Entry information : MpFer02 (Mapoly0107s0025)
Entry ID 7363
Creation 0000-00-00 (Christophe Dunand)
Last sequence changes 2017-11-29 (Christophe Dunand)
Sequence status complete
Reviewer Not yet reviewed
Last annotation changes 2017-11-29 (Christophe Dunand)
Peroxidase information: MpFer02 (Mapoly0107s0025)
Name (synonym) MpFer02 (Mapoly0107s0025)
Class Ferritin    [Orthogroup: Fer001]
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 MpFer02
start..stop
S start..stop
PpaFer01 315 2e-109 1..258 3..262
ThasFer01-1 303 7e-105 45..261 47..261
SpolFer01 300 2e-103 49..261 44..255
PpaFer02 300 2e-103 13..259 20..261
Literature and cross-references MpFer02 (Mapoly0107s0025)
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:   BJ850580.1 [5' end]   BJ858045.1 [3' end]
Protein sequence: MpFer02 (Mapoly0107s0025)
Sequence Properties
first value : protein
second value (mature protein)
Length (aa):   %s   261
PWM (Da):   %s   29048.51  
PI (pH):   %s   5.08
Sequence
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Send to Peroxiscan
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MALRVAPCSV SIAAGSLACV TGGNASQARQ GRLSFDAVSI ARPARSVAVR AAESNVDQKT LSGVVFEPFR EVQSDAFLLP SESNKSLARQ RFDQSCESAI NDQINVEYNV SYIYHALFAY  FDRDNVALPG FAKYFKEASE EEREHAEKLM TYQNKRGGRV KLNTIVNPIS EFDNSEKGDA LHAMELALSL EKLTMEKLYC LHKVAEDAHD VQLTDYIESE FLSEQVEAIK KVSEYVAQLR 
RIGMDGHGIY HFDRILGEEG A* 

Retrieve as FASTA  
Remarks Complete sequence from genomic and 9 ESTs. Strain="E".
DNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
CTCAGTCCTC ATTCTTTGCT CTCCCCTTCT CGCTCTCTCA GTCTCCACTC TGTCCCCGCG CCTCCCTCCG CCTTCACCTG CATCGCCTCA TCGCATTCGA GCGCGTGCTC GCCCCGCGCC  CGCCACGACT TTTCAAGAAG AAGAAGAAGA AGCAGAACAG CGTCGTCGAG ATCTCATTTC ATTCTCTCGC GGTTCTTGCG CTTTTGCGAA GCGTCGAGTG ATCAATTTTG CCGCCATGGC  TCTCAGAGTG GCCCCTTGCT CCGTCTCCAT CGCGGCGGGC TCGCTGGCCT GCGTCACCGG TGGCAATGCC AGCCAGGCCC GTCAAGGGCG TTTAAGCTTT GATGCCGTTT CGATCGCCAG  GCCCGCGAGG TCGGTCGCAG TGCGCGCGGC GGAATCGAAC GTCGATCAGA AGACGCTCTC GGGAGTGGTT TTTGAGCCCT TCAGAGAGGT TCAGAGCGAT GCGTTTCTGC TGCCCTCCGA  GTCTAACAAG TCTCTGGCCC GCCAGCGATT TGACCAGTCT TGCGAGTCTG CTATCAACGA CCAGATCAAG TGAGTTAGCT CGAGGTTCGC GTCGGTGGCG CGAAGCAGCG TTACTTCTTG  AATGAGTGCA CGGCGGAAAA TTTTTCGGCG GTGGTTTCGT TTGTTGGGTG CGAGTGTGCT CATTATGTGT TTTTGGTGTT TTGATTCAGT GTGGAGTACA ACGTGTCGTA CATCTACCAT  GCTCTGTTCG CGTACTTCGA TCGTGACAAT GTCGCTCTTC CAGGCTTCGC CAAGTGAGTG TTTCTTCTGA TTTCTTATTC CGAAATGGCT GGATTAATCA CCAAGTTCTG TTTCTCGGAT  AATTACTTCT CCGATAAATC AATGTGACTT CATTTGCTAA CCCACTAATG ATTTGACGGA TGCGTTTCCA GGTATTTCAA GGAGGCCAGT GAGGAGGAAA GGGAGCATGC AGAGAAGCTG  ATGACGTACC AGGTATGAAC TTTCTGCGCC GAGTTCTTTG GTCATTTACT TCGTTGAGTT AGTCTTCTGG CGTGCTCAGT TTTAAAGTGA TGTGTGGAGC ATCTGTGTAG TATATCATTT  GGGATTACCT GTGTGCCTTA ATAATAGTTT TTCCTGCAGA CGGGAGTTGT TTCGGTGATA CGCGTTTCTG CTGTCTAACT TACTTTCTTC AGCTTCCAGT TCCGCGTTGT ATATATCGGT  CGTGTATCTG TGAATGAATT TTGTACTTGT CGTCGTTGCG CAGAACAAGA GAGGTGGCAG GGTGAAATTG AACACCATAG TCAACCCTAT CAGTGAGTTT GACAACAGTG AGAAGGGTGA  CGCGCTTCAT GGTGAGAGCT GTTGCATTGA ACCTTTAAGT ATCCGATTGG TGTAAAATGT ACAGTTGTAT CTGAACAATG TGTAATGTGT AACACCAGTC TGACAATTTT CATGTTCGTC  GCTCAGCTAT GGAGCTTGCC CTCTCCCTGG AGAAGTTGAC CATGGAGAAG CTTTACTGCC TCCACAAGGT TAGTTGCTAT TCTTATGTTT ATTCGAAGTT CTCTCACTGT GTATATCGGA  AATCCATCGT ACATACTGTC CCCATATCTT GAAGTCTCAC CGAGTTATGT CAACGTGTCC AGGTAGCTGA GGACGCACAC GACGTTCAGC TCACAGACTA CATCGAGAGC GAGTTTCTCT  CGGAGCAGGT AAGCCGTGGA TTCGCAGAGC CTTGGACAAA TTACAGTAGC GGACGTAGAA GCATGAATCT CTTTTTGTAG CCCGGAATGG ATTGTCGACG TTTTGGTGGA CGAGGCCTTT  TTGAAATTAC TGAAGAAAAG CCGACTGTTG GTTCGGCTTG GAGGAATTCT TTCTTATCTA GTTTTGATTT GTATCTTACT CCAGGTTGAG GCGATCAAGA AAGTATCGGA GTACGTAGCT  CAACTGAGAA GAATCGGCAT GGATGGTCAC GGTAAGATGT CGATCTGCTT TTTATCTTCA ATTTGTCTCT TATCTTCGTT TGCCAAATCT CCAAGCTGAC GTGGGGAGGA AATATGGACT  GTTTGCCTTT TGAGGCAGGA ATCGCAACGC GTAAATACTT GGAAAGATAC ACGTAGAAGC TCTATGGCAT GTTTTTGCAA TGACCTGACA TGTGGCCATT TGAACATCTG TTATTTATTG  CAGGTATCTA CCACTTCGAC CGCATTCTCG GCGAGGAAGG TGCCTAGGAT CAAGGTCTAG TGTGGTATAC TCGTACGCGT AATAGGCCTG TAGAGTAAGT CAGAGGTGCA GAGCTTGGTT  CTTAGCTGTC TCCAGCTATT TTAGTATAGG AACACAGCCT TTTGTTTCAC AATCACGTTC TAGATTATTT TGGCGTAGTT TGTACAATGG TAGGGAATTG ACCACCGTGA CATCACTTTT 
TGAGAGATGG GTGCTGTGCT ACACATCCGC TGTAAAGAAA TGGCAATTAA TGTCAGTTAT AATGAGGAAT TTTATTTTCT TTTATATAAA GGGAGTTTAA GATG 

Retrieve as FASTA  
CDS
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGGCTCTCA GAGTGGCCCC TTGCTCCGTC TCCATCGCGG CGGGCTCGCT GGCCTGCGTC ACCGGTGGCA ATGCCAGCCA GGCCCGTCAA GGGCGTTTAA GCTTTGATGC CGTTTCGATC  GCCAGGCCCG CGAGGTCGGT CGCAGTGCGC GCGGCGGAAT CGAACGTCGA TCAGAAGACG CTCTCGGGAG TGGTTTTTGA GCCCTTCAGA GAGGTTCAGA GCGATGCGTT TCTGCTGCCC  TCCGAGTCTA ACAAGTCTCT GGCCCGCCAG CGATTTGACC AGTCTTGCGA GTCTGCTATC AACGACCAGA TCAATGTGGA GTACAACGTG TCGTACATCT ACCATGCTCT GTTCGCGTAC  TTCGATCGTG ACAATGTCGC TCTTCCAGGC TTCGCCAAGT ATTTCAAGGA GGCCAGTGAG GAGGAAAGGG AGCATGCAGA GAAGCTGATG ACGTACCAGA ACAAGAGAGG TGGCAGGGTG  AAATTGAACA CCATAGTCAA CCCTATCAGT GAGTTTGACA ACAGTGAGAA GGGTGACGCG CTTCATGCTA TGGAGCTTGC CCTCTCCCTG GAGAAGTTGA CCATGGAGAA GCTTTACTGC  CTCCACAAGG TAGCTGAGGA CGCACACGAC GTTCAGCTCA CAGACTACAT CGAGAGCGAG TTTCTCTCGG AGCAGGTTGA GGCGATCAAG AAAGTATCGG AGTACGTAGC TCAACTGAGA 
AGAATCGGCA TGGATGGTCA CGGTATCTAC CACTTCGACC GCATTCTCGG CGAGGAAGGT GCCTAG 

Retrieve as FASTA  
cDNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
CTCAGTCCTC ATTCTTTGCT CTCCCCTTCT CGCTCTCTCA GTCTCCACTC TGTCCCCGCG CCTCCCTCCG CCTTCACCTG CATCGCCTCA TCGCATTCGA GCGCGTGCTC GCCCCGCGCC  CGCCACGACT TTTCAAGAAG AAGAAGAAGA AGCAGAACAG CGTCGTCGAG ATCTCATTTC ATTCTCTCGC GGTTCTTGCG CTTTTGCGAA GCGTCGAGTG ATCAATTTTG CCGCCATGGC  TCTCAGAGTG GCCCCTTGCT CCGTCTCCAT CGCGGCGGGC TCGCTGGCCT GCGTCACCGG TGGCAATGCC AGCCAGGCCC GTCAAGGGCG TTTAAGCTTT GATGCCGTTT CGATCGCCAG  GCCCGCGAGG TCGGTCGCAG TGCGCGCGGC GGAATCGAAC GTCGATCAGA AGACGCTCTC GGGAGTGGTT TTTGAGCCCT TCAGAGAGGT TCAGAGCGAT GCGTTTCTGC TGCCCTCCGA  GTCTAACAAG TCTCTGGCCC GCCAGCGATT TGACCAGTCT TGCGAGTCTG CTATCAACGA CCAGATCAAT GTGGAGTACA ACGTGTCGTA CATCTACCAT GCTCTGTTCG CGTACTTCGA  TCGTGACAAT GTCGCTCTTC CAGGCTTCGC CAAGTATTTC AAGGAGGCCA GTGAGGAGGA AAGGGAGCAT GCAGAGAAGC TGATGACGTA CCAGAACAAG AGAGGTGGCA GGGTGAAATT  GAACACCATA GTCAACCCTA TCAGTGAGTT TGACAACAGT GAGAAGGGTG ACGCGCTTCA TGCTATGGAG CTTGCCCTCT CCCTGGAGAA GTTGACCATG GAGAAGCTTT ACTGCCTCCA  CAAGGTAGCT GAGGACGCAC ACGACGTTCA GCTCACAGAC TACATCGAGA GCGAGTTTCT CTCGGAGCAG GTTGAGGCGA TCAAGAAAGT ATCGGAGTAC GTAGCTCAAC TGAGAAGAAT  CGGCATGGAT GGTCACGGTA TCTACCACTT CGACCGCATT CTCGGCGAGG AAGGTGCCTA GGATCAAGGT CTAGTGTGGT ATACTCGTAC GCGTAATAGG CCTGTAGAGT AAGTCAGAGG  TGCAGAGCTT GGTTCTTAGC TGTCTCCAGC TATTTTAGTA TAGGAACACA GCCTTTTGTT TCACAATCAC GTTCTAGATT ATTTTGGCGT AGTTTGTACA ATGGTAGGGA ATTGACCACC 
GTGACATCAC TTTTTGAGAG ATGGGTGCTG TGCTACACAT CCGCTGTAAA GAAATGGCAA TTAATGTCAG TTATAATGAG GAATTTTATT TTCTTTTATA TAAAGGGAGT TTAAGATG 

Retrieve as FASTA