Entry information : CsGPx06 (orange1.1g027134m)
Entry ID 2618
Creation 2005-11-30 (Marcia Pinheiro Margis)
Last sequence changes 2015-12-10 (Qiang Li)
Sequence status complete
Reviewer Not yet reviewed
Last annotation changes 2015-12-10 (Qiang Li)
Peroxidase information: CsGPx06 (orange1.1g027134m)
Name (synonym) CsGPx06 (orange1.1g027134m)
Class Plant glutathione peroxidase    [Orthogroup: Gpx2001]
Taxonomy Eukaryota Viridiplantae Streptophyta Rutaceae Citrus
Organism Citrus sinensis    [TaxId: 2711 ]
Cellular localisation Cytosolic
Tissue type N/D
Inducer Salt stress
Repressor N/D
Best BLASTp hits
Perox score E-value CsGPx06
start..stop
S start..stop
CclGPx06 449 1e-163 1..227 1..223
PtGPx06-2 320 4e-112 7..227 6..238
CmGPx06 318 1e-111 4..227 3..241
LjGPx06 314 4e-110 21..224 34..234
Literature and cross-references CsGPx06 (orange1.1g027134m)
Literature Holland,D., Ben-Hayyim,G., Faltin,Z., Camoin,L., Strosberg,A.D. and Eshdat,Y.
Molecular characterization of salt-stress-associated protein in citrus: protein and cDNA sequence homology to mammalian glutathione
peroxidases
Plant Mol. Biol. 21 (5), 923-927 (1993)
Protein ref. GenPept:   CAA47018 UniProtKB:   Q06652   Q70G20 [Mismatch]
mRNA ref. GenBank:   X66377
Cluster/Prediction ref. UniGene:   Csi.2722   Csi.9470
Protein sequence: CsGPx06 (orange1.1g027134m)
Sequence Properties
first value : protein
second value (mature protein)
Length (aa):   %s   228
PWM (Da):   %s   25359.97  
PI (pH):   %s   9.03
Sequence
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Send to Peroxiscan
.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
MLRCCASRYL LKRNLGIATS LILTRHFTSN CKQTLLRPSK SNPISLVSRP CFFASRSDHT MASQSKTSVH DFSVKDAKGQ DVDLSIYKGK LLLIVNVASQ CGLTNSNYTE LSQLYDKYKN 
QGLEILAFPC NQFGAQEPGD NEQIQEFACT RFKAEFPIFD KVDVNGDNAA PLYKHLKSSK GGLFGDSIKW NFSKFLVDKE GNVVERYAPT TSPLSIEKDI KKLLETA* 

Retrieve as FASTA  
Remarks Sequence from 1 cDNA and 24 ESTs and 34 ESTs from two independant Unigene (1 mismatch) and genomic. Two SwissProt/TREMBL accessions.
DNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGCTCCGCT GTTGTGCAAG TCGTTACCTT CTTAAACGAA ATCTCGGAAT CGCAACTTCC CTTATTTTGA CAAGACATTT CACTTCGAAT TGTAAGCAAA CCCTGTTGAG ACCTTCGAAA  AGTAATCCAA TTTCTTTGGT TTCAAGGCCT TGTTTCTTCG CTTCTAGATC GGATCATACA ATGGCAAGCC AATCGAAAAC TTCAGTTCAC GATTTCAGTG TTAAGGTCCG CTTTATTATT  ATTATTATTA TTGGGTTCTT GCTTGTCATT TTCCTTCCCT CCTTTTGATT TTTAATTCAA TTTGGGATTT GACAAATATA TCTATTTTTA TTTTTATGAA ATTTATCATA TTTGCAGGAC  GCCAAGGGAC AGGATGTTGA TCTGAGCATC TACAAGGGAA AGCTTCTTTT GATTGTCAAT GTTGCATCAC AGTGGTATGC CTCAGCTCCT TTCATTTTTT ACTTTTTTTT TTTTTTTTAA  GTAATGATTC ATTGATTATT GTTGATGCTT CCATTTAATT AACGCTAATA CTCAGAAGCA TGCATGCTTT CAATACAAAT AAGCATTTGT AGGAGATGAT TTCACCCGGA GACTCTTTAA  TTCTTGCGCA GTGCCGGCGA CAGTTTTTTT TATTTTTTTT TCCTTTATCC GTTTTATTCA TTTACCTGAT TTTGAACGCA GTGGCTTGAC CAATTCAAAC TACACTGAGC TGAGTCAGTT  GTACGACAAG TACAAGAATC AAGGTTTATT TCGTACCTCC TTTTCTTAGT ATTTTGATGA TTTTGCACGT TACCAAGACT TATGTATTTT CAAGTTCTCG ATTCTTTCTT GCATAGTCAA  TGGAAGAAAA TATTTCTTAA CATCTTACTA ATATCTGCAT ACCCTTGCTT CGCTGTTTTC TTTTTTCTTT TCTGTGTTAG TGCAGGCTTG GAGATTCTGG CCTTTCCTTG TAATCAGTTT  GGAGCTCAAG AGCCAGGAGA CAATGAACAG ATTCAAGAAT TTGCATGCAC TCGCTTTAAG GCTGAGTTTC CCATATTTGA TAAGGTACTC GCTCTGCAAC TTTACAAATT TTATAAACAG  AAAATACACT CTCATGGTTT TGCCTATGCA TGTCGCATTC TTATACTCTA GCTTCCGACA CACAGCGAGC TATATGCTTC TGGATAAGAT ATAGAATAGC TGGAGTTGGT AACCATTTCT  TTATTTGATT ACATATTTTA TATATAAATC ATTCATTTGA TATGCAGTAA ATCATCTCGA TATGATACTC CATTAAAGTA CCTTGATTTG ATCATTTCTT AAAATTATTA ATGCCTGAAG  CATTTCACTG ATTGCTTTGG GAATTAGGAT GAAACGAGAG GAATCTGGAC TTAAACATTC TTTTTCTTCC AAAATTGAAC TTTTTACCTC AGGAACTTGA GTGTCTCTTT TATTAATATA  TTCTGATGAT AATATTGCTC TTAGGTTTGT TAAATTATTG TGTGAACATT TTGGGTGAAC TTTGATGAGT CCATTACCTT GATGTGAGAA GTCACTTGTT CGGAGTGCCT TTGAGATATT  GCTGGAAGAA CCAAATGTTT ATATGTACTT CATGAGTTTC TGATCATATT TGGAGATATT TGGCAACAAA CTTAATTTCG TTTTTTTGAT ACAGGTTGAT GTTAATGGTG ATAATGCTGC  TCCTTTATAC AAGCATCTGA AATCCAGCAA AGGTGGACTT TTTGGAGACA GCATCAAGTG GAACTTTTCC AAGTTCTTGG TGGATAAGGA GGGGAATGTT GTTGAGCGTT ATGCCCCCAC  CACTAGCCCT CTGAGCATTG AGGTAGTATT AGAGTGTTTG TGCTGTTAGT GGCTGTTGCG CTTCCAAATT TAATGATAAT CTGGACAGTG GTCTCATTTT ATTCACTAAT AAACTTATTT 
GTTAATGTTT GTTACCCCCT TGCAGAAGGA TATAAAGAAA CTTCTGGAGA CTGCTTAA 

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CDS
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGCTCCGCT GTTGTGCAAG TCGTTACCTT CTTAAACGAA ATCTCGGAAT CGCAACTTCC CTTATTTTGA CAAGACATTT CACTTCGAAT TGTAAGCAAA CCCTGTTGAG ACCTTCGAAA  AGTAATCCAA TTTCTTTGGT TTCAAGGCCT TGTTTCTTCG CTTCTAGATC GGATCATACA ATGGCAAGCC AATCGAAAAC TTCAGTTCAC GATTTCAGTG TTAAGGACGC CAAGGGACAG  GATGTTGATC TGAGCATCTA CAAGGGAAAG CTTCTTTTGA TTGTCAATGT TGCATCACAG TGTGGCTTGA CCAATTCAAA CTACACTGAG CTGAGTCAGT TGTACGACAA GTACAAGAAT  CAAGGCTTGG AGATTCTGGC CTTTCCTTGT AATCAGTTTG GAGCTCAAGA GCCAGGAGAC AATGAACAGA TTCAAGAATT TGCATGCACT CGCTTTAAGG CTGAGTTTCC CATATTTGAT  AAGGTTGATG TTAATGGTGA TAATGCTGCT CCTTTATACA AGCATCTGAA ATCCAGCAAA GGTGGACTTT TTGGAGACAG CATCAAGTGG AACTTTTCCA AGTTCTTGGT GGATAAGGAG 
GGGAATGTTG TTGAGCGTTA TGCCCCCACC ACTAGCCCTC TGAGCATTGA GAAGGATATA AAGAAACTTC TGGAGACTGC TTAA 

Retrieve as FASTA