Entry information : MpPrxQ01 (Mapoly0033s0151)
Entry ID 7349
Creation 2010-05-21 (Catherine Mathe)
Last sequence changes 2017-11-27 (Christophe Dunand)
Sequence status complete
Reviewer Not yet reviewed
Last annotation changes 2018-04-23 (Christophe Dunand)
Peroxidase information: MpPrxQ01 (Mapoly0033s0151)
Name (synonym) MpPrxQ01 (Mapoly0033s0151)
Class Atypical 2-Cysteine peroxiredoxin (type Q)    [Orthogroup: PrxQ001]
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 MpPrxQ01
start..stop
S start..stop
PabPrxQ22 264 1e-90 19..216 21..219
PabPrxQ23 261 2e-89 24..216 26..219
GbPrxQ01 259 1e-88 38..216 44..222
AdePrxQ 258 2e-88 1..212 1..210
Literature and cross-references MpPrxQ01 (Mapoly0033s0151)
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:   BJ845742.1 [5' end]
Protein sequence: MpPrxQ01 (Mapoly0033s0151)
Sequence Properties
first value : protein
second value (mature protein)
Length (aa):   %s   216
PWM (Da):   %s   23432.85  
PI (pH):   %s   9.64
Sequence
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Send to Peroxiscan
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MATCNLTLPV CSAVSGVIAT ASAGSVSSAR LTNSSFSHSQ FFGKSCLSTA STSRPLPAVS RRAATECKIN KGDKLPSTTL KDQDGKQVNL SKFMGKPLVL YFYPADETPG CTKQACAFRD 
SYDKFTKAGA NVIGVSADSP ESHKAFKQKY RLQFTLLSDE NNKLRKDWGV PGDLFGTLPG RQTYVFDKNG VCQLIFNNQF QPEKHVGETL NVLKSI* 

Retrieve as FASTA  
Remarks Complete sequence from genomic and 3 ESTs. Strain="E".
DNA
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ATGGCGACGT GCAACCTCAC ATTGCCTGTT TGTTCTGCCG TCTCTGGCGT CATTGCAACG GCGAGTGCTG GTAGCGTTTC ATCCGCCCGA CTGACCAACA GTTCTTTCTC GCATTCTCAG  TTTTTTGGCA AGAGCTGCCT TTCTACGGCT TCTACATCTC GCCCATTGCC CGCCGTGTCT CGCCGCGCTG CCACAGAATG CAAGGTATGC TATCATTTGA AATTGTCTCG GCATTAAGTA  TCATTGCATT GCTCTAAGGT GTTTCGAGTG CATGCATGCT TAAATGCCTT TGTAAGTTGA GTTCTTCTTT CGCCAAGAAG ATCAATGTGA GATGATGGGT CTTTAGATGT TATCCTTCCA  AAGTACATCA CTGAAGGATT TGCCTGAAAT TGTCTGACTC TGCAGATCAA CAAGGGCGAT AAGCTTCCGT CGACAACCCT CAAGGACCAG GATGGAAAGC AAGTTAATCT CTCCAAGTTT  ATGGGGAAGC CTTTAGTTTT GTACTTCTAT CCTGCAGACG AGACTCCTGG TTGCACCAAG CAGGTTTGTC TCCTCCCCAA TTGAGATGAA GTTTTGAATA ATTGTTATCT GCCGTCAAGC  CAGGAGGAGG TTGATACACA TACACGTCTA TTCTCTCTTC GAGACTTCGT TCTTAGCTGG TCATGCCTCC ACCGGATTAA CTGAGAGTTG AACTGTGAGT ATTGACATAT GTTGATATCT  CTTGTTGTTC TGAGCAGGCC TGTGCCTTCC GTGATTCTTA CGATAAGTTC ACGAAGGCTG GTGCTAATGT CATAGGAGTG AGCGCTGACA GCCCTGAATC TCACAAGGTA TGCATACTGT  CTCTTCACTT CTTTGCGCTT TCACCCTTCT TTCCGTGGAT GCAGTACGTT AGATGATATC CAGCGTCGTC AAATAAGAAC AAGTCACTTC ATCACCGCCT AAGCGTGAGT TGCAGTGTGG  AGCTGTGGCC GAAGTCCTCT TATCTCCACA GATCGCAATG TACTGTGAGG ACGTTGCACA AATGCACTTC TGGACCTGTG TGTATGATGG ACTTTCTCTG TGATTGCACC CAGGCGTTCA  AGCAAAAGTA CAGACTGCAA TTTACCCTTC TGAGCGACGA GAACAACAAG CTGCGTAAAG ACTGGGGAGT TCCCGGGGAC TTGTTCGGCA CCTTGCCCGG ACGACAGACG TACGTTTTCG 
ACAAGAACGG AGTGTGCCAA CTTATCTTTA ACAACCAGTT CCAACCCGAA AAGCACGTGG GCGAGACTTT GAACGTACTA AAAAGTATAT AG 

Retrieve as FASTA  
CDS
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGGCGACGT GCAACCTCAC ATTGCCTGTT TGTTCTGCCG TCTCTGGCGT CATTGCAACG GCGAGTGCTG GTAGCGTTTC ATCCGCCCGA CTGACCAACA GTTCTTTCTC GCATTCTCAG  TTTTTTGGCA AGAGCTGCCT TTCTACGGCT TCTACATCTC GCCCATTGCC CGCCGTGTCT CGCCGCGCTG CCACAGAATG CAAGATCAAC AAGGGCGATA AGCTTCCGTC GACAACCCTC  AAGGACCAGG ATGGAAAGCA AGTTAATCTC TCCAAGTTTA TGGGGAAGCC TTTAGTTTTG TACTTCTATC CTGCAGACGA GACTCCTGGT TGCACCAAGC AGGCCTGTGC CTTCCGTGAT  TCTTACGATA AGTTCACGAA GGCTGGTGCT AATGTCATAG GAGTGAGCGC TGACAGCCCT GAATCTCACA AGGCGTTCAA GCAAAAGTAC AGACTGCAAT TTACCCTTCT GAGCGACGAG  AACAACAAGC TGCGTAAAGA CTGGGGAGTT CCCGGGGACT TGTTCGGCAC CTTGCCCGGA CGACAGACGT ACGTTTTCGA CAAGAACGGA GTGTGCCAAC TTATCTTTAA CAACCAGTTC 
CAACCCGAAA AGCACGTGGG CGAGACTTTG AACGTACTAA AAAGTATATA G 

Retrieve as FASTA  
cDNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
CGAGAAGCGG GCTGACACGC CGGACCACAA TCCGGCAGCG GCCGTGGATT TTCCTGTGCT GCCCCGTGTC GTTCGTTCGG TCCACTGGAA GCACTGATTC GTTCATTCAC GGCTGATTTG  TGTGGGCCAA AGTCCGGGTC TTTTTCCATT GTCCATTGTT CATCGTCGAG AGGTCGAGCA GCAGGAGCGC GGTCATCAAT CGATAAGCGG TTGGTCGATT GAACTCCGCG ACTCCGTAGG  CACAAAGCAT CGGAAGATTG GAGGCAGTGC AGTGTCGTAA CTATGGCGAC GTGCAACCTC ACATTGCCTG TTTGTTCTGC CGTCTCTGGC GTCATTGCAA CGGCGAGTGC TGGTAGCGTT  TCATCCGCCC GACTGACCAA CAGTTCTTTC TCGCATTCTC AGTTTTTTGG CAAGAGCTGC CTTTCTACGG CTTCTACATC TCGCCCATTG CCCGCCGTGT CTCGCCGCGC TGCCACAGAA  TGCAAGATCA ACAAGGGCGA TAAGCTTCCG TCGACAACCC TCAAGGACCA GGATGGAAAG CAAGTTAATC TCTCCAAGTT TATGGGGAAG CCTTTAGTTT TGTACTTCTA TCCTGCAGAC  GAGACTCCTG GTTGCACCAA GCAGGCCTGT GCCTTCCGTG ATTCTTACGA TAAGTTCACG AAGGCTGGTG CTAATGTCAT AGGAGTGAGC GCTGACAGCC CTGAATCTCA CAAGGCGTTC  AAGCAAAAGT ACAGACTGCA ATTTACCCTT CTGAGCGACG AGAACAACAA GCTGCGTAAA GACTGGGGAG TTCCCGGGGA CTTGTTCGGC ACCTTGCCCG GACGACAGAC GTACGTTTTC  GACAAGAACG GAGTGTGCCA ACTTATCTTT AACAACCAGT TCCAACCCGA AAAGCACGTG GGCGAGACTT TGAACGTACT AAAAAGTATA TAGATTGTTA ACGGATCGCA AACTATCACA  CTTGTCTGTT TGTGCCTCCT ACTGTACCAT CTTTTCATCC ACTATAGAGC ACAATTTTGC GGCCAAAGGT GAATAGTACT AGTTGCCTCA GCTGGAGGCG AGCGTTTCGC AGTTTACCAG  GACCTCGGAG AAGGATCCCA TCAGAGGCCT CCAGCCAAGG ATGTAATGTA CTTCATTGTT CATACAAATG TAGCTTTGTA TAAATCATCG GTACAATTTA GTTCAGTAGC CACGGGGTTC  TTTGTGGGCT TTAACTTACT CTAGCGGTTT GTTCTGTTTT TCTTTATTGA GGCATAGCCC GGCTCGGAGC TTTGAATTCT TACAGGTGCG TAACCCCTTG CATAGACCTG CGATGGATGC 
AACGGAGTCC TGCATCTGGA GTCCACTCCA GGAGGCTCCG TCTGCACAGT GTTCCCGTAG GAAGTCGAAC ATGGGCAATA TACTCTCGCC AAATTCCGTG CCC 

Retrieve as FASTA