Entry information : KflAPx02 (kfl00043_0220)
Entry ID 7732
Creation 2010-11-03 (Qiang Li)
Last sequence changes 2014-08-21 (Christophe Dunand)
Sequence status complete
Reviewer Not yet reviewed
Last annotation changes 2014-09-04 (Christophe Dunand)
Peroxidase information: KflAPx02 (kfl00043_0220)
Name (synonym) KflAPx02 (kfl00043_0220)
Class Ascorbate peroxidase    [Orthogroup: APx002]
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 KflAPx02
start..stop
S start..stop
SsAPx04_AU1 365 9e-124 142..447 76..352
RobtAPx04 354 8e-121 145..447 1..274
NhyAPx05 357 6e-120 155..447 125..392
NhyAPx02 351 6e-118 155..447 124..391
Literature and cross-references KflAPx02 (kfl00043_0220)
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:   HO448051.1   HO457374.1
Cluster/Prediction ref. klebsormidium DB:   kfl00043_0220
Protein sequence: KflAPx02 (kfl00043_0220)
Sequence Properties
first value : protein
second value (mature protein)
Length (aa):   %s   449
PWM (Da):   %s   49250.88  
PI (pH):   %s   5.92
Sequence
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Send to Peroxiscan
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MFTTKPFATK WAGQGTDLFG KTEKQRALVD TWLEVEGQNY NPPVATIVGQ VVFAPMFGGQ TDMKVVEEQI QKLEKVLDVY EDHLAKNQYL AGDEFTLADL SHLPYTALLL KTDAGAGFLR  RAHLKAWWER ISTRPSWLKI TGTESARNVE EYTAQLKGAA EALKQLFHST HANPICVRIG WHDSGTYDKN ISASEWPKAG GAVGSIRFKP ELLHGANAGL DQALALLEPI KQRYPSISYA  DLFQLASKIG IQEAGGPKLP LRFGRVDVDT PEHCSPEGNL PAAVPGTAKA GGGLASKESA GEHLRRIFYR MGLTDQDIVA LSGAHTIGRS HNDRSGFGAD KTKYTEGGDI GTPGGSSWVP 
DWLVFNNSYY QVTKDVANGW VDPAEKHDPE LISFSTDQVI FKDPEFAKYA EKYRESQDAF FADYAVSHKK LSELGSKFDP PEGIEVDF* 

Retrieve as FASTA  
Remarks Complete sequence from genomic and 2 ESTs. Strain="UTEX 321". 5' end contains a Glutathione S-transferase (GST) family. Incorrect prediction from KDB (very long 5'end). Prediction need confirmation.
DNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGTTCACCA CAAAGCCATT TGCTACCAAG TGGGCCGGCC AGGGAACCGA TCTTTTCGGC AAGACAGAGA AACAGCGTGC TCTTGTCGAC ACATGGCTGG AGGTCGAGGG GCAAAACTAC  AACCCCCCTG TAGCCACCAT TGTTGGCCAG GTGGTGTTTG CACCAATGTT TGGAGGACAG ACTGACATGA AAGTCGTCGA GGAGCAGATC CAGAAGCTGG AGAAGGTAAG GTGCTTTGTT  CACCAGAGGG TTTTGTTCAA AATGCTGAGA CCCTGGTCCA CAGCTTGGGT GGTGGACATC GTGGCATTGG AGCAGTGGGA CTAACGAGGC ATGGTCAGTT GCAACTTACG AGCATCTGTC  AATCTTGTTG CTCACAAACG CGGAATGGAT CGGCTGCAAG TTTCTGGATA CTGGTATGAT CGTATGTCCA TACCCTTTTC ATTCCCTCAA GCAGCCTGCC TTGATAGAGC AACTTACAGA  TCTCGGGGCA TGGTCATGCG AGAATCCTTT CTGAATTCTT TGAAAGTATC ACTCAAAGAT TCTACAGCGT TTCATCAGCT GTGTTCTATG CAAGCTTCTG GTATTAACAG GTGCGGGACA  TGTAGAAGAC CAAGTGTCAA CGGGCCCCCA GCAGCTTAGA ACAGTGCAAT AAGTGTTTGG CTGGGCGTCG CTGAGTTCCT CCAGTTACTC ATCCTGACAG GTTCTGGACG TGTACGAGGA  CCACCTGGCC AAGAACCAGT ACCTCGCTGG AGACGAGTTC ACGCTCGCTG ACCTCAGCCA CCTCCCCTAC ACCGCCTTGC TGCTCAAGAC CGATGCTGGA GCGGGCTTCC TTAGGAGGGC  GCACCTGAAG GCCTGGTGGG AGCGCATCTC GACGCGCCCT TCCTGGCTCA AGATTACTGG CACGGAGTCT GCCCGGAACG TTGAGGAGTA CACCGCACAG CTCAAGGTAC GGGAAAGAAG  GTCGATTTGC AGTTTTGCAG CATGATAGTT GCACAGAAGA TATGAAAGTT GCGATATGAC TGACTTGACA AAGACGAACT TGGCTCACTT TGCAGGTGGT GCTTATTGCT TTCGCTCTAG  CAGATTATGA CCGGCTCGTA CAGAAGTCGG GCAGAGCAAG GTAGTACTTT CGTGACTGAA GGAACAAAAG GGCGCCGGAT TTAGAAGAAC ACACTGGTTG AGATGCTCGG ATGTTGCAGG  CGATTGTGTG TTGGCTTTGT GAAACATCCA TTCCACTTTG ACATCCTCCA AGATCCGAAG CATGCTTGTG TCGAGCCATT CGGAAGAGCG CGCTTGCTTA CAAAGTGGTC GTCCTTGCCC  GCAGGGTGCC GCTGAGGCCC TGAAGCAGCT CTTCCACAGC ACCCACGCCA ACCCCATCTG CGTTCGCATC GGCTGGCATG ACTCGGGCAC GTACGACAAG AACATCTCGG CATCCGAGTG  GCCCAAGGCC GGAGGCGCCG TCGGGAGCAT TCGTTTCAAG CCGGAGCTTC TCCATGGGGC AAACGCCGGT TTGGACCAGG CGCTGGCGCT GCTGGAGCCC ATCAAGCAGA GGTACCCGTC  CATCAGCTAC GCCGACCTCT TCCAGCTGGC CAGCAAGATC GGAATTCAGG AGGCGGGCGG GCCCAAGCTG CCCCTCCGGT AAGTGACTGT TCTCAAGCTT GCGCAAGAGT GTGATGGTGG  GATGCTTGAA ATGCATCTTT TGCGACCCCG TTATCGATTT CATTCGGGTG CCGGGGTGAG AGCGAACGAG GACAAGGTTG ATGCAAATTG ACTCAACTTA AGTTGAGGGT GCTGTATCGC  TGGGTGCTAT ATTGCAGCCG GTCTGACCTG ACCAATCTAT TCACGCCCCC TGATTGATGT TACATTGCTG CCTCATTGTT TTTAGACTGC GTCGAATCGG TTCTAGACTG CTGACACAAT  GTTCAGCCGA TCACGAATGT CTGGATGTTC AGCTTTCGAT AGCTTGATAA ACTTTGGATA TACGGGAATT GCTAGCGAAA CGTTCAAAGA TGCAGTTTGT TCTGTTGACC AGGTTCGGCC  GTGTGGACGT GGATACTCCT GAGCATTGCT CCCCCGAGGG CAACCTGCCC GCGGCTGTCC CCGGCACGGC CAAGGCCGGC GGCGGACTTG CCTCGAAAGA GAGTGCGGGC GAGCATCTGC  GCCGCATCTT CTACAGGATG GGCCTCACCG ACCAGGACAT CGTCGCCCTG TCAGGTGCGG CAACGACAGC CTTTGGTGAC TGGTTGTTTG CTCGACTGCG GTTGCGTTCA AAGCCTGAGA  CTGTCTGGAC TGAACACCTC GCCTTTTAAC CTACAAGCAG CATTGCCTTG TCCTCAGCAG ATTTGTTTAT TGAGACTCAG CATTGGTGAT TCGAATTAAC CAAACCGAAG AATTTCTGAC  GGACTTGTCT TTCGCTTTTC CGGCATGGAC CGGCACAGCT ACGCAGGCCA CAAAATCTCT GGCGCAGGAT CCGCTAGCGT GATTAATTGT TCGATACGCC ATGTTGTTGA CAATTTAGTC  AGGTCGGCTA TGCTCACGGC TGACCTTCCG CTACGTTTGC AGGCGCCCAC ACCATTGGGA GGTCTCACAA CGACCGGAGC GGTTTCGGGG CTGACAAGAC CAAGTACACC GAGGGGGGCG  ACATTGGAAC TCCGGGCGGG TCCAGCTGGG TGCCGGATTG GCTCGTGTTC AACAACAGCT ACTACCAGGT ACGGTTGCAG TCAGGCTGAT TCACGTAAAG CAGAGCTTCT TTCTATCCTC  TACACGCTCG GCAGCACAGG TCTTGCCAAC ACGTCGGCTG GACGAGATGT CCTTGGAGAG TTGCTTGACA AGGCAGAGGC AAACGGTGAA ATGAGTCGGT CGATACAGTG ATTCTGCTCG  CTTTGATCAA AACAAGAGAG AGTTGCAGGC AACTTTTTCA GCTATTGCCT ACAGTCACAC TCGTCTTACA GTTCGACATC CTGTTCGCTT GTTCCTTGGG GCCTTGGACG TTTGAAACAA  AAGCGTCATT GAGACGTTTT GCACCCACCG CATGTTTGGC TGACGAAGAC GACGTCACTT TTGTGCAGGT GACCAAGGAC GTGGCCAACG GTTGGGTGGA CCCTGCCGAG AAGCACGACC  CCGAGCTCAT CTCCTTCTCG ACCGACCAGG TCATCTTCAA GGATCCTGAG TTCGCCAAGT ACGCCGAGAA GTACCGTGAG AGCCAGGACG CCTTCTTCGC AGACTACGCG GTCAGCCACA 
AGAAGCTGAG CGAGCTGGGC TCCAAGTTCG ACCCGCCAGA GGGCATCGAG GTGGACTTCT AA 

Retrieve as FASTA  
CDS
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGTTCACCA CAAAGCCATT TGCTACCAAG TGGGCCGGCC AGGGAACCGA TCTTTTCGGC AAGACAGAGA AACAGCGTGC TCTTGTCGAC ACATGGCTGG AGGTCGAGGG GCAAAACTAC  AACCCCCCTG TAGCCACCAT TGTTGGCCAG GTGGTGTTTG CACCAATGTT TGGAGGACAG ACTGACATGA AAGTCGTCGA GGAGCAGATC CAGAAGCTGG AGAAGGTTCT GGACGTGTAC  GAGGACCACC TGGCCAAGAA CCAGTACCTC GCTGGAGACG AGTTCACGCT CGCTGACCTC AGCCACCTCC CCTACACCGC CTTGCTGCTC AAGACCGATG CTGGAGCGGG CTTCCTTAGG  AGGGCGCACC TGAAGGCCTG GTGGGAGCGC ATCTCGACGC GCCCTTCCTG GCTCAAGATT ACTGGCACGG AGTCTGCCCG GAACGTTGAG GAGTACACCG CACAGCTCAA GGGTGCCGCT  GAGGCCCTGA AGCAGCTCTT CCACAGCACC CACGCCAACC CCATCTGCGT TCGCATCGGC TGGCATGACT CGGGCACGTA CGACAAGAAC ATCTCGGCAT CCGAGTGGCC CAAGGCCGGA  GGCGCCGTCG GGAGCATTCG TTTCAAGCCG GAGCTTCTCC ATGGGGCAAA CGCCGGTTTG GACCAGGCGC TGGCGCTGCT GGAGCCCATC AAGCAGAGGT ACCCGTCCAT CAGCTACGCC  GACCTCTTCC AGCTGGCCAG CAAGATCGGA ATTCAGGAGG CGGGCGGGCC CAAGCTGCCC CTCCGGTTCG GCCGTGTGGA CGTGGATACT CCTGAGCATT GCTCCCCCGA GGGCAACCTG  CCCGCGGCTG TCCCCGGCAC GGCCAAGGCC GGCGGCGGAC TTGCCTCGAA AGAGAGTGCG GGCGAGCATC TGCGCCGCAT CTTCTACAGG ATGGGCCTCA CCGACCAGGA CATCGTCGCC  CTGTCAGGCG CCCACACCAT TGGGAGGTCT CACAACGACC GGAGCGGTTT CGGGGCTGAC AAGACCAAGT ACACCGAGGG GGGCGACATT GGAACTCCGG GCGGGTCCAG CTGGGTGCCG  GATTGGCTCG TGTTCAACAA CAGCTACTAC CAGGTGACCA AGGACGTGGC CAACGGTTGG GTGGACCCTG CCGAGAAGCA CGACCCCGAG CTCATCTCCT TCTCGACCGA CCAGGTCATC  TTCAAGGATC CTGAGTTCGC CAAGTACGCC GAGAAGTACC GTGAGAGCCA GGACGCCTTC TTCGCAGACT ACGCGGTCAG CCACAAGAAG CTGAGCGAGC TGGGCTCCAA GTTCGACCCG 
CCAGAGGGCA TCGAGGTGGA CTTCTAA 

Retrieve as FASTA  
cDNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGTTCACCA CAAAGCCATT TGCTACCAAG TGGGCCGGCC AGGGAACCGA TCTTTTCGGC AAGACAGAGA AACAGCGTGC TCTTGTCGAC ACATGGCTGG AGGTCGAGGG GCAAAACTAC  AACCCCCCTG TAGCCACCAT TGTTGGCCAG GTGGTGTTTG CACCAATGTT TGGAGGACAG ACTGACATGA AAGTCGTCGA GGAGCAGATC CAGAAGCTGG AGAAGGTTCT GGACGTGTAC  GAGGACCACC TGGCCAAGAA CCAGTACCTC GCTGGAGACG AGTTCACGCT CGCTGACCTC AGCCACCTCC CCTACACCGC CTTGCTGCTC AAGACCGATG CTGGAGCGGG CTTCCTTAGG  AGGGCGCACC TGAAGGCCTG GTGGGAGCGC ATCTCGACGC GCCCTTCCTG GCTCAAGATT ACTGGCACGG AGTCTGCCCG GAACGTTGAG GAGTACACCG CACAGCTCAA GGGTGCCGCT  GAGGCCCTGA AGCAGCTCTT CCACAGCACC CACGCCAACC CCATCTGCGT TCGCATCGGC TGGCATGACT CGGGCACGTA CGACAAGAAC ATCTCGGCAT CCGAGTGGCC CAAGGCCGGA  GGCGCCGTCG GGAGCATTCG TTTCAAGCCG GAGCTTCTCC ATGGGGCAAA CGCCGGTTTG GACCAGGCGC TGGCGCTGCT GGAGCCCATC AAGCAGAGGT ACCCGTCCAT CAGCTACGCC  GACCTCTTCC AGCTGGCCAG CAAGATCGGA ATTCAGGAGG CGGGCGGGCC CAAGCTGCCC CTCCGGTTCG GCCGTGTGGA CGTGGATACT CCTGAGCATT GCTCCCCCGA GGGCAACCTG  CCCGCGGCTG TCCCCGGCAC GGCCAAGGCC GGCGGCGGAC TTGCCTCGAA AGAGAGTGCG GGCGAGCATC TGCGCCGCAT CTTCTACAGG ATGGGCCTCA CCGACCAGGA CATCGTCGCC  CTGTCAGGCG CCCACACCAT TGGGAGGTCT CACAACGACC GGAGCGGTTT CGGGGCTGAC AAGACCAAGT ACACCGAGGG GGGCGACATT GGAACTCCGG GCGGGTCCAG CTGGGTGCCG  GATTGGCTCG TGTTCAACAA CAGCTACTAC CAGGTGACCA AGGACGTGGC CAACGGTTGG GTGGACCCTG CCGAGAAGCA CGACCCCGAG CTCATCTCCT TCTCGACCGA CCAGGTCATC  TTCAAGGATC CTGAGTTCGC CAAGTACGCC GAGAAGTACC GTGAGAGCCA GGACGCCTTC TTCGCAGACT ACGCGGTCAG CCACAAGAAG CTGAGCGAGC TGGGCTCCAA GTTCGACCCG  CCAGAGGGCA TCGAGGTGGA CTTCTAAGTT GCACGCGTTG GGCATTGCGC GGGTCGTCGG TTGCAAGTTT CACTGTTGCC ACACAGTTGT AGATTACAGG AAGTGACGTC AAAGACCTCG  GGCTGTCAAT GGGATGAGGA GACTTTTTCT AGGTCATATC TTGAGTTTCT GCGCAGCTAC TGCAAGGGAA GGTATTTGCC GTGGTATTAA GTCGAGCAAC ACATCTGTCT CCAAGAATAT  CTTCGGTTCG TGTCTGCACT TTTCCGCCCC TCAGATCTTT TGATGTAGTG GGACTGAAAA CGTGGCAGGG TTCGAAAGGG TACAGACATA CTCCGTTCAG AATCCGTTCC GGGAGGAATG 
CATGTAGTCC AATACATGTG CAAGGTAACC GCGGCCCGGT GCAGCGCGCA CTAGTTGACA TATACCCATG GTCGTACGCC CTTATTAAAA TCTCATAGCA C 

Retrieve as FASTA