Entry information : KflAPx04 (kfl00150_0080)
Entry ID 7735
Creation 2010-11-04 (Qiang Li)
Last sequence changes 2014-08-20 (Christophe Dunand)
Sequence status complete
Reviewer Not yet reviewed
Last annotation changes 2014-08-20 (Christophe Dunand)
Peroxidase information: KflAPx04 (kfl00150_0080)
Name (synonym) KflAPx04 (kfl00150_0080)
Class Ascorbate peroxidase    [Orthogroup: APx2003]
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 KflAPx04
start..stop
S start..stop
SmAPx02-1_0 406 5.09e-144 1..293 1..297
SmAPx02-2_60 403 9.06e-143 1..293 1..297
McalAPx04 400 6.22e-142 1..290 1..290
HaAPx06 393 2.9e-139 2..289 4..285
Literature and cross-references KflAPx04 (kfl00150_0080)
Literature Timme,R.E., Bachvaroff,T.R. and Delwiche,C.F. Broad phylogenomic sampling and the sister lineage of land plant, PLoS ONE 7 (1), e29696 (2012).
EST ref. GenBank:   HO464443.1  HO476104.1 [3' end]
Cluster/Prediction ref. klebsormidium DB:   kfl00150_0080 [5' end]
Protein sequence: KflAPx04 (kfl00150_0080)
Sequence Properties
first value : protein
second value (mature protein)
Length (aa):   %s   299
PWM (Da):   %s   32497.74 Transmb domain:   %s   o263-285i
PI (pH):   %s   8.52
Sequence
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Send to Peroxiscan
*.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
MAPPVVDAKY KKDIERCRRD LRALLAEKNC SPLILRLAWH DAGTYDANSK TGGPNGSIRS DREYAHGANA GLKIAIDILE PLKQKYPGLT YADIYQLGGY VAVEITGGPS IPFTPGRPDS  LACPPEGRLP DGGKDASHIR TVFYRMGLSD KDIVALSGGH TLGRAHKERS GFEDKPWTSN PLKFDNSYFI ELLAADKANL LKLPTDKALV TDPKFRPHVE KYAKDEDVFF KEYAESHKKL 
SELGCKYTAP QYFDSTADPT SSAALLYSSG IGVIATAIVA VAAYAYESSK VAAKVMKKA 

Retrieve as FASTA  
Remarks Complete sequence from genomic (7 introns) and 2 ESTs. Strain="UTEX 321".
DNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGGCTCCTC CGGTCGTTGA TGCGAAGTAT AAGAAAGATA TTGAACGGTG CCGACGGGAC CTGAGGGCGC TGCTAGCAGA GAAGAACTGT TCTCCTTTGA TACTGCGCCT TGCGTGAGTG  GTCGGATGAA GCTGAAAGCT TTTCAAGATG TCTCTATAAG GTTCCCCAGT GGTGTATATT GTTACATGGG ATGTACCTAG CGTTTGAAGT TAGGCTGCGG TACTTTGCAG ATTGATGCAG  TTGAGGTTGT TCTGTGGATT TTATGCCATT CGCTTTGTGT CCCCGGTGTA CTTCTGCTTA GCTGCGTGCC TGAATGGCAT GGTTGTTATG CAGGTCGTCT CATTCGATCC GTGCATTAGA  ATTCAAGTTG ACTAGCTGAT TCAGCTGAAT TGTAAGCTTT CAAAGTTCAT GTGCTGAATT ACCGGACAGC CCCAAGTAGA AAAGATTGGA GGGCAAAGTG ATGCTGCCAT AGTCTCATGT  CCTTTTTCAA AAACGTTTCA GAGGGCGAGG CTTCTCTTCC ACCTGTGTAC TTCAGCCTCG ACTAGATTAC TGGTTGAAAA TTACTGGCTG AATTTGTCAG ATTGGTCTAA GACAGACAAT  TATTGTGATG CCTCTTCTGG TGGTGTGACT TCGGAAGCCT AGAAGTCTGG CTATGTGGGA GCTGGTGGAG TTTTTTGAGA ATGTATGTAG CTTCAAAAGA GAATCTTTGA TCTCTGATTG  TGGTGATATT GCGGTGCCTA TATGTGTGTT TCCCCCTCTC TTTTGGAAAA TCCTGTACCA CTGTTTAAGT TGAAGACTGG CCAGACACTG GGGGAAGATT CAGTTCGTGT GACACTGGGG  GAAGATTCAG TTCGTGTGAG TCGAGGTAGC TTCTTTCGGT CAGCAATCCT TCTTTTGTGC AGGTCACAAA TAAGAGCGTC TTCTGTCTCA GTTCCCCCGA ACCAGTGAAT GCGTGAACCA  GCTGTACGCT GAAGGATGGA TTTAGTGGGA GTTGAACAAC CTGCAATCAT CCAATGCAGG TGGCATGATG CTGGCACTTA TGACGCCAAC TCAAAGACGG GGGGACCTAA TGGAAGCATC  AGAAGCGACC GAGAGTATGC TCATGGGGCG AATGCCGGCC TGAAGATTGC CATTGACATC CTTGAACCGC TCAAACAGAA GTATCCAGGG TTGACCTACG CCGACATCTA TCAGGTCAGC  CTTTAATGTA TAACGCGTGC TCCTGCTTTT TCTCAAAGGG GTCCATCAAG AATAGAGGCA AGAATAGAGG TATTGTTTAC GCCTTCTTTT GAAGCTAACA ATTGACCTGA GATCCTTCTG  AATGCCCAGC TGAAGAAATT GTAGATGTCC AGCTTGATTG CTGATCTTAC ATCGAGATGC CAGTTTATCC TGATCAATTG TATCTGCGAG ATCAGAATAC TGTCGATATC TGCTGAGGCT  GATGATTGTA ATGTCGTGTG TTCTTCTGTC TACAGCTGGG TGGTTATGTT GCAGTAGAGA TCACTGGCGG GCCCAGCATT CCTTTCACAC CAGGTGTGTA TTCAGACACC CAACCATAGC  TTGTAAAGAT TGAGCAAGCT GCTTATGCAG ATCCCCGTAA GCGCACAATT GCGCAAACGA CGCCGAAGGG CGATCTTACG TGTAGTTGCT GCGCATAATG ATGGTACTAG GGCCCGTACA  AGGGACAAAC TAACCGGAAT TCCAAGAGCA GTAGGAGGGG CATTCCTTTT CAAGGTCACC AAGGAAATTC AAGAAGCCAA AATAGCACCA TGCATGATTT CTGTTTGCTC TCCATATCGG  GGCAAGGATG GTCAGATGAT GCTTCTTATT GACACAAAGC GTGCTGCTTC GTAGGCCCTT TCCAAGGCAT CTGTCTCTGT TGTTGCTTCT CTCCTGTCCC GTAGAGATTG ACAGGTTGGT  GGGATCCGTC CTTGAAGCGT CCGGTTGCTT CTCTGCAGGA CGGCCGGATT CTCTGGCCTG TCCACCCGAG GGACGTCTTC CTGACGGCGG CAAAGGTGAG CAATCTCTCA AGGGCTTAGT  CTTGCTTCAA AATCTCGTGT TGAGGGAGCA AGGTACTCGG CAGATCAGGC TTTTGCTCCT CGTATTTTGA AGGCCCCTGC GAGTCGGTGG CCAGGAAAGA CAAGGTATTC AGGATGAGGT  GCACGAGAAG GTGTGAAAGC GTATGTTTGT TGGTTGAGGG CAAGAGTCAC AGCCTAGCTT TTGGGCGCTG TAAATACGTC GTTCCTCCGA AATTCTGAGG ATTTGGGACG CACGAGTATC  ATTGGTGCAT TATTTGCTCA TAACGGTCAC TTTCAACAGT AAAAGGTAGC TCTCATGCTG GTTTAAGTTA CCGACACCCT GGTACGAAGT GGACAATATT GTCTGCTCAC TGCACCTCTC  ATTCTCCTGT GCAGACGCCT CCCACATCCG TACAGTCTTC TATAGAATGG GCCTCAGCGA CAAGGACATC GTGGCGCTCT CTGGGGGGCA CACTCTGGTA CGCTTGCCTT TTGCTGATTG  CACCTAGTCA CTTGCTACTT TTACGTGCAG TGACTCTTTG CCGCTCTGTA GGGTCGTTTC ATTTTGTGCT TGCAAGAGTC GCAGCCCTCT GACGGACCAG TTTTTGCTCT TTCCTCTGCT  GTTCTTGAAA GATGGTCATG CAAGCACTCG TAGCGGTGCT CATGAAGTTG AAATTGTCAG AGGGGATACT TCATCGAGCA TTTTTGTAGA TCCATTTTAT TGCGAACCAG CGGGGCTAGT  GTATCGTGAG CTTTTCCACC GATTCAGAAG TGTCGTTCTT CGTGTTCTTC CCTTTCAAGT CATTATGGTC ACAGGAGTCG GGCTCAGATG CTTCCAACAA CATCTCAGTC TGATGCTTCC  GTTGCTAGAA CTGCAGCGCT CCCCCAGAAG CAGTAACAGC GCTTCATTTG CGAGGAAGGA ATACAAGCCT GTACAACTCG GAAAACTGCA GGGCCTACCC GGCAATTGGC ACTCCAACTT  GGAGTTTCTC ATGTGCAGGG GCGTGCGCAT AAGGAGCGGT CCGGATTCGA AGATAAGCCG TGGACGTCCA ACCCGCTAAA GTTCGACAAC TCCTACTTCA TGTGAGCCTC CCAATATTAT  TTCCCCGAAC ATCCCGCTCA ATCAATCACT CACTTGTTCT CTCGCGGAAA CGATCTGCGA TTCCCGCAGG AACGCCCTTG TCTTCCTTGC ACTGGGAGGC GTGTGCATGA GAAATCTCTT  GTGGTTGATG GAGAACTCAA TCACACCAGT CCAGGTGACA AGGGACCTTC GTGTACTTCT AGCAATTAGC CGGAGTTGCT TGCTTGTATC TCCATTGCGC ACGGTGTCGT TTCTCCTTTC  TTTTTGCCAG ATTGACGAGG CTTTTTGCTC AACAAGCACC CTTTCTCTCT GACCCCTTTT CTGCAATCAT CTCTAAAGAG CCTTCTCGCC TTTCGCCCCC CAGACAAGCG CGATTGCCTA  AACTTCCCGT GAGTATCTTC CCCAGTAACA TTGATAGTGC TGGCACGCGT GTTGGTTGTC CCATTGCTTA TCAACGTGTT TCGCTTCGCA GCGAGCTGCT GGCTGCCGAC AAGGCGAACC  TGCTGAAGCT GCCAACCGAC AAGGCGCTCG TGACGGATCC CAAGTTCCGG CCGCACGTCG AGAAGTACGC CAAGGTGGGT CGCGCTCATT GACTACCTCT CATGGTTAAC TATGTGTTCG  TTCTAGAGCT TCGAATTGAA AAGCTTGTGC CAATGGTTTT GTCCGCAACA GAGCGTGTTT CGGAGGCTGT ATGCCTGTCT ACTACCAACC TGTTTCTGGG AAGGAATTCC GAGGCAAAGC  TGAACAGCGT TTTTCCGGGC CTCCCGTTCA CGTGTAGTTG CTCAACGGTG TGCAACGTCG CAGTCGGACG AGAATTATGT TCACCAAACG GCAGAGATCG TCAGGGATCA ACATCCTTCC  GACATTATCA CACCTCATAT CCAAAGGCTC CCTTCAATCG CGAGCTCCAC CAGAGTTCGA CGTTGCTCTG ATTCGTTATC AAAGCCTCAT GAGCGCTGGC CCGTTTCTTA GCACTTCGCC  TATTTGTCAA CCGGCCCGTT TTCAGCACTT TGCCTGTTTG TCAACCGCAG GATGAGGACG TGTTCTTCAA GGAGTACGCC GAGTCCCACA AGAAGCTGTC CGAGCTTGGG TGCAAGTACA  CCGCCCCCCA ATACTTTGAC AGCACGGCCG ACCCCACGAG CTCTGCGGCC CTCCTATACT CGTCGGGAAT TGGCGTCATT GCTACAGCAA TTGTGGCGGT CGCTGCGTAT GCCTACGAAT 
CGAGCAAAGT GGCTGCAAAG GTTATGAAGA AGGCGTAG 

Retrieve as FASTA  
CDS
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGGCTCCTC CGGTCGTTGA TGCGAAGTAT AAGAAAGATA TTGAACGGTG CCGACGGGAC CTGAGGGCGC TGCTAGCAGA GAAGAACTGT TCTCCTTTGA TACTGCGCCT TGCGTGGCAT  GATGCTGGCA CTTATGACGC CAACTCAAAG ACGGGGGGAC CTAATGGAAG CATCAGAAGC GACCGAGAGT ATGCTCATGG GGCGAATGCC GGCCTGAAGA TTGCCATTGA CATCCTTGAA  CCGCTCAAAC AGAAGTATCC AGGGTTGACC TACGCCGACA TCTATCAGCT GGGTGGTTAT GTTGCAGTAG AGATCACTGG CGGGCCCAGC ATTCCTTTCA CACCAGGACG GCCGGATTCT  CTGGCCTGTC CACCCGAGGG ACGTCTTCCT GACGGCGGCA AAGACGCCTC CCACATCCGT ACAGTCTTCT ATAGAATGGG CCTCAGCGAC AAGGACATCG TGGCGCTCTC TGGGGGGCAC  ACTCTGGGGC GTGCGCATAA GGAGCGGTCC GGATTCGAAG ATAAGCCGTG GACGTCCAAC CCGCTAAAGT TCGACAACTC CTACTTCATC GAGCTGCTGG CTGCCGACAA GGCGAACCTG  CTGAAGCTGC CAACCGACAA GGCGCTCGTG ACGGATCCCA AGTTCCGGCC GCACGTCGAG AAGTACGCCA AGGATGAGGA CGTGTTCTTC AAGGAGTACG CCGAGTCCCA CAAGAAGCTG  TCCGAGCTTG GGTGCAAGTA CACCGCCCCC CAATACTTTG ACAGCACGGC CGACCCCACG AGCTCTGCGG CCCTCCTATA CTCGTCGGGA ATTGGCGTCA TTGCTACAGC AATTGTGGCG 
GTCGCTGCGT ATGCCTACGA ATCGAGCAAA GTGGCTGCAA AGGTTATGAA GAAGGCGTAG 

Retrieve as FASTA  
cDNA
Send to BLAST
.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
TCTAGnTTnn CGGAGAnTCT TGCCAGTGCA AGCAGGAGCG CTTTGGTCAG GGTTCTTTGT GAAAATGGCT CCTCCGGTCG TTGATGCGAA GTATAAGAAA GATATTGAAC GGTGCCGACG  GGACCTGAGG GCGCTGCTAG CAGAGAAGAA CTGTTCTCCT TTGATACTGC GCCTTGCGTG GCATGATGCT GGCACTTATG ACGCCAACTC AAAGACGGGG GGACCTAATG GAAGCATCAG  AAGCGACCGA GAGTATGCTC ATGGGGCGAA TGCCGGCCTG AAGATTGCCA TTGACATCCT TGAACCGCTC AAACAGAAGT ATCCAGGGTT GACCTACGCC GACATCTATC AGCTGGGTGG  TTATGTTGCA GTAGAGATCA CTGGCGGGCC CAGCATTCCT TTCACACCAG GACGGCCGGA TTCTCTGGCC TGTCCACCCG AGGGACGTCT TCCTGACGGC GGCAAAGACG CCTCCCACAT  CCGTACAGTC TTCTATAGAA TGGGCCTCAG CGACAAGGAC ATCGTGGCGC TCTCTGGGGG GCACACTCTG GGGCGTGCGC ATAAGGAGCG GTCCGGATTC GAAGATAAGC CGTGGACGTC  CAACCCGCTA AAGTTCGACA ACTCCTACTT CATCGAGCTG CTGGCTGCCG ACAAGGCGAA CCTGCTGAAG CTGCCAACCG ACAAGGCGCT CGTGACGGAT CCCAAGTTCC GGCCGCACGT  CGAGAAGTAC GCCAAGGATG AGGACGTGTT CTTCAAGGAG TACGCCGAGT CCCACAAGAA GCTGTCCGAG CTTGGGTGCA AGTACACCGC CCCCCAATAC TTTGACAGCA CGGCCGACCC  CACGAGCTCT GCGGCCCTCC TATACTCGTC GGGAATTGGC GTCATTGCTA CAGCAATTGT GGCGGTCGCT GCGTATGCCT ACGAATCGAG CAAAGTGGCT GCAAAGGTTA TGAAGAAGGC  GTAGGACGTG TCGAAGATTC TGGTGTACTA AAAGACACTA TTTGGCATTG CAAGAACGAA CAGGCTCCTC CATTTCGAGG TGGACATGAA TGATTCTGCA CAAAGGGCAC ACTTAGCAGG  CCGAGCGTGC TGCAATCAAA GTACGTACTT GGAAACAACT GCATAGAGGA CGTTGTTGAA AGCTGGCCGA CTCGAAGCCT TTAACCTCGC ACCCAAGATG TTGGTGTACG GCCAGTCTGC  ATTTGCGCTA GGTGCGAATT CTGACGGACT TCGACGACAA TCTGTACTCC CCGCCTTCAA CTTGGAGATA TCGAACATGC TCCGTTGAAA ACAACATCTT GGGTGCGAGT CCAAGGGGCC 
CGAGCAAGTC ACTTGCTCAA TCTGGCACTA GGTACCAATA TGGCTCTATA TATAATCGGT CGCTTGAGCA GTCGCGTTTG CTCCATGCAG CACACAATTC AAATTTTT 

Retrieve as FASTA