RDSVFQLGGP SWSVLLGRRD SLTASKENAN TFLPSPFSDV ATLRDKFAAV GLTTDEDLVS LSGGHTFGKA RCGAFSPRIG GDPPDTTIDP DFNSTLNSIC AAGANTTVDL 
DQTTPTTFDG GYYSNLLINR GLLSSDQALE SEGGSTADLV SLYASTQSSF FTAFVNSMIN MGDISPLEGT DGEIRVNCRV VNPTVAAM* 

Retrieve as FASTA  
Remarks Complete sequence from genomic, 4 ESTs and RNA seq. 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
ATGATGGCCA GGAAGAAGAT GAACATTTGC ATGCCGGTGT TGTTTGTGCT TATCGCAGCT GCACCTGCCC ATGCTGCGCT CACCTCGAAT TTCTACGAAA ACACTTGCCC ATCTGTGCAA  CGCATCGTCC AACAAATAGT GGCCGGAGCC ATCGCCAACG AGACACGAAT GGGTGCATCT CTCCTGAGAT TACATTTCCA TGACTGCTTC GTAAATGTAA GTTTGTGAAG GCTGCGACCA  TACTTCAGCT TGAACTTACT TTTAGTTTCA TTTTAGTAGG CATTATCCAG CTCTGAGAAG AGATTGTGGA ACTTGCACTT TTGAACCGTA TATTGAAATC ACGGCTCAGA TGATACAGAA  CTAGTACATA ATAAATCGAT TGTAATTTTG GCCAAAATAT GGATATTTTC TTAACAGGGC TGTGATGGTT CGGTGCTATT GGATGATACT GCTACACTGA TAGGGGAAAA GACCGCAACG  CCTAATCTGG ATTCTTTGAG AGGTTTTGAC GTTGTAGACA CGATCAAAGC AAGTGTGGAA GCTGCATGCC CAAATACAGT TTCATGTGCT GATATTTTAG CTATTGCAGC TCGAGACTCT  GTGTTTCAGG TACGTATATT AGGAGAAAAA TTGTTGGATC CAGCTTACAT GATGAAGTCC AGTCCTCATG TACACACTGG CCATTCAATG AAGTAGTCTT CTGCCACGAA AGTTATGTCT  TCCACATGCA TTTCCAGCAG AAAACGTCAA AGATGCAAAT TTGAGCATCT ATATCTTCAG ATAAAGTGGC AGTTGGTTCT ACAAGTAGTG ATTATGAATG ATGAAAGAAC ATCTGATGGT  GACCAGCTAA GTGAGGCCTT TGTTTCCACT AATGTCGAAA TCTTGCAGCT CGGAGGTCCA TCGTGGAGTG TTCTTTTGGG AAGAAGAGAT AGTCTGACTG CGTCCAAAGA AAATGCAAAC  ACTTTCTTGC CATCTCCCTT CTCTGATGTT GCTACCCTTC GGGATAAATT TGCAGCAGTT GGTTTGACCA CAGACGAGGA CCTGGTTTCA CTCTCAGGTA CTTCCGTTAA AACTGTAAAT  TTGGCTTCTG AAGTTTTAAT GTCCATGTGG TTGAAGATAA TTTAAATTCG CAATCGAAAC CGAGAAGTAT AGACAGGGAG TGAATGTTGC CTTTTTGTAG AGTAAGGTCC TCAAAGAAGC  TAATTTTGAA TATGAAAAAT CGACAGGTGG ACATACTTTC GGAAAAGCTC GTTGCGGTGC TTTCAGCCCT CGTATTGGGG GAGACCCTCC CGACACTACA ATCGATCCTG ATTTTAACTC  CACACTAAAT AGCATCTGCG CTGCTGGGGC TAACACGACT GTGGACTTGG ATCAGACAAC GCCAACCACC TTTGATGGTG GATATTATTC CAATCTCCTG ATAAACAGAG GCTTACTGTC  CTCAGACCAA GCTTTGGAGT CGGAAGGAGG ATCCACGGCT GATCTTGTCT CCTTGTATGC CAGCACTCAG AGCAGCTTCT TTACAGCCTT TGTAAATTCC ATGATTAATA TGGGCGATAT 
CAGTCCACTT GAAGGAACTG ATGGCGAAAT TCGTGTTAAC TGCCGTGTGG TGAACCCTAC CGTAGCAGCT ATGTAA 

Retrieve as FASTA  
CDS
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGATGGCCA GGAAGAAGAT GAACATTTGC ATGCCGGTGT TGTTTGTGCT TATCGCAGCT GCACCTGCCC ATGCTGCGCT CACCTCGAAT TTCTACGAAA ACACTTGCCC ATCTGTGCAA  CGCATCGTCC AACAAATAGT GGCCGGAGCC ATCGCCAACG AGACACGAAT GGGTGCATCT CTCCTGAGAT TACATTTCCA TGACTGCTTC GTAAATGGCT GTGATGGTTC GGTGCTATTG  GATGATACTG CTACACTGAT AGGGGAAAAG ACCGCAACGC CTAATCTGGA TTCTTTGAGA GGTTTTGACG TTGTAGACAC GATCAAAGCA AGTGTGGAAG CTGCATGCCC AAATACAGTT  TCATGTGCTG ATATTTTAGC TATTGCAGCT CGAGACTCTG TGTTTCAGCT CGGAGGTCCA TCGTGGAGTG TTCTTTTGGG AAGAAGAGAT AGTCTGACTG CGTCCAAAGA AAATGCAAAC  ACTTTCTTGC CATCTCCCTT CTCTGATGTT GCTACCCTTC GGGATAAATT TGCAGCAGTT GGTTTGACCA CAGACGAGGA CCTGGTTTCA CTCTCAGGTG GACATACTTT CGGAAAAGCT  CGTTGCGGTG CTTTCAGCCC TCGTATTGGG GGAGACCCTC CCGACACTAC AATCGATCCT GATTTTAACT CCACACTAAA TAGCATCTGC GCTGCTGGGG CTAACACGAC TGTGGACTTG  GATCAGACAA CGCCAACCAC CTTTGATGGT GGATATTATT CCAATCTCCT GATAAACAGA GGCTTACTGT CCTCAGACCA AGCTTTGGAG TCGGAAGGAG GATCCACGGC TGATCTTGTC  TCCTTGTATG CCAGCACTCA GAGCAGCTTC TTTACAGCCT TTGTAAATTC CATGATTAAT ATGGGCGATA TCAGTCCACT TGAAGGAACT GATGGCGAAA TTCGTGTTAA CTGCCGTGTG 
GTGAACCCTA CCGTAGCAGC TATGTAA 

Retrieve as FASTA  
cDNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
TGAAATCCGC TGAACCAAAT GTTGATCGAC CATGCTCAGT TATAAAGAGC CGTCCGTGCA TGAGGATTGA GCCAGGCTGA GAGGGAGACA GAAGTAGAGA GAGAAGGTTC GAGCGTAAAT  TGAGACCCCT TTTGGAAGCA GAGAGGATAT ATATTAAGGA ATGATGGCCA GGAAGAAGAT GAACATTTGC ATGCCGGTGT TGTTTGTGCT TATCGCAGCT GCACCTGCCC ATGCTGCGCT  CACCTCGAAT TTCTACGAAA ACACTTGCCC ATCTGTGCAA CGCATCGTCC AACAAATAGT GGCCGGAGCC ATCGCCAACG AGACACGAAT GGGTGCATCT CTCCTGAGAT TACATTTCCA  TGACTGCTTC GTAAATGGCT GTGATGGTTC GGTGCTATTG GATGATACTG CTACACTGAT AGGGGAAAAG ACCGCAACGC CTAATCTGGA TTCTTTGAGA GGTTTTGACG TTGTAGACAC  GATCAAAGCA AGTGTGGAAG CTGCATGCCC AAATACAGTT TCATGTGCTG ATATTTTAGC TATTGCAGCT CGAGACTCTG TGTTTCAGCT CGGAGGTCCA TCGTGGAGTG TTCTTTTGGG  AAGAAGAGAT AGTCTGACTG CGTCCAAAGA AAATGCAAAC ACTTTCTTGC CATCTCCCTT CTCTGATGTT GCTACCCTTC GGGATAAATT TGCAGCAGTT GGTTTGACCA CAGACGAGGA  CCTGGTTTCA CTCTCAGGTG GACATACTTT CGGAAAAGCT CGTTGCGGTG CTTTCAGCCC TCGTATTGGG GGAGACCCTC CCGACACTAC AATCGATCCT GATTTTAACT CCACACTAAA  TAGCATCTGC GCTGCTGGGG CTAACACGAC TGTGGACTTG GATCAGACAA CGCCAACCAC CTTTGATGGT GGATATTATT CCAATCTCCT GATAAACAGA GGCTTACTGT CCTCAGACCA  AGCTTTGGAG TCGGAAGGAG GATCCACGGC TGATCTTGTC TCCTTGTATG CCAGCACTCA GAGCAGCTTC TTTACAGCCT TTGTAAATTC CATGATTAAT ATGGGCGATA TCAGTCCACT  TGAAGGAACT GATGGCGAAA TTCGTGTTAA CTGCCGTGTG GTGAACCCTA CCGTAGCAGC TATGTAACTT AAGGTCCCAG AAATGTATAT AGCTGCGATG TTATTTATAA TTCAAACTCA  ATAACCGTAA TGTAGTATGT GTGGATTTCG TACGATGCGA CAGACCTATA ATGGAGCAAG ATCGCATCAA AGTGATGGGT TCTACGGATA ACTGCCTCAC TTTTCTCTGT CGGTGATGCA 
ACTTGTTGGA ATTACTCAGG AGTGCTGTAA CATACTACTG TACCAATATT TACTTCATAA AAAATTGTCT ATTGTTCCCC TGTT 

Retrieve as FASTA