Entry information : KflAPx03 (kfl00137_0160)
Entry ID 376
Creation 2005-06-16 (Christophe Dunand)
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: KflAPx03 (kfl00137_0160)
Name (synonym) KflAPx03 (kfl00137_0160)
Class Ascorbate peroxidase    [Orthogroup: APx2024]
Taxonomy Eukaryota Viridiplantae Streptophyta Klebsormidiophyceae Klebsormidiaceae Klebsormidium
Organism Klebsormidium flaccidum    [TaxId: 3175 ]
Cellular localisation N/D
Tissue type Seedling roots
Inducer Sinorhizobium inoculation
Repressor N/D
Best BLASTp hits
Perox score E-value KflAPx03
start..stop
S start..stop
KflAPx-R02 152 3.86e-44 106..319 78..299
EUgAPx-R01 146 1.36e-42 119..325 20..237
GmonAPx03 141 1.57e-40 101..328 16..250
GmAPx26 138 1.98e-39 101..323 16..246
Literature and cross-references KflAPx03 (kfl00137_0160)
Literature VandenBosch,K. et al., unpublished
Cluster/Prediction ref. klebsormidium DB:   kfl00137_0160
Protein sequence: KflAPx03 (kfl00137_0160)
Sequence Properties
first value : protein
second value (mature protein)
Length (aa):   %s   328 (295)
PWM (Da):   %s   35244.61 (31544.6) Transmb domain:   %s   i7-25o
PI (pH):   %s   8.37 (6.02) Peptide Signal:   %s   cut: 34 range:34-328
Sequence
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Send to Peroxiscan
*.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
MAISSKSRRY PSPFPRALVT LFFAFLLFAR AASRVLPEDS TGDQTWNQTT VNQAGNNQTG NQTRINQIGS DQTGNQTAAS SRRRLLQSNN WSQPSSGPVD VNRAYKVLAK YVTVDIAGIL  LRMAFHDAGT YDKSSGTGGA NGSLKYELSR ALNEPISSHW SVIESIKGGL PNVSYADVIF LAGFYAIHIT GGPLVTSVRT GRVDASVADP DNRLPLSSWN ADQLTSHFGD AYGFGCQELV 
ALSGAHSIGT SKVTPPLGPM DDTSRVFDVR YYQKLVNGGG SFPSDKALSQ SSDTSPYVRT YAGDQDAWWA EFVDALKKIG DLGATYES 

Retrieve as FASTA  
Remarks Complete sequence from genomic.
DNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGGCGATCT CCTCAAAAAG CAGAAGGTAC CCGTCTCCCT TTCCGCGGGC ACTCGTCACT CTCTTCTTCG CGTTCCTCCT CTTCGCCAGG GCCGCTTCTC GGGTCCTACC GGAAGACTCA  ACCGGGGACC AAACCTGGAA CCAAACCACG GTTAACCAAG CCGGGAATAA CCAAACCGGG AATCAAACCA GGATCAACCA GATTGGAAGT GACCAAACCG GAAACCAAAC CGCGGCCTCC  AGCCGCCGGC GCCTTCTGCA AAGTAACAAC TGGAGCCAAC CGAGCAGCGG CCCGGTAGAT GTGAACCGGG CGTATAAGGT GTTGGCAAAG TATGTGACGG TGGACATTGC GGGCATTCTC  CTCAGGATGG CGTTCCACGA CGCGGGCACG TATGATAAGA GCTCGGGCAC GGGTGGCGCG AACGGGTCGC TCAAATACGA GCTCAGCAGG TACGTATAAA GTCCTTTTGG GGCAGATTGG  TTTGTTGCAC CAATCAACTT TACTTTCTGC GGTCCAAGCA ACGTAGAAGC GAAGTCTATT GAGAAGAGTC CTTGATTTTT TGCACACAGA TTCGTGCTTC AATGCGGTGC TCGAATCCAA  ATCCTGATTT TTCGACCTGA CCGTTGCTAC TTTGCGGGTT TGCTTATTCC TTTCATTTCT CTCCGTTCTT TCCTCTTCCC TCCGTTCATC TAGCATCCCT CTCCATTTTG CTTTCTCGGT  TCTCCTGCTC TGTACCTCGG TTCTCCTCCT TCCTTCGTTG TCGGAAGGAA TCATTTCACG ACGAATTCGC TTAAAAGGCC ACTCGAGCTC AGAGTTTGAT AAGTTGGCTC TTTTCACCCG  GCGCTGCTTT TATCATCCCT CTTTGACTTT CTCTTCTCGC AACTCCTCCG ACTTTTTCCT GCTCCTCAGG GCCCTGAACG AGCCCATCTC CTCACACTGG TCCGTCATCG AGTCCATCAA  GGGCGGCCTC CCTAACGTCA GCTACGCTGA CGTCATCTTC CTAGCCGGTT TCTACGCCAT CCACATCACC GGGGGACCCC TCGTCACGAG CGTCCGAACC GGACGCGTGG ACGCGAGCGT  CGCGGATCCG GACAACCGGC TCCCGCTGAG CTCATGGAAC GCCGACCAGC TGACGTCACA CTTCGGCGAC GCGTACGGTT TCGGGTGCCA GGAGCTGGTC GCCCTCTCGG GGGCGCACAG  CATCGGGACG TCGAAAGTCA CTCCGCCTCT GGGCCCTATG GTGAGGCGTA AAGCTTGGGG AACAATCTAC GTCTGCGTTT CGCTGCCCCT GGCCCCCCGG CTGTGACTGT AGTGTAATCT  TGCCCTTGCT GAAGCGACCA TCTGCGTGGA GAAGGCTGAT ATCGATCTTC TGTGATTGGT GGACGTTCTC ATTGCCATGC GAAAAATCGC GTGCAGTACA CGGATTTCTG ATTTTCAGTG  CTTCGATTCA CCATGGATTT CGCTTTGCCT GGAATCTCCC ATATACTACT TAATCTCCTT CGCTGTACGA ACAGAACCTT TGACAATATC ATGTGACGAT GCATTCCGAA ATGAAAATGG  AACAGAACGG TCAAACCGAA GGAACGGAGT CATCGGTGAT CGTTGAAACT TTTATAAACG AAGATTCCGT GAAGTATCGT TTCGTTAGCC GCTTCTTCCT ACCTCTTCTG CATTTCGAAC  AACCGTTCCA TCACGCTTTC ATTCCAGATG GCCCTGGAAT AAGCGAAGCC TTTAGCCCGT AGAATTCATC TGTCGAAGAT TTCGCACGAA TAGCTGTCCT TAAATGACAG GACGACACGT  CGCGCGTCTT CGACGTGCGC TACTACCAGA AGCTCGTGAA CGGCGGCGGG TCCTTCCCTT CGGACAAGGC CCTGTCCCAG AGCTCGGACA CTAGCCCATA CGTCCGCACG TACGCCGGCG 
ACCAGGATGC GTGGTGGGCG GAGTTTGTCG ACGCCCTCAA GAAGATAGGC GACCTGGGTG CTACCTACGA ATCA 

Retrieve as FASTA  
CDS
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGGCGATCT CCTCAAAAAG CAGAAGGTAC CCGTCTCCCT TTCCGCGGGC ACTCGTCACT CTCTTCTTCG CGTTCCTCCT CTTCGCCAGG GCCGCTTCTC GGGTCCTACC GGAAGACTCA  ACCGGGGACC AAACCTGGAA CCAAACCACG GTTAACCAAG CCGGGAATAA CCAAACCGGG AATCAAACCA GGATCAACCA GATTGGAAGT GACCAAACCG GAAACCAAAC CGCGGCCTCC  AGCCGCCGGC GCCTTCTGCA AAGTAACAAC TGGAGCCAAC CGAGCAGCGG CCCGGTAGAT GTGAACCGGG CGTATAAGGT GTTGGCAAAG TATGTGACGG TGGACATTGC GGGCATTCTC  CTCAGGATGG CGTTCCACGA CGCGGGCACG TATGATAAGA GCTCGGGCAC GGGTGGCGCG AACGGGTCGC TCAAATACGA GCTCAGCAGG GCCCTGAACG AGCCCATCTC CTCACACTGG  TCCGTCATCG AGTCCATCAA GGGCGGCCTC CCTAACGTCA GCTACGCTGA CGTCATCTTC CTAGCCGGTT TCTACGCCAT CCACATCACC GGGGGACCCC TCGTCACGAG CGTCCGAACC  GGACGCGTGG ACGCGAGCGT CGCGGATCCG GACAACCGGC TCCCGCTGAG CTCATGGAAC GCCGACCAGC TGACGTCACA CTTCGGCGAC GCGTACGGTT TCGGGTGCCA GGAGCTGGTC  GCCCTCTCGG GGGCGCACAG CATCGGGACG TCGAAAGTCA CTCCGCCTCT GGGCCCTATG GACGACACGT CGCGCGTCTT CGACGTGCGC TACTACCAGA AGCTCGTGAA CGGCGGCGGG  TCCTTCCCTT CGGACAAGGC CCTGTCCCAG AGCTCGGACA CTAGCCCATA CGTCCGCACG TACGCCGGCG ACCAGGATGC GTGGTGGGCG GAGTTTGTCG ACGCCCTCAA GAAGATAGGC 
GACCTGGGTG CTACCTACGA ATCA 

Retrieve as FASTA