Entry information : MpPrxII03 (Mapoly0147s0023/ MpPrxIIE01)
Entry ID 7352
Creation 2010-05-25 (Catherine Mathe)
Last sequence changes 2017-11-28 (Christophe Dunand)
Sequence status complete
Reviewer Not yet reviewed
Last annotation changes 2017-11-28 (Christophe Dunand)
Peroxidase information: MpPrxII03 (Mapoly0147s0023/ MpPrxIIE01)
Name (synonym) MpPrxII03 (Mapoly0147s0023/ MpPrxIIE01)
Class Atypical 2-Cysteine peroxiredoxin (type II)    [Orthogroup: PrxII001]
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 MpPrxII03
start..stop
S start..stop
MpalPrxII03 559 0 1..311 1..313
PtaPrxII05 283 1.72e-96 139..311 67..239
PabPrxII178 278 3.89e-94 135..311 64..239
MtPrxII05 270 1.13e-91 134..311 40..217
Literature and cross-references MpPrxII03 (Mapoly0147s0023/ MpPrxIIE01)
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:   BJ856932.1 [5' end]  BJ854251.1 [Fragment]
Protein sequence: MpPrxII03 (Mapoly0147s0023/ MpPrxIIE01)
Sequence Properties
first value : protein
second value (mature protein)
Length (aa):   %s   311 (165)
PWM (Da):   %s   32925.41 (17943.0)  
PI (pH):   %s   9.85 (7.24) Peptide Signal:   %s   cut: 23 range:23-187
Sequence
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Send to Peroxiscan
*.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
MSMPKVMPLV VDYGSRALRR LVLQQHPVIS RTGRLVGFNL LDARSSPALA ASPPSACHPR PSLRQFESLA DMASATKSLV AGAPVALNLC RSALECSAKQ QPMLLGAGRV GKRAIELSAV  RSLSSGAFMS SRALNFQKRS FSLSTSIKAT IQVGEKLPEA ELSYLDQENN VQTVKISELT KGKKIVLFAV PGAFTPTCSQ KHVPGFVDKS DELKSKGVDT IACVSVNDVF VMKAWGEGLG 
VGDKVLLLSD GNGHFTKALG VELDLSDKPV GLGVRSRRYA LLADDGVVKQ LNLEEGGAFS ISGPDEILKA L 

Retrieve as FASTA  
Remarks Complete sequence from genomic and 3 ESTs. Strain="E".
DNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGTCGATGC CAAAGGTCAT GCCACTCGTC GTCGACTATG GTAGTCGAGC GCTCCGACGC CTTGTGCTGC AGCAGCATCC CGTGATCTCT CGTACCGGTC GCCTTGTCGG ATTTAATCTT  CTCGACGCGC GCTCTTCTCC TGCGCTCGCT GCATCTCCTC CCTCAGCTTG TCACCCTCGT CCCTCGTTGC GCCAGTTCGA GTCGTTGGCA GATATGGCGT CTGCAACGAA ATCCCTCGTC  GCCGGTGCGC CCGTCGCTCT GAACCTGTGC AGGAGCGCTT TGGAATGCTC CGCGAAGCAG CAGCCGATGC TTCTTGGTGC CGGTCGTGTC GGCAAGAGGG CAATTGAGTT GTCCGCAGTC  AGAAGTCTGA GCTCCGGGGC TTTCATGTCT TCCAGAGCGC TGAATTTTCA GAAGAGGTCG TTCTCCTTGT CCACTTCCAT CAAGGCCACC ATCCAGGTCG GAGAAAAGCT GCCCGAGGCC  GAGCTCTCGT ACCTCGACCA GGAGAACAAT GTACAGACTG TGAAGATTTC GGAGCTCACC AAGGGCAAGA AAATTGTTTT GTTCGCCGTG CCCGGAGCTT TCACACCCAC CTGCTCCCAG  AAGCACGTGC CCGGGTTCGT CGACAAGTCT GATGAGCTCA AGTCCAAGGG CGTGGATACC ATCGCCTGTG TCAGCGTGAA CGATGTTTTC GTCATGAAGG CATGGGGAGA GGGTCTTGGC  GTCGGAGACA AGGTGTTGCT GCTCTCTGAC GGGAACGGTC ATTTCACCAA GGCCTTGGGT GTCGAGTTAG ACTTGAGCGA CAAGCCCGTG GGTCTCGGAG TGAGATCGAG ACGCTATGCC 
CTTTTGGCCG ATGATGGCGT GGTGAAGCAG TTGAATCTTG AGGAGGGCGG AGCTTTTTCC ATCAGTGGCC CTGATGAAAT TCTTAAGGCT TTGTAA 

Retrieve as FASTA  
CDS
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGTCGATGC CAAAGGTCAT GCCACTCGTC GTCGACTATG GTAGTCGAGC GCTCCGACGC CTTGTGCTGC AGCAGCATCC CGTGATCTCT CGTACCGGTC GCCTTGTCGG ATTTAATCTT  CTCGACGCGC GCTCTTCTCC TGCGCTCGCT GCATCTCCTC CCTCAGCTTG TCACCCTCGT CCCTCGTTGC GCCAGTTCGA GTCGTTGGCA GATATGGCGT CTGCAACGAA ATCCCTCGTC  GCCGGTGCGC CCGTCGCTCT GAACCTGTGC AGGAGCGCTT TGGAATGCTC CGCGAAGCAG CAGCCGATGC TTCTTGGTGC CGGTCGTGTC GGCAAGAGGG CAATTGAGTT GTCCGCAGTC  AGAAGTCTGA GCTCCGGGGC TTTCATGTCT TCCAGAGCGC TGAATTTTCA GAAGAGGTCG TTCTCCTTGT CCACTTCCAT CAAGGCCACC ATCCAGGTCG GAGAAAAGCT GCCCGAGGCC  GAGCTCTCGT ACCTCGACCA GGAGAACAAT GTACAGACTG TGAAGATTTC GGAGCTCACC AAGGGCAAGA AAATTGTTTT GTTCGCCGTG CCCGGAGCTT TCACACCCAC CTGCTCCCAG  AAGCACGTGC CCGGGTTCGT CGACAAGTCT GATGAGCTCA AGTCCAAGGG CGTGGATACC ATCGCCTGTG TCAGCGTGAA CGATGTTTTC GTCATGAAGG CATGGGGAGA GGGTCTTGGC  GTCGGAGACA AGGTGTTGCT GCTCTCTGAC GGGAACGGTC ATTTCACCAA GGCCTTGGGT GTCGAGTTAG ACTTGAGCGA CAAGCCCGTG GGTCTCGGAG TGAGATCGAG ACGCTATGCC 
CTTTTGGCCG ATGATGGCGT GGTGAAGCAG TTGAATCTTG AGGAGGGCGG AGCTTTTTCC ATCAGTGGCC CTGATGAAAT TCTTAAGGCT TTGTAA 

Retrieve as FASTA  
cDNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGTCGATGC CAAAGGTCAT GCCACTCGTC GTCGACTATG GTAGTCGAGC GCTCCGACGC CTTGTGCTGC AGCAGCATCC CGTGATCTCT CGTACCGGTC GCCTTGTCGG ATTTAATCTT  CTCGACGCGC GCTCTTCTCC TGCGCTCGCT GCATCTCCTC CCTCAGCTTG TCACCCTCGT CCCTCGTTGC GCCAGTTCGA GTCGTTGGCA GATATGGCGT CTGCAACGAA ATCCCTCGTC  GCCGGTGCGC CCGTCGCTCT GAACCTGTGC AGGAGCGCTT TGGAATGCTC CGCGAAGCAG CAGCCGATGC TTCTTGGTGC CGGTCGTGTC GGCAAGAGGG CAATTGAGTT GTCCGCAGTC  AGAAGTCTGA GCTCCGGGGC TTTCATGTCT TCCAGAGCGC TGAATTTTCA GAAGAGGTCG TTCTCCTTGT CCACTTCCAT CAAGGCCACC ATCCAGGTCG GAGAAAAGCT GCCCGAGGCC  GAGCTCTCGT ACCTCGACCA GGAGAACAAT GTACAGACTG TGAAGATTTC GGAGCTCACC AAGGGCAAGA AAATTGTTTT GTTCGCCGTG CCCGGAGCTT TCACACCCAC CTGCTCCCAG  AAGCACGTGC CCGGGTTCGT CGACAAGTCT GATGAGCTCA AGTCCAAGGG CGTGGATACC ATCGCCTGTG TCAGCGTGAA CGATGTTTTC GTCATGAAGG CATGGGGAGA GGGTCTTGGC  GTCGGAGACA AGGTGTTGCT GCTCTCTGAC GGGAACGGTC ATTTCACCAA GGCCTTGGGT GTCGAGTTAG ACTTGAGCGA CAAGCCCGTG GGTCTCGGAG TGAGATCGAG ACGCTATGCC 
CTTTTGGCCG ATGATGGCGT GGTGAAGCAG TTGAATCTTG AGGAGGGCGG AGCTTTTTCC ATCAGTGGCC CTGATGAAAT TCTTAAGGCT TTGTAA 

Retrieve as FASTA