Entry information : GluxLDS01
Entry ID 10660
Creation 2012-03-02 (Christophe Dunand)
Last sequence changes 2012-03-02 (Christophe Dunand)
Sequence status complete
Reviewer Not yet reviewed
Last annotation changes 2012-04-03 (Catherine Mathe (Scipio))
Peroxidase information: GluxLDS01
Name GluxLDS01
Class Linoleate diol synthase (PGHS like)    [Orthogroup: LDS001]
Taxonomy Eukaryota Fungi Basidiomycota Agaricomycetes Tricholomataceae Gymnopus
Organism Gymnopus luxurians    [TaxId: 206324 ]
Cellular localisation N/D
Tissue type N/D
Inducer N/D
Repressor N/D
Best BLASTp hits
Perox score E-value GluxLDS01
start..stop
S start..stop
JargLDS01 951 0 24..1071 53..1067
LbiLDS01 925 0 4..1071 36..1070
ScomLDS01 886 0 24..1072 69..1110
AbLDS01_burnettii 838 0 8..1069 41..1080
Gene structure Fichierperl './assets/cgi-bin/draw_exon.pl' '10660' 'join(63691..63774,63830..63886,63943..64045,64099..64706,64758..64964,65014..65268,65322..65407,65460..65628,65689..65766,65818..66004,66058..66440,66498..66671,66727..66912,66972..67239,67295..67410,67463..67540,67591..67761,67813..67839)' Exons
ExonStart..EndSize ExonStart..EndSize ExonStart..EndSize ExonStart..EndSize
N° 1 63691..63774 82 N° 2 63830..63886 55 N° 3 63943..64045 101 N° 4 64099..64706 606
N° 5 64758..64964 205 N° 6 65014..65268 253 N° 7 65322..65407 84 N° 8 65460..65628 167
N° 9 65689..65766 76 N° 10 65818..66004 185 N° 11 66058..66440 381 N° 12 66498..66671 172
N° 13 66727..66912 184 N° 14 66972..67239 266 N° 15 67295..67410 114 N° 16 67463..67540 76
N° 17 67591..67761 169 N° 18 67813..67839 25  
join(63691..63774,63830..63886,63943..64045,64099..64706,64758..64964,65014..652 68,65322..65407,65460..65628,65689..65766,65818..66004,66058..66440,66498..66671 ,66727..66912,66972..67239,67295..67410,67463..67540,67591..67761,67813..67839)


exon

Literature and cross-references GluxLDS01
DNA ref. JGI genome:   scaffold_14 (63691..67839)
Cluster/Prediction ref. JGI gene:   40125
Protein sequence: GluxLDS01
Sequence Properties
first value : protein
second value (mature protein)
Length (aa):   %s   1078
PWM (Da):   %s   119521.51  
PI (pH):   %s   6.62
Sequence
Send to BLAST
Send to Peroxiscan
.........1.........2.........3.........4.........5.........6.........7.........8.........9.........0.........1.........2
MSSFQTFISKVGDVVTDLKPVGQTITSLPAILDAVRHPESINDRLLLLEKLLTLMAELGDSKAPPEYQKISLDLQHLAIDLLYKDLPHPPASYLALPPASKPISAKAPTPYKEGQYVTYA
YRSADGSNYNPLIPSLGQAGTPYARSSPGFMQTNFKNLPDAGLVFDTLLRRPTKAEAPGEKADGFTPHPGGVNSLFFALADIIIHTLFNTDRQNPTVNNTSSYLDLSVVYGNNEDEVESV
RRKDDQNRRDGIGRLYEDVFADNRLLLMPPATCALLVLFSRNHNFVAQRIFEINERGIYKDPATLKAQMNKGFAPGASAEDEKLAKQAKSALNAQDDEIFHRSRLVNCGFYMKVILGDYV
GAILGLVKDGKDWRLDPLMEIRRLSHEFSPRGEGNVVSLEFNLLYRWHATLSREDKAWTEKTFKEVLAKAGINTTFDQLTRQQFYRAAGLALSKEQLGDVRTWTFDNLKRDSNGKFSDAD
IANILQRSTSYRAGAFKARGIPDVLKVIEVLGIEQARGWGACSLNEFRKFIGLEPYKSFKQWNSDESVARAAELLYKDIDNLELHVGMQAEQSKVPGPGAGLCPGYTISRAILSDAVCLT
RGDRFLTVDFTPFNFTTWGFEDCQYPSTPDGSFGGMLTKLLFRHFPAYYPARSAYAHFPLLDPKFMKVQMEQAGTADKYIWTRPQTPVGVQTGETVVVDSYAGATEVLYNPKVWKSDYEK
KLGIVVSGLQDPKLPDTKLVEEVLRSSSHGWPGFFVETANRLVKERSINHAGSTARYVDIVDDVINALPAHWICDKLIGLNLRDKKAESQFVTGLQDVCDYVFLDWDPVHDWQLRESSVA
FFQKLHKVVKHHLESESRFIPNIIGHLLDEKTPFLETLHRDHGNKSANELAAALFCQVVPTAAHWSQSVAHVINYYLDASREGAREEIVKLVDEGKTKQAMDLIKTALVVDPPVYGAERT
ALRATVVDGLKEAAAGETVFVSIVEANQNIPIGKSGIIGAGEYGLLAAEFFEKVTPGVVGAILGLPKLGRCPGPSGVFTRFTQHTRGAPEQIYINALGGLTPFPTSLIISYDESQSKI*

Retrieve as FASTA  
Remarks Complete sequence from genomic (17 introns). Control slicing prediction!!!
DNA
Send to BLAST
.........1.........2.........3.........4.........5.........6.........7.........8.........9.........0.........1.........2
ATGTCTTCCTTTCAAACTTTTATCAGCAAAGTAGGTGATGTAGTCACCGACCTCAAGCCCGTTGGTCAAACAATTACGAGCTTGTGGTGCGCCTAGAATCGACGACCTGTATGGACACTA
AACTCATCTCAACGTCTGTAGCCCGCGATATTGGATGCAGTAAGGCACCCAGAGAGCATCAATGATCGTCTACTTTTGTGGCAAGTAACAGCGCAGTCCTTCTGCAGGAGTATTGGCTTA
CAAGATGCGCTATTAGCTTGAAAAGTTGCTCACCCTCATGGCAGAGCTGGGGGACAGCAAGGCACCCCCAGAATACCAGAAGATCAGCTTGGATCTCCAACACTTGGCCATTGACCTTTT
TGTGTGTATATCTCTTAGTTTGCTTTCTATAATTCCTGATAGAACGATGTCCAGTGTACAAGGACCTTCCGCACCCTCCGGCCTCATATCTCGCCCTCCCTCCTGCTTCCAAACCAATAT
CTGCAAAAGCTCCGACCCCGTATAAAGAGGGGCAGTATGTCACCTACGCGTATCGTTCCGCTGACGGATCCAACTACAATCCCCTGATTCCTTCCTTGGGTCAGGCCGGTACTCCTTACG
CGCGTTCTTCCCCTGGCTTCATGCAAACGAATTTCAAAAACCTTCCCGATGCTGGTCTGGTCTTTGATACCCTCCTGAGACGCCCAACAAAAGCTGAAGCTCCGGGTGAAAAAGCTGATG
GATTCACTCCTCATCCCGGAGGTGTAAACAGCTTGTTCTTCGCCCTTGCAGACATTATTATTCACACCCTCTTCAACACTGACCGACAAAATCCCACTGTCAACAACACTTCTTCATACC
TAGACCTCAGTGTTGTCTACGGTAATAATGAAGATGAGGTCGAGAGTGTCCGAAGAAAAGACGACCAAAATAGGCGCGATGGTATCGGCAGACTCTATGAAGACGTGTTCGCCGATAACC
GTCTCTTGCTAATGCCTCCGGCAACATGTGCGCTTTTGGTTCTCTTTTCTAGGAATCACAAT
ATGTAATTGCTTCTCTGTTCTGTTTGCTATCCCATCTAACTGCTCTTTCCTAGTTTGT
CGCTCAGCGCATCTTCGAAATTAATGAGCGTGGAATCTACAAAGACCCCGCTACCTTGAAGGCTCAGATGAACAAAGGGTTTGCTCCTGGAGCTTCTGCGGAGGACGAGAAGCTCGCGAA
GCAAGCCAAGTCTGCTCTCAATGCTCAAGACGATGAGATCTTCCATCGTTCACGTCTTGTCAACTGCGGGTTCTACATGAAG
AGGTAAGGCGGTGAATCTTGCCTTCTATGATTTTTAAC
CTGGGATTCACAGGTTATTCTCGGGGATTACGTCGGCGCTATTCTTGGGCTCGTAAAAGATGGTAAAGATTGGCGCCTGGATCCTCTCATGGAAATTCGTCGTCTGAGTCATGAGTTTTC
TCCTCGAGGAGAAGGAAACGTTGTATCTCTCGAGTTCAATCTCTTATACCGTTGGCACGCAACTCTAAGCCGGGAAGATAAAGCGTGGACCGAAAAAACATTCAAGGAGGTGCTCGCAAA
GGCTGGTATTAATACCACATTTGATCAG
AGGTGAGAATTCAACTTTGTATATCGACGTCCTACTTTGCTAATCCTTTATCTAGCTTACACGTCAGCAATTCTACCGTGCGGCAGGCTTGG
CTCTTAGCAAAGAGCAACTCGGTGACGTTCGAACCTGGACCTTCGATAA
AAGTTAGTACATTTTTACGATCTCCTTTACTCACCCTAATTTCCTACCCTCTAGCCTCAAGCGTGATAGCA
ATGGCAAATTCTCTGATGCCGACATTGCCAACATCCTGCAACGTTCAACTTCTTATCGAGCTGGAGCCTTCAAGGCCCGAGGAATTCCGGATGTATTGAAAGTTATCGAAGTTCTCGGGA
TTGAGCAGGCTCGAGGCTGGGGTGCTTGCTCT
CTGTAAGGTTTTTTCCCACCATTTCTCCCGTCCTCATTGCTGATAGTTGAATATATTCACAGCTGAATGAATTCAGAAAGTTCATTGG
CTTGGAGCCATACAAATCATTCAAACAGTGGAATTCCGATGAGTCGGTTGCG
CGGTGAGGGTTTTGTCTCTGTTAGACTGGAATCGGTCTGATGCAAAACTTTAGAGAGCGGCGGAGCTC
CTGTACAAGGACATTGATAACCTTGAGCTTCACGTCGGAATGCAGGCCGAGCAATCAAAAGTGCCGGGTCCCGGTGCTGGCTTGTGCCCGGGTTATACCATCTCTCGTGCCATTCTTTCT
GATGCTGTATGCCTTACTCGAGGGGATAGGTTCTTGACTGTAGACTTTACCC
CCGTGAGCCATTATTTCCGCGGGCCCCTTCTGTTTTGTCTAATTTCGTTCCTTAGCTTTCAATTTTAC
AACTTGGGGCTTTGAGGACTGCCAGTACCCGTCGACGCCTGATGGTTCCTTCGGAGGGATGCTTACGAAACTGCTATTCCGTCACTTCCCTGCCTACTATCCAGCCAGGTCCGCCTATGC
CCATTTCCCTCTCCTTGATCCAAAGTTTATGAAGGTGCAAATGGAGCAGGCAGGGACTGCTGATAAGTATATCTGGACCAGGCCCCAAACTCCCGTAGGCGTACAAACGGGAGAGACCGT
CGTCGTCGACAGCTATGCTGGTGCCACAGAGGTCTTGTATAATCCTAAGGTTTGGAAATCAGATTACGAGAAAAAACTTGGTATCGTTGTCAGTGGTTTGCAAGACCCCAAGCTTCCCGA
CACTAAGCTT
TTGTAAGTACCTTGATCGGTGTTGCCGCAGTTTTCGATTCACATTTTCTGTATCAACAGGTCGAAGAAGTCTTGCGCTCTTCCAGCCACGGTTGGCCCGGATTCTTCGTT
GAGACCGCCAACCGACTCGTGAAAGAACGAAGTATCAATCATGCAGGCTCAACTGCAAGATACGTGGATATCGTGGATGATGTCATTAATGCCCTTCCGGCACATTGGATCTGCGATAAA
CTG
TGGTAAGACTCAAATGTCTGCTGCATAAAATTTTCCAGGCTTAGGAGGGCTTTTTAGATTGGGCTTAACCTCAGGGACAAGAAAGCTGAGAGTCAGTTCGTCACCGGCTTGCAAGAC
GTTTGCGACTACGTCTTTTTGGACTGGGACCCTGTCCATGACTGGCAGCTACGTGAAAGCTCCGTGGCGTTCTTCCAGAAGTTGCACAAAGTCGTCAAACACCATCTGGAATCCGAGTCC
CGCTTT
TTGTCAGTTGTCTAGTTCCCCAACTTGTATCTGGATCTGATATTGATACAATCGTTGACAGATTCCCAACATAATCGGTCACCTCTTGGACGAAAAGACACCATTCCTCGAGAC
TCTTCACAGAGACCACGGTAATAAGAGTGCAAACGAACTCGCTGCGGCATTGTTTTGCCAGGTCGTCCCTACCGCGGCTCATTGGTCTCAGAGTGTCGCTCATGTTATCAATTATTATCT
TGACGCATCCCGGGAAGGAGCCAGAGAAGAGATTGTTAAGCTTGTCGATGAGGGTAAGACCAAACAGGCAATGGATCTCATTAAGACAGCGCTAG
AGGTAAGTGGTGCACAGTTTCCTAG
GTGAAGCCCCAAAATTCTGAATGTGTATGAAGTTGTGGACCCTCCGGTTTACGGTGCGGAACGAACTGCTTTGAGGGCTACCGTAGTGGATGGTTTGAAGGAAGCTGCGGCTGGCGAGAC
CGTCTTTGTGAGCATCGTTGAAGCCAAC
ACGTGAGCCCAAATTTTCCTCGCATTTCGATGATATGAATTAATCATCGCACAGCAAAATATACCTATCGGCAAGTCTGGCATTATTGGGGC
TGGTGAATATGGTCTGTTAGCAGCAGAATTCTTCGAAAAG
AGGTATGGATACTGTAATAAAATCCTGGATCTTGCTGACGGTTTTATTGCAGGTTACCCCTGGCGTTGTCGGTGCGATTC
TTGGTCTGCCCAAACTTGGACGTTGTCCTGGACCATCCGGAGTTTTTACGCGTTTCACACAACATACTCGTGGCGCACCGGAGCAAATCTATATCAATGCTCTCGGAGGTCTTACCCCCT
TCCCCACTTCTCTTATCATTTCG
CGGTATGTCCTTCCTCAAATTTGTAATGCTACGAGGCTCATTCGTTCTTCCAGTACGATGAGTCCCAAAGTAAAATATAA

Retrieve as FASTA  
CDS
Send to BLAST
.........1.........2.........3.........4.........5.........6.........7.........8.........9.........0.........1.........2
ATGTCTTCCTTTCAAACTTTTATCAGCAAAGTAGGTGATGTAGTCACCGACCTCAAGCCCGTTGGTCAAACAATTACGAGCTTGCCCGCGATATTGGATGCAGTAAGGCACCCAGAGAGC
ATCAATGATCGTCTACTTTTG
CTTGAAAAGTTGCTCACCCTCATGGCAGAGCTGGGGGACAGCAAGGCACCCCCAGAATACCAGAAGATCAGCTTGGATCTCCAACACTTGGCCATTGAC
CTTT
TGTACAAGGACCTTCCGCACCCTCCGGCCTCATATCTCGCCCTCCCTCCTGCTTCCAAACCAATATCTGCAAAAGCTCCGACCCCGTATAAAGAGGGGCAGTATGTCACCTACGCG
TATCGTTCCGCTGACGGATCCAACTACAATCCCCTGATTCCTTCCTTGGGTCAGGCCGGTACTCCTTACGCGCGTTCTTCCCCTGGCTTCATGCAAACGAATTTCAAAAACCTTCCCGAT
GCTGGTCTGGTCTTTGATACCCTCCTGAGACGCCCAACAAAAGCTGAAGCTCCGGGTGAAAAAGCTGATGGATTCACTCCTCATCCCGGAGGTGTAAACAGCTTGTTCTTCGCCCTTGCA
GACATTATTATTCACACCCTCTTCAACACTGACCGACAAAATCCCACTGTCAACAACACTTCTTCATACCTAGACCTCAGTGTTGTCTACGGTAATAATGAAGATGAGGTCGAGAGTGTC
CGAAGAAAAGACGACCAAAATAGGCGCGATGGTATCGGCAGACTCTATGAAGACGTGTTCGCCGATAACCGTCTCTTGCTAATGCCTCCGGCAACATGTGCGCTTTTGGTTCTCTTTTCT
AGGAATCACAAT
TTTGTCGCTCAGCGCATCTTCGAAATTAATGAGCGTGGAATCTACAAAGACCCCGCTACCTTGAAGGCTCAGATGAACAAAGGGTTTGCTCCTGGAGCTTCTGCGGAG
GACGAGAAGCTCGCGAAGCAAGCCAAGTCTGCTCTCAATGCTCAAGACGATGAGATCTTCCATCGTTCACGTCTTGTCAACTGCGGGTTCTACATGAAG
GTTATTCTCGGGGATTACGTC
GGCGCTATTCTTGGGCTCGTAAAAGATGGTAAAGATTGGCGCCTGGATCCTCTCATGGAAATTCGTCGTCTGAGTCATGAGTTTTCTCCTCGAGGAGAAGGAAACGTTGTATCTCTCGAG
TTCAATCTCTTATACCGTTGGCACGCAACTCTAAGCCGGGAAGATAAAGCGTGGACCGAAAAAACATTCAAGGAGGTGCTCGCAAAGGCTGGTATTAATACCACATTTGATCAG
CTTACA
CGTCAGCAATTCTACCGTGCGGCAGGCTTGGCTCTTAGCAAAGAGCAACTCGGTGACGTTCGAACCTGGACCTTCGATAA
CCTCAAGCGTGATAGCAATGGCAAATTCTCTGATGCCGAC
ATTGCCAACATCCTGCAACGTTCAACTTCTTATCGAGCTGGAGCCTTCAAGGCCCGAGGAATTCCGGATGTATTGAAAGTTATCGAAGTTCTCGGGATTGAGCAGGCTCGAGGCTGGGGT
GCTTGCTCT
CTGAATGAATTCAGAAAGTTCATTGGCTTGGAGCCATACAAATCATTCAAACAGTGGAATTCCGATGAGTCGGTTGCGAGAGCGGCGGAGCTCCTGTACAAGGACATTGAT
AACCTTGAGCTTCACGTCGGAATGCAGGCCGAGCAATCAAAAGTGCCGGGTCCCGGTGCTGGCTTGTGCCCGGGTTATACCATCTCTCGTGCCATTCTTTCTGATGCTGTATGCCTTACT
CGAGGGGATAGGTTCTTGACTGTAGACTTTACCC
CTTTCAATTTTACAACTTGGGGCTTTGAGGACTGCCAGTACCCGTCGACGCCTGATGGTTCCTTCGGAGGGATGCTTACGAAACTG
CTATTCCGTCACTTCCCTGCCTACTATCCAGCCAGGTCCGCCTATGCCCATTTCCCTCTCCTTGATCCAAAGTTTATGAAGGTGCAAATGGAGCAGGCAGGGACTGCTGATAAGTATATC
TGGACCAGGCCCCAAACTCCCGTAGGCGTACAAACGGGAGAGACCGTCGTCGTCGACAGCTATGCTGGTGCCACAGAGGTCTTGTATAATCCTAAGGTTTGGAAATCAGATTACGAGAAA
AAACTTGGTATCGTTGTCAGTGGTTTGCAAGACCCCAAGCTTCCCGACACTAAGCTT
GTCGAAGAAGTCTTGCGCTCTTCCAGCCACGGTTGGCCCGGATTCTTCGTTGAGACCGCCAAC
CGACTCGTGAAAGAACGAAGTATCAATCATGCAGGCTCAACTGCAAGATACGTGGATATCGTGGATGATGTCATTAATGCCCTTCCGGCACATTGGATCTGCGATAAACTG
ATTGGGCTT
AACCTCAGGGACAAGAAAGCTGAGAGTCAGTTCGTCACCGGCTTGCAAGACGTTTGCGACTACGTCTTTTTGGACTGGGACCCTGTCCATGACTGGCAGCTACGTGAAAGCTCCGTGGCG
TTCTTCCAGAAGTTGCACAAAGTCGTCAAACACCATCTGGAATCCGAGTCCCGCTTT
ATTCCCAACATAATCGGTCACCTCTTGGACGAAAAGACACCATTCCTCGAGACTCTTCACAGA
GACCACGGTAATAAGAGTGCAAACGAACTCGCTGCGGCATTGTTTTGCCAGGTCGTCCCTACCGCGGCTCATTGGTCTCAGAGTGTCGCTCATGTTATCAATTATTATCTTGACGCATCC
CGGGAAGGAGCCAGAGAAGAGATTGTTAAGCTTGTCGATGAGGGTAAGACCAAACAGGCAATGGATCTCATTAAGACAGCGCTAG
TTGTGGACCCTCCGGTTTACGGTGCGGAACGAACT
GCTTTGAGGGCTACCGTAGTGGATGGTTTGAAGGAAGCTGCGGCTGGCGAGACCGTCTTTGTGAGCATCGTTGAAGCCAAC
CAAAATATACCTATCGGCAAGTCTGGCATTATTGGGGCT
GGTGAATATGGTCTGTTAGCAGCAGAATTCTTCGAAAAG
GTTACCCCTGGCGTTGTCGGTGCGATTCTTGGTCTGCCCAAACTTGGACGTTGTCCTGGACCATCCGGAGTTTTTACGCGT
TTCACACAACATACTCGTGGCGCACCGGAGCAAATCTATATCAATGCTCTCGGAGGTCTTACCCCCTTCCCCACTTCTCTTATCATTTCG
TACGATGAGTCCCAAAGTAAAATATAA

Retrieve as FASTA