Entry information : KflAPx05 (kfl00048_0040)
Entry ID 7774
Creation 2010-11-25 (Qiang Li)
Last sequence changes 2014-08-21 (Christophe Dunand)
Sequence status complete
Reviewer Not yet reviewed
Last annotation changes 2014-08-21 (Christophe Dunand)
Peroxidase information: KflAPx05 (kfl00048_0040)
Name (synonym) KflAPx05 (kfl00048_0040)
Class Ascorbate peroxidase    [Orthogroup: APx2002]
Taxonomy Eukaryota Viridiplantae Streptophyta Klebsormidiophyceae Klebsormidiaceae Klebsormidium
Organism Klebsormidium flaccidum    [TaxId: 3175 ]
Cellular localisation N/D
Tissue type N/D
Inducer N/D
Repressor N/D
Best BLASTp hits
Perox score E-value KflAPx05
start..stop
S start..stop
CbrebAPx07 461 1.42e-162 96..459 5..338
CvuAPx05 439 1.27e-153 94..459 4..352
SsAPx04_AU1 440 4.37e-153 68..461 63..421
RobtAPx04 434 4.93e-152 96..459 5..337
Literature and cross-references KflAPx05 (kfl00048_0040)
Literature Timme,R.E., Bachvaroff,T.R. and Delwiche,C.F. Broad phylogenomic sampling and the sister lineage of land plants PLoS ONE 7 (1), e29696 (2012).
EST ref. GenBank:   HO435852.1  HO473410.1  HO474127.1
Cluster/Prediction ref. klebsormidium DB:   kfl00048_0040
Protein sequence: KflAPx05 (kfl00048_0040)
Sequence Properties
first value : protein
second value (mature protein)
Length (aa):   %s   461 (302)
PWM (Da):   %s   48704.76 (32383.0) Transmb domain:   %s   o433-455i
PI (pH):   %s   8.19 (4.60) Peptide Signal:   %s   cut: 29 range:29-330
Sequence
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*.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
MAGVASLSKQ LCSAGSVHML SAVEQSMHRC LAMPVRLSRG PTRKAMLFCA PSIALGTSFL GGAAAQGVAS VGRVAAGGGA RVAMVAGTAV DTKEYVAQLR GAKEAVRELI TSKKSNPILV  RLGWHDAGTY DAEQGMAAWP KCGGANGSMR FKPEQSHSAN AGLANAVLLL EDIKQRFPQV SHADLYQMAS AVAIEIAGGP VIPLKYGRVD AAEKDDCVVD GKLPSGDPES THKQSPADHL  RKVFYRMGLN DKEIVALSGA HTLGRVYPDR SGFGKASTKY TENGPGTKGG QSWTAEWLKF DNSYFKDVKA RTDPDLVVLS TDGVLFQDPA FREYAEKYAE DEELFFKDYV LAHKRLSELG 
SKFDPPEGIV LDAQAVSPTP AASNNGSNGP VAFSAKDYYS EASAKTSKSD LSPEMKEKIR KEYLGFGGSP DTPVAGGTNP FVVISIIVAV LALLSKAIGA I 

Retrieve as FASTA  
Remarks Complete sequence from genomic and ESTs. Strain="UTEX 321".
DNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGGCGGGCG TTGCTTCGTT GTCCAAGCAG CTATGCTCCG CGGGCAGTGT CCACATGCTG TCCGCGGTGG AGCAGTCGAT GCACCGCTGC CTCGCAATGC CCGTGCGCCT CTCAAGAGGG  CCCACCCGCA AGGCCATGTT GTTCTGCGCC CCCAGCATTG CGCTGGGCAC CAGCTTCTTG GGAGGGGCAG CCGCGCAGGT TCGATGATCT GCACCTCGCC CCTTGCACAG CCTGTTCGCG  CAGACTCTCA AAGGAATGGG CGCCTGACTC TGGCTGCATG CATGCAGCGG CAGAAGCACT GTCTGCGTTG GGCTGGAGTC AATTGCAATG CAGCGCATGG GCCATCTGTG CAGCAGTGCA  AACCCATGCT GCCTTTCCTG ATCTTGGATT TATGGGATGC GTGTGGCGCC CCCGGGCTTA CTTCCCTCAT TGTGCGCTTC CTTGTGTTGG CAGGGAGTGG CCAGCGTGGG CCGTGTGGCG  GCCGGTGGCG GCGCGCGCGT GGCCATGGTG GCGGGCACGG CGGTGGACAC CAAGGAGTAT GTGGCGCAGC TGCGCGGGGC CAAGGAGGCG GTGCGCGAGC TGATCACCAG CAAGAAGTCC  AACCCCATCC TGGTCAGCGC CACGCCCAGC CAGCCGCCAC AGCTGCGAGA TGCTAAGTGG ATTCACAAAG AGCGGGGCAG ACTGGTGACA GGCATCAAGT AACGAGTCAA GATCTGAGTA  TTTGCCATTG GCATGATTCA TTCCCTGGTC AATGGGCTGT TCATTCGCAA AAGTCAAGAA TGTGTCTGCT ATGCGTCTCC ATGTTTCTTT TCATGCTTTC TCCTCAGTCC AACAGCTATT  GTGCAGGTGC GCCTCGGCTG GCATGACGCT GGTACGTACG ACGCAGAGCA GGGCATGGCG GCGTGGCCCA AGTGCGGCGG CGCCAACGGC AGCATGCGCT TTAAGCCGGA GCAGAGCCAC  AGCGCCAATG CTGGGCTGGC CAACGCAGTG CTGCTGCTGG AGGACATCAA GCAGCGCTTC CCCCAAGTGT CCCACGCAGA TCTGTACCAG ATGGCCAGCG CGGTCGCGAT AGAGATCGCA  GGTGAGCAAG CAGAAGGAGG CGCAACCTGG CCTCCCTGCG TGACACCTGG CACCTCTGTT CTGGTTCATG GTGCTTGTAT GAATACCCCA CCTGCTCCCC ACACTGCGAC TCCCTGATGC  ACGATGGGTC AGCTTGTGAG CCTGCCTCCG CCTCCCCTTG CAGGCGGCCC AGTGATCCCG CTCAAGTACG GCCGCGTTGA TGCGGCGGAG AAGGACGATT GCGTGGTGGA TGGCAAGCTG  CCGTCCGGGG ACCCGGAGAG CACGCACAAG CAGTCGCCCG CAGACCACCT GCGCAAGGTG TTCTACCGCA TGGGCCTCAA CGACAAGGTG AGGCAGGCGG CAAGGGAAGC GGTTTATTGA  AGTTGACCCA AAATCCCGCA AGTTCCAACA AGAGGCCCCA ATTTATCTAT GACTCGGGCA ATATGGCTAT AGCTGTGCAA GGAAAGGGCC AGCTTTCGTC TTCTTGAATA CAATCCCGGA  CTATTCAATC AAGCGCAATG CGTTTCGAAC CTTTGTTTGC GTTTCGATGC TTTGTACCTT GTTCGGGGAT GTCGCAAGGG ACACGGCCTT GTCAATATCG TTCCATGGAC TTTAAGATCA  GGCGCCTTCA GACCGCGCCT GTTGTCGTTG TCTCACATGC TGGCTACTGC ACTTAAAGGT ACAAAAGTAG GTCAGAACAT CCTGCAGAAC GAAAAGCTAG AGGAGAAATA CTGAGGTTTA  GTCACTTAGA TGTGCAGATT CGCAGCAAGT CGATTGTGCA GCTAGAGGTT TGCGAAGGTT CACGGAGGGT CAGCCCTGTT GATTCTTGCT GGTTCCCTGG CAAAGCCAGC TCGGAGGCTC  GTCATGAGGA GACATGTCCA GCTCGTGGCC CCATGCTCGC CCCGTCGCCC CTGCCCCATG TGCCGCTCTC ACCGCTGTCT GCTGTCTGCG CATGGCTGTG CGTGCAGGAG ATTGTGGCGC  TGTCTGGCGC GCACACCCTG GGCCGCGTGT ACCCCGACCG CAGCGGCTTC GGCAAGGCCA GCACCAAGTA CACGGTGAGC ACGCGCACGC ACGCAGCAGC ACACACCGCG GGCAGATGCA  CTTACCCAAT GGGACGAGTC TTGCTTGGTG AGCTCCGTTG TGGACTGCTC GTCCCGTCCG TCTGAGGTGT TCCGCTGCCG CGCTGTGCAG GAGAACGGCC CCGGCACCAA GGGCGGCCAG  TCGTGGACCG CGGAGTGGCT CAAGTTCGAC AACAGCTACT TCAAGGTCAG CCTCCTCCGT CTGCCAAGGC CTGCACGCGA AGCTCCCGCG TGAAAACGTG CCATACGCCC CGTTCTTGCA  GGACTGGTAG TCGACTTGAT CTCGGCCTCT GTTGCGTCTC ATCATCTTGC TTCTTGAGCG CGAGTCTGTG CAGTGCTTCG AAGGTGCACT GTACGCGCAG CCGCCTCCTC TTTGTGGGGC  CGTCTCTCTG TGCGTCCCTT GCGGCGTGGC TGCAGCGTAG CTGGTGGCTG TGTGCGTGCA GGACGTGAAG GCGCGCACCG ACCCGGACCT GGTCGTCCTC TCCACCGACG GCGTCCTCTT  CCAGGACCCC GCCTTCCGGG TGAGCGCGCG GTGGCCCCAC ACCAGGCCCG GCCCTGTACT CACGTGCCAC GGCGTCTGCC TTTTTCTGGA CACCGGTGTT GCTGCCTGTG GTGGACTTTT  GTATTTTTGG CTGCTTATCT GAGCTGGTAC GTGCCTGTGC TGCAGGAGTA CGCGGAGAAG TACGCCGAGG ACGAGGAGCT GTTCTTCAAG GACTACGTGC TCGCGCACAA GAGGCTCAGC  GAGCTGGGGT CCAAGTTCGA CCCGCCCGAG GTGAGCCCCT CCCCCACTCC AAGTCCAGTG CATGCGGCAG CTCTTGCCCC GGGCTGAGCT CGCGGGTGGC CTTCCCCTCT GCATGTTTCC  CCCAGTACGC ATACCTGCTG TGCGCAACAG TATGTGCTCG ATGGCGGGTG CCATTGTCGT GGCTGGTCAC GTGCAAGAGC CTCTTTGTCC ACATGAGAAG CCCGGCAGCC CCCTGTAGGG  CTGCCACGTA CGCTTGCCCC ATTCACGGTG GGGGCTGGCT CAGTCGTGCG CTGCTCTGTG TGCTGCGTAG GGCATCGTCC TGGATGCCCA GGCCGTCAGC CCCACCCCCG CCGCAAGCAA  CAACGGCAGC AACGGCCCCG TCGCCTTCTC CGCAAAGGAC TACTACTCCG AAGCGTCCGC CAAGACAAGC AAGGTAAACA CCAGACAGTT TCCAAAATCT GCACATGTCT CATGTCTGCT  GAGCTCAATA ATCTCACTCC TGCCACCCCT TCCCATCGGC TTTGTGGCAA TATCTCCAAC AGACATGGGA TACACGCTCA CCTTCTTTGC CGGTGGGTGC AGTCTGATCT GTCTCCCGAG  ATGAAGGAGA AAATCCGGAA GGAGTACCTT GGCTTCGGAG GCAGCCCGGA CACTCCGGTT GCTGGAGGAA CAAACCCTTT CGTTGTCATC AGCATCATTG TTGCTGTTTT GGCGTTGCTG 
AGCAAAGCGA TTGGGGCCAT TTGA 

Retrieve as FASTA  
CDS
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGGCGGGCG TTGCTTCGTT GTCCAAGCAG CTATGCTCCG CGGGCAGTGT CCACATGCTG TCCGCGGTGG AGCAGTCGAT GCACCGCTGC CTCGCAATGC CCGTGCGCCT CTCAAGAGGG  CCCACCCGCA AGGCCATGTT GTTCTGCGCC CCCAGCATTG CGCTGGGCAC CAGCTTCTTG GGAGGGGCAG CCGCGCAGGG AGTGGCCAGC GTGGGCCGTG TGGCGGCCGG TGGCGGCGCG  CGCGTGGCCA TGGTGGCGGG CACGGCGGTG GACACCAAGG AGTATGTGGC GCAGCTGCGC GGGGCCAAGG AGGCGGTGCG CGAGCTGATC ACCAGCAAGA AGTCCAACCC CATCCTGGTG  CGCCTCGGCT GGCATGACGC TGGTACGTAC GACGCAGAGC AGGGCATGGC GGCGTGGCCC AAGTGCGGCG GCGCCAACGG CAGCATGCGC TTTAAGCCGG AGCAGAGCCA CAGCGCCAAT  GCTGGGCTGG CCAACGCAGT GCTGCTGCTG GAGGACATCA AGCAGCGCTT CCCCCAAGTG TCCCACGCAG ATCTGTACCA GATGGCCAGC GCGGTCGCGA TAGAGATCGC AGGCGGCCCA  GTGATCCCGC TCAAGTACGG CCGCGTTGAT GCGGCGGAGA AGGACGATTG CGTGGTGGAT GGCAAGCTGC CGTCCGGGGA CCCGGAGAGC ACGCACAAGC AGTCGCCCGC AGACCACCTG  CGCAAGGTGT TCTACCGCAT GGGCCTCAAC GACAAGGAGA TTGTGGCGCT GTCTGGCGCG CACACCCTGG GCCGCGTGTA CCCCGACCGC AGCGGCTTCG GCAAGGCCAG CACCAAGTAC  ACGGAGAACG GCCCCGGCAC CAAGGGCGGC CAGTCGTGGA CCGCGGAGTG GCTCAAGTTC GACAACAGCT ACTTCAAGGA CGTGAAGGCG CGCACCGACC CGGACCTGGT CGTCCTCTCC  ACCGACGGCG TCCTCTTCCA GGACCCCGCC TTCCGGGAGT ACGCGGAGAA GTACGCCGAG GACGAGGAGC TGTTCTTCAA GGACTACGTG CTCGCGCACA AGAGGCTCAG CGAGCTGGGG  TCCAAGTTCG ACCCGCCCGA GGGCATCGTC CTGGATGCCC AGGCCGTCAG CCCCACCCCC GCCGCAAGCA ACAACGGCAG CAACGGCCCC GTCGCCTTCT CCGCAAAGGA CTACTACTCC  GAAGCGTCCG CCAAGACAAG CAAGTCTGAT CTGTCTCCCG AGATGAAGGA GAAAATCCGG AAGGAGTACC TTGGCTTCGG AGGCAGCCCG GACACTCCGG TTGCTGGAGG AACAAACCCT 
TTCGTTGTCA TCAGCATCAT TGTTGCTGTT TTGGCGTTGC TGAGCAAAGC GATTGGGGCC ATTTGA 

Retrieve as FASTA  
cDNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
AATTCCCGGG ATTGCGCAGA GAGCTCTACG TAACCGCAGC TAAGTAGGCA CCAGTACCTA TTGTCGTTCA CCATGGCGGG CGTTGCTTCG TTGTCCAAGT AGCTATGCTC CGCGGGCAGT  GTCCACATGC TGTCCGCGGT GGAGCAGTCG ATGCACCGCT GCCTCGCAAT GCCCGTGCGC CTCTCAAGAG GGCCCACCCG CAAGGCCATG TTGTTCTGCG CCCCCAGCAT TGCGCTGGGC  ACCAGCTTCT TGGGAGGGGC AGCCGCGCAG GGAGTGGCCA GCGTGGGCCG TGTGGCGGCC GGTGGCGGCG CGCGCGTGGC CATGGTGGCG GGCACGGCGG TGGACACCAA GGAGTATGTG  GCGCAGCTGC GCGGGGCCAA GGAGGCGGTG CGCGAGCTGA TCACCAGCAA GAAGTCCAAC CCCATCCTGG TGCGCCTCGG CTGGCATGAC GCTGGTACGT ACGACGCAGA GCAGGGCATG  GCGGCGTGGC CCAAGTGCGG CGGCGCCAAC GGCAGCATGC GCTTTAAGCC GGAGCAGAGC CACAGCGCCA ATGCTGGGCT GGCCAACGCA GTGCTGCTGC TGGAGGACAT CAAGCAGCGC  TTCCCCCAAG TGTCCCACGC AGATCTGTAC CAGATGGCCA GCGCGGTCGC GATAGAGATC GCAGGCGGCC CAGTGATCCC GCTCAAGTAC GGCCGCGTTG ATGCGGCGGA GAAGGACGAT  TGCGTGGTGG ATGGCAAGCT GCCGTCCGGG GACCCGGAGA GCACGCACAA GCAGTCGCCC GCAGACCACC TGCGCAAGGT GTTCTACCGC ATGGGCCTCA ACGACAAGGA GATTGTGGCG  CTGTCTGGCG CGCACACCCT GGGCCGCGTG TACCCCGACC GCAGCGGCTT CGGCAAGGCC AGCACCAAGT ACACGGAGAA CGGCCCCGGC ACCAAGGGCG GCCAGTCGTG GACCGCGGAG  TGGCTCAAGT TCGACAACAG CTACTTCAAG GACGTGAAGG CGCGCACCGA CCCGGACCTG GTCGTCCTCT CCACCGACGG CGTCCTCTTC CAGGACCCCG CCTTCCGGGA GTACGCGGAG  AAGTACGCCG AGGACGAGGA GCTGTTCTTC AAGGACTACG TGCTCGCGCA CAAGAGGCTC AGCGAGCTGG GGTCCAAGTT CGACCCGCCC GAGGGCATCG TCCTGGATGC CCAGGCCGTC  AGCCCCACCC CCGCCGCAAG CAACAACGGC AGCAACGGCC CCGTCGCCTT CTCCGCAAAG GACTACTACT CCGAAGCGTC CGCCAAGACA AGCAAGTCTG ATCTGTCTCC CGAGATGAAG  GAGAAAATCC GGAAGGAGTA CCTTGGCTTC GGAGGCAGCC CGGACACTCC GGTTGCTGGA GGAACAAACC CTTTCGTTGT CATCAGCATC ATTGTTGCTG TTTTGGCGTT GCTGAGCAAA  GCGATTGGGG CCATTTGATT GAAATGGTTG TTCACAGATT GCGCAATTTT GTATGTTGGC TTGAGTACTG AGTTGAAGGC TGACAATAAG CAACAATTAC CATGCAATTG TAAGCATAGT  CAAGACCTTG TCGGACAAAT TGTATATGTT GACCAGAGTT CCTACATATC TTGCCATGTA GTTTAGTGCC TGTGGCATGT TTAATGTTGT AATAAGTTCT GATATAGTGA GCGTTATTGC 
CCAAAGCCAA CACAAATCCC CATATGTGTT CCAnAnCAAG TTCCTCAAAA GGCAAAAAGT TATGTATATT TTGATAATGT CAGTGTGACA TGCAAGAGTA GTTGACCATG T 

Retrieve as FASTA