Entry information : ZmPrx46(Zm00001d008300 / GRMZM2G037156[6a])
Entry ID 742
Creation 2008-08-13 (Christophe Dunand)
Last sequence changes 2015-07-01 (Christophe Dunand)
Sequence status complete
Reviewer Not yet reviewed
Last annotation changes 2023-01-09 (Christophe Dunand)
Peroxidase information: ZmPrx46(Zm00001d008300 / GRMZM2G037156[6a])
Name ZmPrx46(Zm00001d008300 / GRMZM2G037156[6a])
Class Class III peroxidase    [Orthogroup: Prx039]
Taxonomy Eukaryota Viridiplantae Streptophyta Monocotyledons Poaceae Zea
Organism Zea mays    [TaxId: 4577 ]
Cellular localisation N/D
Tissue types Pericycle cells (roots)
Young leaves
Inducer N/D
Repressor N/D
Best BLASTp hits
Perox score E-value ZmPrx46
start..stop
S start..stop
SbPrx52 631 0 1..353 1..347
SiPrx10 618 0 1..354 1..348
BdiPrx53 578 0 1..351 1..346
OsPrx05 577 0 1..353 1..347
Literature and cross-references ZmPrx46(Zm00001d008300 / GRMZM2G037156[6a])
Literature Bohnert,H. et al., unpublished
DNA ref. GenBank:   CC327700 [3' end]  AC199118.3 (49183..50360) [5' end]
Cluster/Prediction ref. UniGene:   Zm.4949
Protein sequence: ZmPrx46(Zm00001d008300 / GRMZM2G037156[6a])
Sequence Properties
first value : protein
second value (mature protein)
Length (aa):   %s   353 (360)
PWM (Da):   %s   38606.59 (37629.4) Transmb domain:   %s   i7-26o
PI (pH):   %s   6.78 (4.43) Peptide Signal:   %s   cut: 19 range:19-378
Sequence
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Send to Peroxiscan
*.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
MASINTVLGA IFVASFYFCG SLAFFPPGPG HHHEGAHHPP IGSAPIPGLS TDYYRLTCPQ ADETVAPILK KAIAKEPRVA ASLLRLLFHD CFVQGCDASV LLDDAEEVVS EKNAIPNKDS  IRGFEVIDEI KAALEEACPQ TVSCADTVAL AARGSTVLSG GPYWELPLGR RDSRTANMKL ANKNLPPPNA TLHRLIKFFR RQGLDKVDLV ALSGSHTIGS ARCVSFKQRL YNQHRDNRPD 
STLETSFYHT LASACPRAGG DGEIRPLDLV SPSRFDNSYY KLVLEGKGLL NSDEVLWTGR DPEIAGLVKS YAEDEALFFE HYVSSVTKMG NINPLTGHDG EIRKNCRRVN QEI* 

Retrieve as FASTA  
Remarks Complete sequence from Genomic (chromo 8, introns 1 and 2) and 9 ESTs. Cultivar="B73". I
DNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGGCTTCAA TCAACACAGT CCTCGGTGCA ATCTTCGTTG CTTCCTTCTA CTTCTGTGGC TCCCTTGCCT TCTTCCCTCC TGGTCCTGGT CACCACCACG AGGGAGCCCA CCACCCTCCA  ATCGGAAGTG CTCCAATCCC AGGTCTTTCT ACAGACTACT ACAGGTTGAC ATGCCCGCAA GCTGACGAGA CTGTGGCGCC CATACTGAAG AAGGCTATCG CAAAGGAACC ACGGGTAGCT  GCCTCCCTTC TCAGGCTCCT CTTCCATGAC TGCTTTGTCC AGGTTAGCAG CACGGTCTCA TGTTCTCTAT TTGGTCAATC GTCTCTTTTG TCCCGGCCGT GGTTCATGCG ATGAAACTAA  TCGCACTATC GCAGGGCTGC GATGCGTCGG TTCTTTTGGA TGACGCTGAG GAAGTCGTGA GCGAGAAAAA CGCTATCCCC AACAAGGATT CCATTAGGGG GTTTGAGGTC ATAGACGAGA  TCAAAGCTGC ACTCGAGGAA GCATGTCCGC AGACAGTGTC CTGTGCTGAC ACTGTCGCCC TGGCAGCCAG AGGTTCGACA GTGCTGGTAA GAAATAAATC TCTCTAGCTA AATTCAAGTG  ATGGCATTGA CAACAACCTG CAGTAGCTAG TTTTACATGA GTAGAAAATG TAAGGGATTT CCCACAAAAA AACATGTTTT ATTTCCTTTA GTCTTGGTCC AGTTGTTATA TTTAATCGAT  ATAATTAAGC TTCTTCTCAC CTGACAGAGT GGTGGACCGT ACTGGGAGCT TCCATTAGGA AGGAGGGACT CAAGGACAGC AAACATGAAG CTAGCAAACA AGAACCTTCC TCCACCAAAC  GCAACACTGC ACCGTCTCAT CAAGTTCTTC CGAAGGCAAG GGCTGGACAA GGTGGACCTT GTGGCACTAT CAGGAAGCCA CACCATTGGA AGTGCCAGAT GCGTGAGTTT CAAGCAACGG  CTCTACAACC AGCACAGAGA TAACAGACCG GACAGCACGC TAGAGACGAG TTTCTACCAC ACGTTGGCGT CGGCGTGCCC ACGCGCCGGT GGCGACGGCG AGATACGGCC ACTGGATCTC  GTCAGCCCTT CGCGATTTGA CAACAGCTAT TATAAGCTGG TACTGGAGGG GAAAGGGCTT CTCAATTCGG ACGAGGTTCT GTGGACAGGA AGAGACCCCG AAATTGCAGG CCTAGTCAAG  AGTTATGCCG AAGACGAGGC GCTGTTCTTT GAGCACTACG TGAGTTCAGT AACCAAAATG GGGAACATAA ATCCCCTCAC GGGTCACGAT GGAGAAATCC GCAAGAACTG CCGTAGGGTC 
AATCAGGAGA TCTAG 

Retrieve as FASTA  
CDS
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGGCTTCAA TCAACACAGT CCTCGGTGCA ATCTTCGTTG CTTCCTTCTA CTTCTGTGGC TCCCTTGCCT TCTTCCCTCC TGGTCCTGGT CACCACCACG AGGGAGCCCA CCACCCTCCA  ATCGGAAGTG CTCCAATCCC AGGTCTTTCT ACAGACTACT ACAGGTTGAC ATGCCCGCAA GCTGACGAGA CTGTGGCGCC CATACTGAAG AAGGCTATCG CAAAGGAACC ACGGGTAGCT  GCCTCCCTTC TCAGGCTCCT CTTCCATGAC TGCTTTGTCC AGGGCTGCGA TGCGTCGGTT CTTTTGGATG ACGCTGAGGA AGTCGTGAGC GAGAAAAACG CTATCCCCAA CAAGGATTCC  ATTAGGGGGT TTGAGGTCAT AGACGAGATC AAAGCTGCAC TCGAGGAAGC ATGTCCGCAG ACAGTGTCCT GTGCTGACAC TGTCGCCCTG GCAGCCAGAG GTTCGACAGT GCTGAGTGGT  GGACCGTACT GGGAGCTTCC ATTAGGAAGG AGGGACTCAA GGACAGCAAA CATGAAGCTA GCAAACAAGA ACCTTCCTCC ACCAAACGCA ACACTGCACC GTCTCATCAA GTTCTTCCGA  AGGCAAGGGC TGGACAAGGT GGACCTTGTG GCACTATCAG GAAGCCACAC CATTGGAAGT GCCAGATGCG TGAGTTTCAA GCAACGGCTC TACAACCAGC ACAGAGATAA CAGACCGGAC  AGCACGCTAG AGACGAGTTT CTACCACACG TTGGCGTCGG CGTGCCCACG CGCCGGTGGC GACGGCGAGA TACGGCCACT GGATCTCGTC AGCCCTTCGC GATTTGACAA CAGCTATTAT  AAGCTGGTAC TGGAGGGGAA AGGGCTTCTC AATTCGGACG AGGTTCTGTG GACAGGAAGA GACCCCGAAA TTGCAGGCCT AGTCAAGAGT TATGCCGAAG ACGAGGCGCT GTTCTTTGAG 
CACTACGTGA GTTCAGTAAC CAAAATGGGG AACATAAATC CCCTCACGGG TCACGATGGA GAAATCCGCA AGAACTGCCG TAGGGTCAAT CAGGAGATCT AG 

Retrieve as FASTA