Entry information : GsteCIIAA02
Entry ID 15307
Creation 2018-06-14 (Christophe Dunand)
Last sequence changes 2018-06-14 (Christophe Dunand)
Sequence status complete
Reviewer Not yet reviewed
Peroxidase information: GsteCIIAA02
Name GsteCIIAA02
Class Asco Class II type A    [Orthogroup: CIIAA001]
Taxonomy Fungi/Metazoa; Fungi; Ascomycota; Ascomycota
Organism Glonium stellatum    [TaxId: 574774 ]
Cellular localisation N/D
Tissue type N/D
Inducer N/D
Repressor N/D
Best BLASTp hits
Perox score E-value GsteCIIAA02
start..stop
S start..stop
LpaluCIIAA01 603 0 1..428 1..413
GsteCIIAA01 372 1.39e-127 109..427 50..368
LfluCIIAA03 353 5.63e-120 109..426 50..368
BdotCIIAA02 350 6.07e-119 69..427 8..362
Literature and cross-references GsteCIIAA02
Cluster/Prediction ref. JGI gene:   290848 [Incorrect prediction]
Protein sequence: GsteCIIAA02
Sequence Properties
first value : protein
second value (mature protein)
Length (aa):   %s   427
PWM (Da):   %s   45047.02  
PI (pH):   %s   5.95
Sequence
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Send to Peroxiscan
*.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
MDECLKLCSV TAGCILVSWV GPQWGPCYMK NAAYQDRPNS QVTGGKLIGT VSSTILSTPS SSSASPSATS SAVTSFITPS PSASSSISSS SSRTSSAFVC ASTVFGWEMI GDLKDGVTSS  VGSNISKILQ GSVTAQDHDG GYVPPGTLND TACKTDTCCV WSYIAAEIYP FFQETNGTCN QWARRAIRLG FHDAAGWSKP NAAAGNDYGG ADGSIALSAE EAGRQENKGL SEIISKVQEW  QQKYGVGMAD LIQFASNVAT VTCPLGPRVR TFVGRIDSTT PAPAGLLPDV FDSADKLICL FADKTISAGQ LTALVGAHST SQQFFVDPSK AGQPQDDTPG VFDTNFYTQH RPGASKLDGV 
FQFQSDVLLA RDTRTKGRWA EFSIFGAPLW GGGYATAYVR LSLLGVNNIN NLTECSHVLP KAHTSFP* 

Retrieve as FASTA  
Remarks Complete sequence from genomic. Incorrect prediction from JGI (large 5'end is missing).

e_gw1.1162.8.1 Glost2
Promoter
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Send to cis Analysis
.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGGATGAAT GCCTCAAGCT CTGCTCCGTT ACCGCAGGAT GTATTCTCGT CTCATGGGTT GGGCCACAGT GGGGGCCATG CTACATGAAG AACGCGGCTT ACCAGGACCG CCCCAACTCG  CAGGTTACCG GAGGCAAATT AATCGGCACA GTCTCTAGCA CCATATTATC TACTCCAAGC TCATCATCTG CAAGCCCATC TGCCACAAGC TCTGCTGTAA CAAGTTTTAT AACTCCGAGC 
CCTTCCGCAA GCAGCTCAAT ATCCTCCAGC TCCTCCAGAA CTAGCTCGGC TTTTGTTTGC GCATCAACTG TATTTGGCTG GGAG 

Retrieve as FASTA  
DNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGGATGAAT GCCTCAAGCT CTGCTCCGTT ACCGCAGGAT GTATTCTCGT CTCATGGGTT GGGCCACAGT GGGGGCCATG CTACATGAAG AACGCGGCTT ACCAGGACCG CCCCAACTCG  CAGGTTACCG GAGGCAAATT AATCGGCACA GTCTCTAGCA CCATATTATC TACTCCAAGC TCATCATCTG CAAGCCCATC TGCCACAAGC TCTGCTGTAA CAAGTTTTAT AACTCCGAGC  CCTTCCGCAA GCAGCTCAAT ATCCTCCAGC TCCTCCAGAA CTAGCTCGGC TTTTGTTTGC GCATCAACTG TATTTGGCTG GGAGATGATC GGAGACCTAA AAGACGGCGT CACATCCTCT  GTAGGCTCTA ACATATCCAA GATATTACAA GGATCCGTTA CTGCCCAGGA CCACGATGGA GGCTATGTCC CTCCCGGCAC GCTAAACGAT ACCGCTTGCA AGACCGACAC ATGCTGCGTC  TGGTCTTACA TTGCGGCCGA AATATACCCT TTCTTTCAGG AAACCAATGG TACATGCAAT CAATGGGCTC GTAGGGCAAT ACGTCTTGGG TTTCATGATG CGGCGGGTTG GTCAAAACCC  AACGCCGCTG CCGGAAACGA CTACGGAGGC GCTGATGGAA GTATCGCACT ATCCGCGGAG GAGGCTGGAA GGCAAGAGAA TAAAGGTCTT TCGGAGATTA TTTCAAAGGT TCAAGAGTGG  CAGCAGAAGT ATGGTGTTGG GATGGCAGAT TTGATCCAGT TTGCCTCTAA TGTTGCTACT GTAACTTGCC CGCTTGGTCC TCGCGTACGG ACATTTGTTG GCCGAATCGA CAGTACAACG  CCTGCACCGG CTGGCCTCCT ACCAGATGTT TTTGACAGCG CTGATAAGTT AATTTGCCTG TTTGCAGATA AGACTATTAG TGCAGGCCAG CTCACGGCAC TTGTCGGCGC GCATTCCACC  TCCCAGCAGT TTTTCGTTGA TCCTAGCAAA GCAGGTCAGC CGCAAGATGA CACGCCGGGG GTATTTGATA CAAATTTCTA TACGCAACAC CGGCCGGGAG CTTCAAAGCT TGATGGTGTC  TTCCAGTTTC AAAGTGACGT GCTGCTCGCA CGTGACACAC GAACAAAAGG CCGGTGGGCC GAGTTTTCGA TATTCGGTGC ACCGCTGTGG GGTGGAGTAA GTGCTAAGCC AGCCAACGCG  AACTAATGCC ATCGAGCTAA TATATTGTTT TTAGGGTTAC GCAACTGCTT ACGTCCGTTT GAGCCTTCTT GGTGTTAACA ATATCAATAA CCTCACCGAA TGTTCACACG TACTACCCAA 
AGCACACACC TCATTCCCTT AA 

Retrieve as FASTA  
CDS
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGGATGAAT GCCTCAAGCT CTGCTCCGTT ACCGCAGGAT GTATTCTCGT CTCATGGGTT GGGCCACAGT GGGGGCCATG CTACATGAAG AACGCGGCTT ACCAGGACCG CCCCAACTCG  CAGGTTACCG GAGGCAAATT AATCGGCACA GTCTCTAGCA CCATATTATC TACTCCAAGC TCATCATCTG CAAGCCCATC TGCCACAAGC TCTGCTGTAA CAAGTTTTAT AACTCCGAGC  CCTTCCGCAA GCAGCTCAAT ATCCTCCAGC TCCTCCAGAA CTAGCTCGGC TTTTGTTTGC GCATCAACTG TATTTGGCTG GGAGATGATC GGAGACCTAA AAGACGGCGT CACATCCTCT  GTAGGCTCTA ACATATCCAA GATATTACAA GGATCCGTTA CTGCCCAGGA CCACGATGGA GGCTATGTCC CTCCCGGCAC GCTAAACGAT ACCGCTTGCA AGACCGACAC ATGCTGCGTC  TGGTCTTACA TTGCGGCCGA AATATACCCT TTCTTTCAGG AAACCAATGG TACATGCAAT CAATGGGCTC GTAGGGCAAT ACGTCTTGGG TTTCATGATG CGGCGGGTTG GTCAAAACCC  AACGCCGCTG CCGGAAACGA CTACGGAGGC GCTGATGGAA GTATCGCACT ATCCGCGGAG GAGGCTGGAA GGCAAGAGAA TAAAGGTCTT TCGGAGATTA TTTCAAAGGT TCAAGAGTGG  CAGCAGAAGT ATGGTGTTGG GATGGCAGAT TTGATCCAGT TTGCCTCTAA TGTTGCTACT GTAACTTGCC CGCTTGGTCC TCGCGTACGG ACATTTGTTG GCCGAATCGA CAGTACAACG  CCTGCACCGG CTGGCCTCCT ACCAGATGTT TTTGACAGCG CTGATAAGTT AATTTGCCTG TTTGCAGATA AGACTATTAG TGCAGGCCAG CTCACGGCAC TTGTCGGCGC GCATTCCACC  TCCCAGCAGT TTTTCGTTGA TCCTAGCAAA GCAGGTCAGC CGCAAGATGA CACGCCGGGG GTATTTGATA CAAATTTCTA TACGCAACAC CGGCCGGGAG CTTCAAAGCT TGATGGTGTC  TTCCAGTTTC AAAGTGACGT GCTGCTCGCA CGTGACACAC GAACAAAAGG CCGGTGGGCC GAGTTTTCGA TATTCGGTGC ACCGCTGTGG GGTGGAGGTT ACGCAACTGC TTACGTCCGT 
TTGAGCCTTC TTGGTGTTAA CAATATCAAT AACCTCACCG AATGTTCACA CGTACTACCC AAAGCACACA CCTCATTCCC TTAA 

Retrieve as FASTA