Entry information : SpolFer01 (Spipo22G0029300)
Entry ID 14620
Creation 2017-12-12 (Christophe Dunand)
Last sequence changes 2017-12-12 (Christophe Dunand)
Sequence status N/D
Reviewer Not yet reviewed
Last annotation changes 2017-12-12 (Christophe Dunand)
Peroxidase information: SpolFer01 (Spipo22G0029300)
Name (synonym) SpolFer01 (Spipo22G0029300)
Class Ferritin    [Orthogroup: Fer001]
Taxonomy Eukaryota Viridiplantae Streptophyta Monocotyledons Araceae Spirodela
Organism Spirodela polyrhiza (great duckweed)    [TaxId: 29656 ]
Cellular localisation N/D
Tissue type N/D
Inducer N/D
Repressor N/D
Best BLASTp hits
Perox score E-value SpolFer01
start..stop
S start..stop
SpolFer02 379 1.27e-134 38..256 42..260
LeFer01 374 1.52e-132 1..257 1..257
HaFer06 366 7.85e-130 1..256 1..245
ThasFer01-1 366 1.51e-129 1..256 1..262
Literature and cross-references SpolFer01 (Spipo22G0029300)
Protein sequence: SpolFer01 (Spipo22G0029300)
Sequence Properties
first value : protein
second value (mature protein)
Length (aa):   %s   257
PWM (Da):   %s   28605.54 Transmb domain:   %s   i7-26o
PI (pH):   %s   5.4
Sequence
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Send to Peroxiscan
*.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
MLLKASSALS VPSEAAVAFS PSTSPLTSSV RLSPWRTRDG QGMVAMAASD AGSRALTGVV FEPFEEVKKE LSLVPSAPNQ SLARQKYTDN CEAAINEQIN VEYNVSYAYH ALFAYFDRDN  IALKGLAKFF KESSEEEREH AEKLMKYQNK RGGKVKLQSI LMPLSEFDHE EKGDALYAME LALSLEKLVN EKLLNLHGVA TQHNDVHLAD FVESEFLEEQ VEAIKKISEY VTQLRMVGKG 
HGVWHFDQVL LREGGAL* 

Retrieve as FASTA  
Remarks
DNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGCTTCTGA AGGCTTCTTC TGCTCTGTCC GTCCCTTCCG AGGCTGCGGT GGCCTTCTCC CCTTCTACCT CTCCTCTGAC CTCGTCTGTT AGGCTCTCGC CGTGGAGGAC GAGGGATGGA  CAAGGAATGG TGGCCATGGC TGCCAGCGAT GCCGGCAGCC GCGCCCTCAC GGGCGTGGTC TTCGAGCCCT TCGAGGAGGT GAAGAAGGAG CTCTCCCTCG TTCCGTCGGC CCCTAACCAG  TCATTGGCCC GCCAGAAGTA CACCGATAAC TGCGAGGCCG CCATCAACGA GCAGATCAAG TATGGACCTT TTTTTTCCCT TTTTTCTAGT CGTTGCAGGG TTCGCCTTTT CTTGCTCTGT  CTTCTCGCTC CTCTGCTGCT ACCTTTCCTG TGGTGCTTCT ATTTCTTCTT TGATAAATCT ATCAAAGTAG AGATCTGAGA GGATCCTTTT CAGCCTTTGA AGAATCTTTC TTCCCTGGTT  CTTTCCTGGT TCTTCTTGAT CTCTGGGTTT AATCTTCGAC ATGATGTTCA AGATTTATTC CGATGCCTGA CCCGTCTGCG TTGGATCTGC AGCGTGGAAT ACAACGTCTC CTATGCCTAC  CATGCGCTGT TCGCCTATTT CGACAGAGAC AACATCGCCC TCAAAGGCCT CGCCAAGTAA ATCCCGAGAG ACCAGAGCAC TCCACCTCTC TGATCATCCG GGTCTATCTC TGATCACCTC  CCTCTGTCTC TCAGGTTTTT CAAGGAATCG AGCGAGGAGG AGCGTGAACA TGCCGAAAAG CTGATGAAAT ACCAGGTGCT TATGGATGAG ATCCTTCTCG TCCCTCTTTT ATTTTGCTGC  CCTGCCATTG GGCTTCTTCC TAATCCCCTT TCCTAGTCTC TGAAGCGTTC TCTGCTGACT TTTTTTTTTT GGGTGCTTCA GAACAAGCGC GGTGGGAAGG TGAAGCTTCA GTCCATTCTG  ATGCCCCTCA GCGAGTTTGA TCACGAGGAG AAGGGAGATG CCTTGTACGG TAAGCTGGGC ACTTGATGAT TCTCTCTGGA AGGAAACCAT TACCTCGATT AGCTTCATTC ATGATCCATG  GCTGCCTGAA GAATGACTCG ATCGCTGTTC TTGGTCAGCG ATGGAGCTCG CTCTGTCTCT CGAGAAGCTG GTCAACGAGA AACTTCTCAA TCTGCACGGG GTAAAGCGCC TCGCGCCGCA  TTGATCTCTG CTCATCTGAA AGTGGGTGGT TCCTCCATCC GCGCTCTTGC TCACCTCGTC CTCCATCCAT TGGGCAGGTG GCAACGCAGC ACAACGACGT TCATCTGGCC GACTTTGTTG  AGAGCGAGTT CTTGGAAGAG CAGGTGGAGA GAGCCCTCCC TGCTCCTCTC CACCCCCCCC CCTCACCCTG TTCCTGGATC TCTGATAAAA AATCGATCCC CCACGCGCAG GTTGAAGCGA  TAAAGAAGAT CTCCGAGTAC GTGACTCAGC TGAGGATGGT CGGCAAGGGG CACGGTAAGA GATCATCATC CACTCTCGGA ACTGAACTCG TCTGGTCAAC TGGGTTTGAC TTTTTTTGTT 
TGTATTTCCT GTTTTGTTTT CAGGGGTCTG GCACTTTGAC CAGGTGCTCC TGCGCGAGGG CGGTGCTCTA TGA 

Retrieve as FASTA  
CDS
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGCTTCTGA AGGCTTCTTC TGCTCTGTCC GTCCCTTCCG AGGCTGCGGT GGCCTTCTCC CCTTCTACCT CTCCTCTGAC CTCGTCTGTT AGGCTCTCGC CGTGGAGGAC GAGGGATGGA  CAAGGAATGG TGGCCATGGC TGCCAGCGAT GCCGGCAGCC GCGCCCTCAC GGGCGTGGTC TTCGAGCCCT TCGAGGAGGT GAAGAAGGAG CTCTCCCTCG TTCCGTCGGC CCCTAACCAG  TCATTGGCCC GCCAGAAGTA CACCGATAAC TGCGAGGCCG CCATCAACGA GCAGATCAAC GTGGAATACA ACGTCTCCTA TGCCTACCAT GCGCTGTTCG CCTATTTCGA CAGAGACAAC  ATCGCCCTCA AAGGCCTCGC CAAGTTTTTC AAGGAATCGA GCGAGGAGGA GCGTGAACAT GCCGAAAAGC TGATGAAATA CCAGAACAAG CGCGGTGGGA AGGTGAAGCT TCAGTCCATT  CTGATGCCCC TCAGCGAGTT TGATCACGAG GAGAAGGGAG ATGCCTTGTA CGCGATGGAG CTCGCTCTGT CTCTCGAGAA GCTGGTCAAC GAGAAACTTC TCAATCTGCA CGGGGTGGCA  ACGCAGCACA ACGACGTTCA TCTGGCCGAC TTTGTTGAGA GCGAGTTCTT GGAAGAGCAG GTTGAAGCGA TAAAGAAGAT CTCCGAGTAC GTGACTCAGC TGAGGATGGT CGGCAAGGGG 
CACGGGGTCT GGCACTTTGA CCAGGTGCTC CTGCGCGAGG GCGGTGCTCT ATGA 

Retrieve as FASTA  
cDNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGCTTCTGA AGGCTTCTTC TGCTCTGTCC GTCCCTTCCG AGGCTGCGGT GGCCTTCTCC CCTTCTACCT CTCCTCTGAC CTCGTCTGTT AGGCTCTCGC CGTGGAGGAC GAGGGATGGA  CAAGGAATGG TGGCCATGGC TGCCAGCGAT GCCGGCAGCC GCGCCCTCAC GGGCGTGGTC TTCGAGCCCT TCGAGGAGGT GAAGAAGGAG CTCTCCCTCG TTCCGTCGGC CCCTAACCAG  TCATTGGCCC GCCAGAAGTA CACCGATAAC TGCGAGGCCG CCATCAACGA GCAGATCAAC GTGGAATACA ACGTCTCCTA TGCCTACCAT GCGCTGTTCG CCTATTTCGA CAGAGACAAC  ATCGCCCTCA AAGGCCTCGC CAAGTTTTTC AAGGAATCGA GCGAGGAGGA GCGTGAACAT GCCGAAAAGC TGATGAAATA CCAGAACAAG CGCGGTGGGA AGGTGAAGCT TCAGTCCATT  CTGATGCCCC TCAGCGAGTT TGATCACGAG GAGAAGGGAG ATGCCTTGTA CGCGATGGAG CTCGCTCTGT CTCTCGAGAA GCTGGTCAAC GAGAAACTTC TCAATCTGCA CGGGGTGGCA  ACGCAGCACA ACGACGTTCA TCTGGCCGAC TTTGTTGAGA GCGAGTTCTT GGAAGAGCAG GTTGAAGCGA TAAAGAAGAT CTCCGAGTAC GTGACTCAGC TGAGGATGGT CGGCAAGGGG 
CACGGGGTCT GGCACTTTGA CCAGGTGCTC CTGCGCGAGG GCGGTGCTCT ATGA 

Retrieve as FASTA