Gene loci information

Transcript annotation

  • This transcript has been annotated as Ryanodine receptor.

Parent gene

Gene structure

  • The exon-intron structure of all isoforms are indicated below. CDS regions are colored in green. TSS and TTs that were predicted with CTR-Seq data are indicated in solid circle and squares, respectively. More specific data are shown in the table below.

Chromosome Gene Transcript Category ID Start End
chr_1 g11391 g11391.t3 TSS g11391.t3 15906931 15906931
chr_1 g11391 g11391.t3 isoform g11391.t3 15907015 15929198
chr_1 g11391 g11391.t3 exon g11391.t3.exon1 15907015 15907068
chr_1 g11391 g11391.t3 cds g11391.t3.CDS1 15907015 15907068
chr_1 g11391 g11391.t3 exon g11391.t3.exon2 15907133 15907336
chr_1 g11391 g11391.t3 cds g11391.t3.CDS2 15907133 15907336
chr_1 g11391 g11391.t3 exon g11391.t3.exon3 15908025 15908039
chr_1 g11391 g11391.t3 cds g11391.t3.CDS3 15908025 15908039
chr_1 g11391 g11391.t3 exon g11391.t3.exon4 15909228 15909305
chr_1 g11391 g11391.t3 cds g11391.t3.CDS4 15909228 15909305
chr_1 g11391 g11391.t3 exon g11391.t3.exon5 15909364 15909458
chr_1 g11391 g11391.t3 cds g11391.t3.CDS5 15909364 15909458
chr_1 g11391 g11391.t3 exon g11391.t3.exon6 15909535 15909558
chr_1 g11391 g11391.t3 cds g11391.t3.CDS6 15909535 15909558
chr_1 g11391 g11391.t3 exon g11391.t3.exon7 15909620 15909689
chr_1 g11391 g11391.t3 cds g11391.t3.CDS7 15909620 15909689
chr_1 g11391 g11391.t3 exon g11391.t3.exon8 15909744 15909819
chr_1 g11391 g11391.t3 cds g11391.t3.CDS8 15909744 15909819
chr_1 g11391 g11391.t3 exon g11391.t3.exon9 15909875 15909998
chr_1 g11391 g11391.t3 cds g11391.t3.CDS9 15909875 15909998
chr_1 g11391 g11391.t3 exon g11391.t3.exon10 15910056 15910230
chr_1 g11391 g11391.t3 cds g11391.t3.CDS10 15910056 15910230
chr_1 g11391 g11391.t3 exon g11391.t3.exon11 15910291 15910640
chr_1 g11391 g11391.t3 cds g11391.t3.CDS11 15910291 15910640
chr_1 g11391 g11391.t3 exon g11391.t3.exon12 15910705 15911306
chr_1 g11391 g11391.t3 cds g11391.t3.CDS12 15910705 15911306
chr_1 g11391 g11391.t3 exon g11391.t3.exon13 15911365 15912189
chr_1 g11391 g11391.t3 cds g11391.t3.CDS13 15911365 15912189
chr_1 g11391 g11391.t3 exon g11391.t3.exon14 15912763 15913412
chr_1 g11391 g11391.t3 cds g11391.t3.CDS14 15912763 15913412
chr_1 g11391 g11391.t3 exon g11391.t3.exon15 15913713 15913812
chr_1 g11391 g11391.t3 cds g11391.t3.CDS15 15913713 15913812
chr_1 g11391 g11391.t3 exon g11391.t3.exon16 15913900 15914110
chr_1 g11391 g11391.t3 cds g11391.t3.CDS16 15913900 15914110
chr_1 g11391 g11391.t3 exon g11391.t3.exon17 15914187 15914411
chr_1 g11391 g11391.t3 cds g11391.t3.CDS17 15914187 15914411
chr_1 g11391 g11391.t3 exon g11391.t3.exon18 15914469 15914961
chr_1 g11391 g11391.t3 cds g11391.t3.CDS18 15914469 15914961
chr_1 g11391 g11391.t3 exon g11391.t3.exon19 15915028 15915199
chr_1 g11391 g11391.t3 cds g11391.t3.CDS19 15915028 15915199
chr_1 g11391 g11391.t3 exon g11391.t3.exon20 15915261 15915375
chr_1 g11391 g11391.t3 cds g11391.t3.CDS20 15915261 15915375
chr_1 g11391 g11391.t3 exon g11391.t3.exon21 15915444 15916175
chr_1 g11391 g11391.t3 cds g11391.t3.CDS21 15915444 15916175
chr_1 g11391 g11391.t3 exon g11391.t3.exon22 15916232 15916369
chr_1 g11391 g11391.t3 cds g11391.t3.CDS22 15916232 15916369
chr_1 g11391 g11391.t3 exon g11391.t3.exon23 15916847 15917056
chr_1 g11391 g11391.t3 cds g11391.t3.CDS23 15916847 15917056
chr_1 g11391 g11391.t3 exon g11391.t3.exon24 15917116 15917231
chr_1 g11391 g11391.t3 cds g11391.t3.CDS24 15917116 15917231
chr_1 g11391 g11391.t3 exon g11391.t3.exon25 15917291 15918346
chr_1 g11391 g11391.t3 cds g11391.t3.CDS25 15917291 15918346
chr_1 g11391 g11391.t3 exon g11391.t3.exon26 15918401 15919872
chr_1 g11391 g11391.t3 cds g11391.t3.CDS26 15918401 15919872
chr_1 g11391 g11391.t3 exon g11391.t3.exon27 15919929 15920144
chr_1 g11391 g11391.t3 cds g11391.t3.CDS27 15919929 15920144
chr_1 g11391 g11391.t3 exon g11391.t3.exon28 15920199 15920330
chr_1 g11391 g11391.t3 cds g11391.t3.CDS28 15920199 15920330
chr_1 g11391 g11391.t3 exon g11391.t3.exon29 15920389 15920589
chr_1 g11391 g11391.t3 cds g11391.t3.CDS29 15920389 15920589
chr_1 g11391 g11391.t3 exon g11391.t3.exon30 15920655 15920746
chr_1 g11391 g11391.t3 cds g11391.t3.CDS30 15920655 15920746
chr_1 g11391 g11391.t3 exon g11391.t3.exon31 15920804 15921474
chr_1 g11391 g11391.t3 cds g11391.t3.CDS31 15920804 15921474
chr_1 g11391 g11391.t3 exon g11391.t3.exon32 15921531 15921784
chr_1 g11391 g11391.t3 cds g11391.t3.CDS32 15921531 15921784
chr_1 g11391 g11391.t3 exon g11391.t3.exon33 15922651 15922741
chr_1 g11391 g11391.t3 cds g11391.t3.CDS33 15922651 15922741
chr_1 g11391 g11391.t3 exon g11391.t3.exon34 15922805 15923577
chr_1 g11391 g11391.t3 cds g11391.t3.CDS34 15922805 15923577
chr_1 g11391 g11391.t3 exon g11391.t3.exon35 15923635 15923886
chr_1 g11391 g11391.t3 cds g11391.t3.CDS35 15923635 15923886
chr_1 g11391 g11391.t3 exon g11391.t3.exon36 15924109 15924153
chr_1 g11391 g11391.t3 cds g11391.t3.CDS36 15924109 15924153
chr_1 g11391 g11391.t3 exon g11391.t3.exon37 15924386 15924492
chr_1 g11391 g11391.t3 cds g11391.t3.CDS37 15924386 15924492
chr_1 g11391 g11391.t3 exon g11391.t3.exon38 15924895 15924988
chr_1 g11391 g11391.t3 cds g11391.t3.CDS38 15924895 15924988
chr_1 g11391 g11391.t3 exon g11391.t3.exon39 15925051 15925268
chr_1 g11391 g11391.t3 cds g11391.t3.CDS39 15925051 15925268
chr_1 g11391 g11391.t3 exon g11391.t3.exon40 15925344 15926431
chr_1 g11391 g11391.t3 cds g11391.t3.CDS40 15925344 15926431
chr_1 g11391 g11391.t3 exon g11391.t3.exon41 15926488 15928635
chr_1 g11391 g11391.t3 cds g11391.t3.CDS41 15926488 15928635
chr_1 g11391 g11391.t3 exon g11391.t3.exon42 15928689 15928951
chr_1 g11391 g11391.t3 cds g11391.t3.CDS42 15928689 15928951
chr_1 g11391 g11391.t3 exon g11391.t3.exon43 15929007 15929198
chr_1 g11391 g11391.t3 cds g11391.t3.CDS43 15929007 15929198
chr_1 g11391 g11391.t3 TTS g11391.t3 15929278 15929278

Sequences

>g11391.t3 Gene=g11391 Length=15219
ATGGCCGAAGCAGATGGAGGATCCGAGCAGGATGATGTCTCATTTCTTCGTACTGAAGAC
ATGGTTTGCTTGTCATGTACAGCAACCGGAGAAAGAGTGTGTTTGGCAGCTGAAGGTTTT
GGCAATCGGCATTGCTTTTTGGAAAATATTGCCGACAAAAATATTCCACCAGACCTTTCA
CAATGTGTTTTTGTAATTGAGCAAGCATTGTCAGTCAGAGCTCTTCAAGAGTTAGTTACT
GCTGCAGCCTCTGAATCGGAAAACAGTTCAGTTTCTAAAGGAACTGGTTCAGGGCATCGT
ACGCTTCTATATGGCAATGCAATTTTATTACGTCACCAGAACAGTGATATGTACTTGGCA
TGTTTGTCAACATCCTCATCAAATGACAAATTATCTTTTGATGTTGGTTTACAAGAGCAT
AGTCATGGTGAAGCCTGTTGGTGGACTGTACATCCAGCTAGCAAACAAAGATCTGAAGGT
GAAAAAGTGCGTGTTGGTGATGATTTGATTTTAGTTTCTGTAGCTACAGAACGTTATTTG
CACACAACAAAAGAGAATGATTTTTCAATTGTCAACGCAAGCTTCCATGTTACACATTGG
TCTGTGCAACCATATGGTACTGGAATATCAAGAATGAAATACGTTGGATATGTTTTTGGT
GGCGATGTTTTACGTTTTTTTCATGGCGGTGATGAATGTTTAACAATACCATCAACATGG
TCGAGACAACCTGGACAAAATATTGTTGTATACGAGGGAGGTTCAGTAATGTCTCAAGCT
AGATCATTATGGCGACTAGAATTAGCAAGAACAAAATGGTCTGGTGGATTTATTAATTGG
TATCATCCTATGAGAATTAGACATTTAACAACTGGCAGATATTTAGGTGTAAATGAAAAT
AATGAATTAATTTTGACAGCACGAGATGATGCAACAACAGCACAAACTGCCTTTTGTCTC
AGACAAGAAAAGGATGATCAAAAAGTTGTGCTTGAAGACAAAGATCTAGAAGTTATTGGT
TCACCGATTATTAAATATGGTGACAGTACAGTCATTGTTCAGCATGCAGAGACTGGTCTT
TGGCTCAGTTACAAAAGTTATGAAACTAAAAAGAAAGGTGTTGGAAAGGTTGAAGAGAAG
CAAGCAATTTTACATGAAGAAGGTAAAATGGATGATGGTCTCGACTTTTCAAGATCTCAA
GAAGAAGAATCAAGAACTGCACGTGTTATTCGTAAATGTAGCAGTCTCTTTCACAATTTC
ATTACTGGACTAGAAACATTGCAACAAAACAGAAGACATTCGCTATTTTTCCTAACTGTA
AATTTGGGTGAAATGGTTATGTGTTTAGAAGATTTGATTAATTATTTTGCGCAACCAGAA
GATGACATTGAACACGAAGAAAAACAGAATAAATTAAGAGCTCTTAGAAATCGGCAAGAT
CTTTTTCAAGAAGAGGGTGTCTTAAATTTAATTCTTGATGCTATTGATAAGATTAATGTT
ATCACATCTCAAGGATTTTTGTCATCCTTTTTGGCAAGTGACGAAAGTGGTCAAAGTTGG
GATATGATTTCTGCTTATTTATATCAACTTCTCGCTGCTATTATCAAAGGAAATCATACA
AATTGTGCTCAATTTGCCAATTCTAATCGTTTAAATTGGCTTTTTTCACGGCTTGGTTCA
CAAGCATCTAGTGAAGGTTCAGGCATGCTTGATGTATTGCATTGTGTTTTGATTGATTCA
CCTGAAGCTTTGAATATGATGCGTGATGAACATATCAAAGTTATTATTTCATTGTTAGAA
AAACATGGACGTGATCCAAAAGTTTTAGATGTTTTATGCTCACTTTGTGTGGGTAATGGC
TTTGCTGTTCGCAGTTCACAAAACAATATTTGTGATTATTTACTACCCGGTAAAAATCTT
CTTTTACAAACTCAACTAGTCGATCATGTTGCAAGTGTTAGACCAAATATTTTCGTTGGT
CGAGTTGAAGGATCAAGTTTTTATCAAAAATGGTATTTTGAGGTCGTTACTGATCATATT
GAACAAATTACACACATGATTCCCTATTTGAGAATTGGTTGGGCAAATTCACTTGGTTTT
ATCACTTATCCCGGTGGCGGGGAAAAATGGGGAGGAAATGGTGTCGGTGATGATTTATAC
AGTTATGGATTTGATGGTGTCAATTTATGGACTGGTGGAAGACACACACAAGTTGTTGCT
GAAGAACCTTCTGATTTCAAAATCAAAAAAGGAGATGTAATTGGTTGCGCACTTGATTTG
AGTATACCAATCATTACATTTACATTTAATGGTCAGAAAGTCCAAGGATGTTTCCGTGAC
TTTAATTTAGATGGAATGTTTTTCCCTGTCATTAGCTGTTCATCAAAAGTCAGTTGTCGT
TTTTTGTTTGGTGGTGATCATGGAAAACTCAAATATATCCCACCAATGGGCTATTCTCCT
TTAGTTCAATGTCTTATGCCACATCAAAATCTTTCATTAGATCCATGCTTTTATTTTGGA
AATCTTAATAAAAGTGTTCTTTCTGGTCCATGGCTTATAGAAGATGATGAAGCTTTTGTA
CCAAATCCAGTTGATACTTCGAGTGTTACATTACCATCATTTGTTGAAAATATTAAAGAT
AAATTGGCAGAGAATATTCATGAAATGTGGGCTTTGAATAAAATTGAAGCAGCACCAGAA
AAACGTTATGATTGTCAATTAGCTGTTCAAACATTGAAAACAATAATTGCTTTGGGCTAT
TATATAACTTTGGATAAGCCACCTGCACGAATTCGTCCAATTAGATTGCCAAATGATCCT
TACATGCAAGGCAATGGTTATAAACCATCTCCGCTTGATTTAAGCGCTGCTGTACTTACA
CCTAAATTAGAAGAACTTGTAGATCAGCTCGCTGAAAATACTCATAATTTATGGGCAAAA
GAAAGAATTCAACAAGGATGGAAATATGGCTTGAATGAAGATTCAGAAAATTATAGAAGT
CCTCATCTTGTGCCATATTCAAAAGTTGATGAAGCAATTAAGAAAGCAAATCGAGATACT
GCATCAGAAACTGTCAAAACATTATTAATTTATGGCTATAATTTAGATCCACCAACATCA
GAAGCAAATGAAGCTTTATTGGCTGAAGCAATGAAGCAAAAGTATGCTGCATTCAGGACA
TATCGTGTAGAAAAAACATATGCAGTAACATCAGGAAAATGGTATTTCGAATTTGAAGTG
CTTACTGCTGGTCCAATGAGAGTTGGTTGGGCCCGTGCTGATGCAGCTCCTGGTATGATG
TTGGGAAGTGATGACAGTTCTTGGGCATTTGATGGTTATAATGAAGAAAAAATCTTTGGT
GGTGGTGCTGAATCTTTTGGAAAACAATGGGGTCCTGGCGATATTGTTGGAGTCTTTTTG
GATCTTGTTGATCATACTATTAGCTTTTCACTTAATGGTGAACTTCTTATGGATGCTCTT
GGCGGTGAAACAAGTTTTGCAGATGTACATGGAGGTAGTGAAGGTGTTGGATTTGTGCCA
GCATGCACATTAGGTGTTGGTCAGAAAGCTCGTCTTATATATGGACAAAATGTAGACTCT
TTGAAATTTTTCACTACTTGTGGTTTACAAGAAGGTTATGAACCTTTCTGTGTTAACATG
AAACGACCAGTAACACATTGGTACACAAAAGATCAACCGATATTTGAAAATACAGACGAT
ATGCTTGGATGTGTTATTGATGTAACAAGAATTCCTGGTGGTGCTGATACTCCACCATGT
CTTAAAATTTCTCACAATACATTTGAAACTATGGAAAAAGCTAATTGGGAATTCTTAAGA
CTTTCATTGCCAGTTACATGTCAGAGTGTTTTTATTACTGAACGAGAGAAAGTTCAACGA
TGGGAAGAAATTAGATTACGACAGCATAGATTATTAGCTGAAGTAGAAAATACTACACCA
GCTCATTATGAACACATTATGAGATCAGGTTTTACCATGAACGACATTAAAGGATTGCGT
TATACTGAAGATGCAGGCGAATCTGATGAAGTTTTACGGCATCCACGACGTCCATCACGA
AAAGGAAGTCTTTCAAGGCCAAATGGTTTTGATGCACCAACATTGGAAGTTAATGGCAGA
ATACAGAGATCAACTAGTGATCTCGATATGAATCAATACAGTGAAGGAGAAGATCGAGTT
GATGATAAAAAGAAACGTGGTCGTTCTCCATTCAGACTTTTTGGCAAAAAACGCGATCAA
TCAAAAGATAAAATTAAAGGAAAGAATGAAGTTGAAGGTGATAAGCGTCAAGGTAGAAAT
GTTATTCAATCAAGCATTATGACACGATCACCAACTGTTAAAGTATCAAATGCTGATTTA
CGTGTTCAAGCACCATCAGTTCCCGAGCGACAAAAGAGTCTTAAATTAGGATCACAACAT
GTTGAATCAATTGGAAATGAAGTTTATGATAGTGAATGTTTAAAACTTATTAATGAATAT
TTTTATGGTGTTCGTATATATCCTGGTCAAGATCCTACTCATGTTTATATTGGTTGGGTG
ACAACTCAATATCATTTATATAGTCATGATTTCAAGCAAGAAAATGTTAGGAGAGCATCA
GTTTATGTTGAAAATGAATATGAACAGCCAATTGGACATGTAACGCGCGAGGCATGTTAC
GTTGTTAGAGCTGATGAACTTTTTAATGAAGTAACACAAGATACATCAGGCAAAGGAGCA
AGTCAAGGAATGTTTGTAGGCTGTTTTATTGATACAGCAACTGGAATCATCAGATTTACA
TGCGAAGGAAAAGAAACAAGTCATCGATGGCAAATGGAACCTGATACAAAACTGTTTCCT
GCCATTTTTGTTGAAGCAACAAGCAAAGAAATTTTGCAAATTGAGTTAGGACGAACACCT
ACAACTTTACCCTTGTCAGCTGCTGTTCTTCCAACAAGTGACAAGCATGTCAATCCACAA
TTTCCTCCTCGTTTAAAGGTGCAATGCTTGAAGCCACATCAATGGGCACGCGTTCCTAAC
GTTTCATTAGATATTCATGCTTTGAAACTTAGTGATATTCGTGGCTGGTCAATGCTATGT
GAAGATCCTGTTTCAATGCTTGCTCTTAATATACCAGAAGAAGACAGATGCATCGATATT
CTAGAACTTATTGAAATGGAAAAACTATTGTCTTTCCATTCACACACTTTGACTCTTTAT
GCTGCACTTTGCTACCAAAGTAATTACCGAGCAGCTCACACTTTGTGTCAACATGTTGAT
CAGAAACAATTGCTTTATGCAATTAAATCGGAATACATGAGTGGTTCACTTCGTATTGGT
TTCTATGATATTTTAATTGCACTTCATTTAGAATCTCATGCAACAACTATGGAAGCGTGT
AAGAACGAGTTTATTGTTCCTCTTGGACCGGAATTGAAAGAATTCTATAGTGATAAAGAT
ATGTGTCATTCACTTAGATCATTAAAGATGCATTCAATTCGACCAACTATGAAAATGACA
GAGATTGCTTCACCCACATCACTTAATGCACCTCAAGTTGTAGAAATCACTGCTGCTATT
TCTAGTGAGCCGATTCCAGTCATCGATCAACTTTATTCACCGAAATTCCCTCTTGAAGTG
TTACGAGAGTTTGTCATGGGAGCTATTCAAGAAGCTGTTGAAATTAATCAAGTGCATAAT
CGCGATCCAATTGGGGGTTCGAACGAAAATCTTTTCCTACCTTTGATTAAATTAACTGAT
AGATTGCTATTAGTCGGTGTATTGACTGATGAAGATGTACATAAATTACTTTTGATGATT
GACCCTGAAACATGGGATGAAACCTTTGATAGAGAAGGAAAAGATGAACATAAAAAAGGC
TTGTTGACTATGAAAATGGCAGAAGGAGCAAAATTGCAAATGTGCTATTTGTTGCATCAT
TTATGCGATATTCAATTAAGACATCGTGTTGAAAGTATAATTGCATTTTCACATGATTTC
GTTGGAGATTTACAAGCTGATCAATTGAGACGTTATATTGAAATTAAGCAATCAGATTTA
CCAAGTGCTGTTGCTGCTAAAAAGACAAGAGAATTCCGTTGTCCTCCACGTGAACAGATG
AATGCTATTCTCAATTTTAAAAATTTAGAGGAAGATGATGAAAACTCACCTTGTGGCAAT
GATTTGCGTGAAAAATTGAATGAATTTCATGATCATTTAATGGGAAAAGTGTCACTTAAT
GCTTTACTTGAACCAGAAGCTGCTGAAATTGATGCAGCTGATGACAAACCAGGAGCTATG
AAAAAATTATATAATTTTATAAATGCTGTTAAGGATTTAGAAGAAGAGCAAGGTCCAAGT
GAAGAACCGGAAAAAAAAACACCTGAAGAAGTTTTTAGAAAAGTGCTCATAAAAACAATT
GTTTCATGGGCTGAAGAATCACAAATTGAAACTCCAAAACTTGTCAGAGAAATGTTTAGT
CTCCTTGTTCGTCAGTATGACACAGTAGGTGAACTAATCCGATCACTGGAGAAGACTTAT
GTTGTTAATTATAAAACACAAGATGATGTTGCTAATATGTGGATTGGTTTGAGTCAAATT
CGTGCTTTATTACCAGTACAGATGTGTCAGGAAGAAGAAGAGCTTATGAGAAAAAGATTA
TGGAAACTTGTAAACAATCACACATTCTTCCAACATCCTGATTTAATTCGTGTATTGAGA
GTTCACGAAAATGTTATGGCTGTAATGATGAACACACTTGGTCGTCGAGCTCAAGCTCAA
AGCGATACACCAAGTGGTGAAGGTACAGAAGGTGCTCCAGTTAAAGAAAAAGATACATCT
CATGAGATGGTCGTAGCTTGTTGTAGATTTTTGTGTTATTTCTGTCGTACTGGTAGACAA
AATCAAAAAGCTATGTTCGATCATTTTGACTTTTTATTGGAAAATTCAAACATTTTATTG
TCACGCCCAAGTTTACGTGGTTCAACTCCACTGGACGTTGCTTATTCAAGTTTAATGGAA
AATACAGAACTTGCACTTGCCTTGCGTGAACATTATTTGGAGAAAATTGCAATTTATCTC
TCACGTTGTGGCCTTCAAAGTAATTCTGAGTTAGTTGAAAAAGGCTATCCAGATTTAGGC
TGGGATCCTGTTGAAGGTGAAAGATTTCTAGATTTCTTACGTTTCTGTGTTTGGGTCAAC
GGTGAAAGTGTTGAAGAAAATGCAAACCTTGTTATTCGTTTGCTGATTAGACGTCCAGAA
TGTTTGGGTCCAGCATTGAGAGGTGAAGGTGAAGGACTGCTTCAGGCAATTATTGAAGCA
AATAAAATGAGTGAAAGAATATCTGATCGTCGTAAAATGCAAGACGAAGCTGAAGGACAA
ATGAGTGTTGCTTTCAATCATCCTTTGCCAGAGAGTGAAGAAGATGAGGATTATATTGAT
ACTGGTGCAGCTATTCTTGCATTTTATTGTACATTGGTAGATTTACTAGGACGTTGTGCT
CCTGATGCATCAGTTATTGAACAAGGAAAGAATGAATCATTAAGAGCAAGAGCTATTTTG
CGTTCACTTGTACCGCTTGAAGATTTGCAAGGTGTTTTGAGCTTGAAATTTACATTGATA
AATCCAGCAGCTGGTGAAGAAAGACCAAAGTCAGACATGCCAAGTGGTTTGATTCCTGGG
CATAAACAAAGTATTGTTATGTTTTTGGAGAGAGTTTATGGAATTGAGACACAAGAGCTC
TTTTACAAATTATTAGAAGATGCTTTCTTACCGGACCTTCGCATTGCTACAATGCTAGAC
AGAGGCGATGGTTCTGAGAGCAAATTGGCACTTTCTATTAATCGTTATATTGGAAATTCA
ATTTTGCCAGTACTCATTAAACATTCAAAGTTTTATAATGAGGCTGATAATTATGCTTCT
TTACTCGATGCTTCACTTCATACAGTTTATCGACTTTCAAAGAATAAGATGTTGACAAAA
GGACAACGTGAAGGTGTTTCAGACTTTTTAGTTGCTTTGACCACAGCAATGCAACCTGCT
ATGCTTTTGAAACTCCTCCGTAAGCTTACAATTGATGTTGAGAAATTATCAGAATACACA
ACTGTTGCTTTGAGATTGCTAACTTTACATTATGAAAGATGTGCTAAGTACTATGGATCA
ACGTCGGGCCAAGGAACTTATGGTACATCATCCGATGAAGAGAAACGTTTGACTATGTTA
TTATTTTCAAATATATTTGATTCATTGAGTAATATGGATTATGAACCAGAATTGTTTGGA
AAAGCTCTTCCATGTCTTATTGCTATCGGTTGTGCTTTACCTCCTGATTATAGTTTATCA
AAGAATACAGATGATGATTTATATGGAAAACCAACTGGAGGAGGTCCTGATCAACCTCAA
TATCATCCACAACCAATCAATACAGTCAGTGTTAATCTCAATAATGATTTGAATACCTGC
ATTCAAAAGTTCAGTGAACATTATCATGATGCGTGGGCTTCAAGAAAATTAGAAAACGGT
TGGACCTATGGTGATCAGTGGTCTGACACACAAAAGTCTCATCCACGTTTAAAACCATAT
AGCATGTTGAGTGATTATGAAAAAGAAAGATATAAAGATCCAGTAAGAGAAATTATGAAA
GCACTTTTAGCTTTAGGTTGGAATGTTGAACATTCAGATTCTGATATGCCAGGATCATCA
AGAGGATCAATTCGTAGATCATCTAAACCAGAAGGACATCATGGTCAAGATTCATCTTCA
CCATTCAATTATCATCCGCAACCAATTGACATGACCAATTTGACATTGAGCAGAGAAATG
CAAAATATGGCAGAGAGATTGGCCGAAAATTCACATGATATTTGGGCAAAGAAAAAGATG
GAAGAATTGGCCACACTAGGTGGAAGCATTCATCCACAATTAGTTCCTTACGATTTGTTA
ACAGATAAAGAAAAGAGAAAAGACCGTGAACGATCACAAGAATTTTTGAAATACTTGCAA
TATCAAGGATATAAACTTCATAAACCAAAGGCCGTTACTACTGATTCTGAAGTTGTAAAT
ATTCAAGCGGCCATTGAATTGAGATTTGCATATTCTTTATTAGGAAAACTCATTCAATAT
CTTGATAAATCAACAGTTAACATGAAATTGTTAAAACCATCTGCAATTTTCAGTCGTCGC
TCGTCATTTAAGACAAGCTCACGAGACATTAAATTTTTCTCAAAAGTTGTTCTACCACTC
ATGGAAAAATACTTCTCAACTCATAGAAACTATTTTATTGCAATTGCCACTGCAACTAAT
AATGTTGGTGCAGCTTCTCTTAAAGAAAAGGAAATGGTTGCAGCATTGTTCTGCAAATTA
GCGAATTTATTACGTAATCGATTAACTGCTTTTGGACCAGATGTTCGTTTAGTAGTGAAA
GTTTTACAAGTTTTAGTAAAAAGTATCGATGCAAAATCACTTGTTAGAAATTGTCCTGAA
TTTATTCGTACATCAATGTTAACCTTCTTTAATAATACTGCAGATGACTTAATGCATACG
ATCAAAAATTTACTAGATGGAAAATATAGTCATTTGAGAGGAACACATTTGAAAACATCA
ACATCATTACAATATGTCAATCAAGTAATTTTACCTGTTTTAACTGCAATGTTTGATCAT
TTAGCAGCGTGCGAATATGGAAATGAATTGCTCCTTGATGAAATTCAAGTGGCATCGTAT
AAAATACTCTCTGCACTTTATACATTAGGCACAGATAATAATCTTACACGTGATCGTAAA
TATTTGAAAACTGAATTTGAGAGACATAAGCCAGCATTGGGATCATGCTTAGGAGCATTC
AGTTCCACTTTTCCAGTTGCATTTTTGGAACCACACAATAACAAGCATAACCAATATTCA
TTATTAAATCGCATCGCTGACCATTCACTTGAGGCACAAGATATTATGGAGTCAGAAAAA
AGTTATCAAGAGGCACAACATGTCATTGATGTTATTTTGCCACTTTTGTGCTCATATTTG
CCGTTTTGGTGGGCTCAAGGCCCTGATAATGTCAATCCAACATCTGGTAATCATGTGACT
ACTATAACAGCTGACCATATGAATCAACTTTTAAAACATGTTCTCAAATTGATTAAAAAA
AATATAGGAAATGAAAATGCTTTATGGATGACAAGAATTGCAGCTTATACTCAACAAATT
ATTATTAATAGTTCAGAAGAGCTTCTTAAAGATCCTTTCTTACCTCTTGCTGAAAGAGTA
AAAAAACGTGTTGACAATATGTTCCATAAAGAAGAGAGTTTACGTGGATTTTTGAAGTCT
TCAACAGACGATACTTCACAAGTAGAATCACAGATTCAAGAAGATTGGCAGTTGCTTGTT
AGAGATATTTATTCATTTTATCCATTACTCATTAAATATGTTGATTTGCAAAGAAATCAC
TGGCTTAAAGATAATATTTCTGAGGCTGAAGAGCTTTATAATAATGTCGCAGAAATTTTC
AATATTTGGTCAAAGAGTCAGTACTTTTTGAAAGAAGAACAGAACTTTATTAGTGCGAAT
GAGATTGATAATATGGCATTGATTATGCCAACTGCATCGAGAAGAACAGCAACAGCTGTT
GAAGGTCAACCGCAAGGTGGTGGAAAAATTAAAAAGAAGAAAAAGAATCGTGACAAAAAA
CGTGATAAAGACAAAGAAATTCAAGCTAGTTTGATGGTTGCATGCTTAAAACGTTTATTG
CCAGTTGGTCTCAATTTGTTTGCTGGTCGTGAACAAGAATTAGTGCAACATTGTAAAGAT
CGTTATTTGAAGAAAATGCCTGAATATGAAGTGCTTGATTTTGCACGCATTCAATTGACG
CTTCCTGATAAACTTGATCCAGCTGATGAAATGAGTTGGCAACATTATTTATACTCTAAA
CTAGGTAAAAAGAATGAACCGACTCTTGAAGATGTTAGTGAAAAGACAACAACTACAACT
GATAAAAAAGGAGAAGAAAAAAAGATTGAAGATACAGTTGAAAGAATTGTTGCAATGGCC
AAAGTTCTATATGGATTGCATATGATTGATCATCCACAACAACAAAGTAAAAATGTATAT
CACAGTGTTGCTATTTCAAAGTCAGCTGAACATATTTTGAAAAAGAGAGTTTCGGCCGCA
AGAAAAAAACTTGCCATAACGTGTCTTCGAGCAAAACCTTTATACAAACTTCAAAGACAT
CGAGCATGTAATATATTTGCTAAGGTCTACAAAGATTTGTGGCTTCAGGAGGAAAATGTC
GGTCAAGAAGTTATGATTGAAGATTTAACGCAATCCTTTGAAGATTCTGAAAAGCAAAAA
AAAGAAGACGATGAGGAAGAAGGAAAACCAGATCCATTGACTCAGCTGATTACAACGTTC
TGTCGAGGAGCAATGACTGAAAGATCAGGTGCATTACAAGAAGATCCTCTTTACATGTCA
TATGCTGAAATTGTTGCAAAATCTTGTGGAGAAGAGGAGGAAGAAGGTGGTGAAGAAGAA
GATGAAGAAGCTGAAGAAGAAGGTGGTGCAAGCATTCATGAACAAGAAATGGAAAAACAA
AAGTTACTGTTTCATCAAGCTCGTTTGGCAAATCGTGGTGTAGCTGAGATGGTTCTACTA
CACATTAGTGCATCTAAAGGTGTGCCGTCAGATATGGTCATGAAAACACTTGAACTTGGA
ATTGCTGTTTTGCGCGGTGGTAATATTGATATACAAATGCGCATGTTGAACCATTTAAAA
GACAAAAAAGATGTTGGATTTTTCACATCAATTGCGGGCTTGATGAATTCTTGCAGTGTA
CTTGATTTAGATGCTTTTGAGAGAAACACAAAAGCTGAGGGTCTTGGAGTTGGCTCAGAA
GGTGCTGCAGGCGAGAAAAATATGCATGATGCTGAATTCACATGTGCTCTTTTCCGTTTC
ATTCAATTGACTTGCGAAGGTCACAATTTGGAATGGCAAAATTATTTAAGAACTCAAGCT
GGTAATACAACTACTGTGAACGTAGTCATTTGTACAGTCGATTATTTGCTTCGTTTGCAA
GAATCAATTATGGACTTTTATTGGCATTATTCGAGCAAAGAATTAATTGATCCAGCTGGT
AAAGTAAATTTCTTCAAAGCTATTGGTGTGGCGAGTCAAGTTTTCAATACACTCACTGAA
GTCATTCAAGGTCCATGTACACAAAATCAGCAGGCACTTGCTCACTCAAGATTATGGGAT
GCTGTCGGCGGTTTTCTATTTTTATTCAGTCACATGCAAGAAAAACTTTCGAAGCATTCC
TCTCAAGTTGATTTGTTGAAAGAGCTTTTAAATTTGCAAAAAGACATGATTACAATGATG
CTCTCTATGCTTGAGGGTAATGTTGTTAATGGCACGATTGGAAAACAAATGGTCGACACA
TTGGTTGAATCAGCTTCAAATGTAGAATTGATTTTGAAATACTTTGATATGTTCTTGAAG
CTTAAAGATTTGATTTCTTCACCAAGTTTTGCTGAGATCGACCCAAATAATGATGGATGG
GTTTTGCCAAAAGATTTCAAAGAAAAAATGGATCAACAAAAGAGTTATACACCAGATGAA
ATTGAATTCTTACTTGCATGTTGTGAAGTCAATCATGATGGAAAAGTTGATTATGTTGGT
TTCTGTGACCGTTTCCATGAACCAGCTAAAGAAATCGGTTTCAATCTTGCTGTTTTGCTT
ACAAATCTTTCTGAGCATATGCCTAATGAACCAAGATTGGCAAGATTTTTGGAAACTGCA
AGTTCTGTTCTAAATTACTTTGAAGCATTCTTAGGAAGAATTGAAATTTTAGGCTCATCA
AAGAAAATCGAACGTGTTTACTTTGAAATTAAGGAATCAAATATTGAACAATGGGAGAAA
CCACAAATTAAAGAATCTAAGCGTGCTTTCTTCTATTCAATTGTCACAGAAGGTGGTGAT
AAAGAAAAACTCGAAGCATTTGTTAACTTTTGTGAGGATGCCATTTTTGAAATGACTCAT
GCCTCTGAAATTATGGCGACTGACGAAAAAGGTGGTAGTGTAAAACGGGAAACATCATAC
AGCTCATATATCAGTGATGAAGATGAAGAAAGAGCTGCCAGAGATCCTATTCGTAAAACA
ATTCAATCGGTAAAAGATGGATTCAAACATTTCGCTTTTCTTTTAAGTCCTGCCAACATT
AAACATCAAATTAGTATCTTGCAAACAAAATCAATTCCAGAACTCATTGTTGGCTTCTTT
AAACTCATTTTATACTCTTTCTATTATACCGGCTATGCATTCTATGCTATTTTACGGTAC
TTCTTTAATATTTTAATGAATTTAATGCGCGGACCTGCTGTCGAAGAGGAAGAAGTTCCA
TTAGTTGCAGAAATTGAGCGTCATCTACCAGCATTGACTTTACCACCATTACCAGAAGAA
GAACCATCATCTAGTACAGAAGGAAGTAAAGATGAAACTGGAGGAAATATAGGTGGTACA
AGTGGAGAAGATATAAGTGGTGAAGGTTCAATAGATAAACAAGGAGACACTAGTGATACA
GAAGCACGATTAGAGCCTCCAATGACTCTTCAAGATCTTCTTGGAGGTGAGGCAGCAAAA
GCAGCTGAAAAAGAACGTAGTGAGGCACAAAAAGTGCAAGAAGCAGCTATGGCAAGCATT
GAGTCTGAAAGTAAAAAATCAACACAAACAACCACCGATCCTTCTGCTGCCAGTCAAATT
GATTTCTCACAATATGCACATAAGGCAGTCAGTTTTCTTGCAAGAAACTTTTATACTCTT
AAATATGTTGCTCTTGTTTTGGCTTTCTGTATCAACTTTATGCTTTTATTCTATAAAGTA
ACTACATTTGGTGAAGAAAATGATGGTTCTGGTGATAGTGAATTAAGCGATTTAGGTTCA
GCTATGGGTTCTGGTTCTGGTGCGGGAATTGATTTGGGCAGTGCAGAAGGGTCCGGTGAA
ACAGACGAAGAAGATCCTCTTGAGTTGGTTCAAGTTGATGAAGCATACATTGAACATGTC
ATGAGATTTGCAGCAGCTTTACACAGTCTGGTTTCATTGTGCATGCTTATTGCTTATTAC
CATTTGAAAGTTCCACTTGCTATTTTCAAACGTGAAAAAGAAATTGCTCGTCGTTTGGAA
TTTGATGGTCTTTTTATTGCTGAACATCCTGAAGATGACGATATAAAATCACATTGGGAT
AAATTAGTAATTAGTTCAAAAAGCTTCCCTGTCAATTATTGGGATAAATTTGTAAAGAAA
AAGGTTCGACAAAAGTACAGCGAAACTTATGACTTTGATTCAATTTCAAATTTACTTGGT
ATGGAAAAGACAGCATTTGGCACTCAAGAAGTCAACGAAAGCGGTGGACTTATTCATTTT
ATTCTCAATATTGATTGGCGTTATCAAGTATGGAAAGCTGGTGTTACAATCACAGATAAT
GCTTTCCTTTATTCTCTTTGGTACTTTACTTTCTCAATTTTGGGCAACTTTAACAACTTT
TTCTTTGCTGCTCATTTACTCGATGTTGCTGTTGGTTTCAAGACTCTAAGAACAATCTTG
CAATCAGTAACACACAATGGCAAACAATTAGTTTTGACTGTCATGCTTCTTACAATTATT
GTGTATATTTACACTGTAATTGCTTTCAACTTTTTCCGCAAATTCTATATACAAGAGGAA
GAAGATGAAGTAGATAAAAAATGTCATGATATGTTAACATGTTTCGTCTTCCATTTGTAT
AAGGGTGTAAGAGCTGGTGGTGGTATTGGTGATGAAATAGGAGATCCAGACGGAGATGAT
TATGAAGTTTATCGTATAATTTTCGATATTACATTCTTCTTCTTCGTTATTGTCATCTTG
TTGGCCATCATTCAAGGTTTGATCATTGATGCTTTTGGTGAGCTTCGTGATCAATTAGAA
TCAGTAAAAGAAGACATGGAGTCGAATTGCTTTATCTGTGGCATAGGAAAAGACTACTTT
GATAAAGTTCCTCATGGATTTGATACGCACGTTGCACAAGAACATAATCTAGCAAATTAC
ATGTTCTTCCTGATGCACTTGATTAATAAACCGGATACAGAATATACGGGTCAAGAGACT
TATGTGTGGAACATGTATCAACAGCGCTGTTGGGATTTCTTCCCTGTTGGTGATTGCTTT
AGGAAGCAATATGAAGATGAACTTGGTGGAAGCCAGTAA

>g11391.t3 Gene=g11391 Length=5072
MAEADGGSEQDDVSFLRTEDMVCLSCTATGERVCLAAEGFGNRHCFLENIADKNIPPDLS
QCVFVIEQALSVRALQELVTAAASESENSSVSKGTGSGHRTLLYGNAILLRHQNSDMYLA
CLSTSSSNDKLSFDVGLQEHSHGEACWWTVHPASKQRSEGEKVRVGDDLILVSVATERYL
HTTKENDFSIVNASFHVTHWSVQPYGTGISRMKYVGYVFGGDVLRFFHGGDECLTIPSTW
SRQPGQNIVVYEGGSVMSQARSLWRLELARTKWSGGFINWYHPMRIRHLTTGRYLGVNEN
NELILTARDDATTAQTAFCLRQEKDDQKVVLEDKDLEVIGSPIIKYGDSTVIVQHAETGL
WLSYKSYETKKKGVGKVEEKQAILHEEGKMDDGLDFSRSQEEESRTARVIRKCSSLFHNF
ITGLETLQQNRRHSLFFLTVNLGEMVMCLEDLINYFAQPEDDIEHEEKQNKLRALRNRQD
LFQEEGVLNLILDAIDKINVITSQGFLSSFLASDESGQSWDMISAYLYQLLAAIIKGNHT
NCAQFANSNRLNWLFSRLGSQASSEGSGMLDVLHCVLIDSPEALNMMRDEHIKVIISLLE
KHGRDPKVLDVLCSLCVGNGFAVRSSQNNICDYLLPGKNLLLQTQLVDHVASVRPNIFVG
RVEGSSFYQKWYFEVVTDHIEQITHMIPYLRIGWANSLGFITYPGGGEKWGGNGVGDDLY
SYGFDGVNLWTGGRHTQVVAEEPSDFKIKKGDVIGCALDLSIPIITFTFNGQKVQGCFRD
FNLDGMFFPVISCSSKVSCRFLFGGDHGKLKYIPPMGYSPLVQCLMPHQNLSLDPCFYFG
NLNKSVLSGPWLIEDDEAFVPNPVDTSSVTLPSFVENIKDKLAENIHEMWALNKIEAAPE
KRYDCQLAVQTLKTIIALGYYITLDKPPARIRPIRLPNDPYMQGNGYKPSPLDLSAAVLT
PKLEELVDQLAENTHNLWAKERIQQGWKYGLNEDSENYRSPHLVPYSKVDEAIKKANRDT
ASETVKTLLIYGYNLDPPTSEANEALLAEAMKQKYAAFRTYRVEKTYAVTSGKWYFEFEV
LTAGPMRVGWARADAAPGMMLGSDDSSWAFDGYNEEKIFGGGAESFGKQWGPGDIVGVFL
DLVDHTISFSLNGELLMDALGGETSFADVHGGSEGVGFVPACTLGVGQKARLIYGQNVDS
LKFFTTCGLQEGYEPFCVNMKRPVTHWYTKDQPIFENTDDMLGCVIDVTRIPGGADTPPC
LKISHNTFETMEKANWEFLRLSLPVTCQSVFITEREKVQRWEEIRLRQHRLLAEVENTTP
AHYEHIMRSGFTMNDIKGLRYTEDAGESDEVLRHPRRPSRKGSLSRPNGFDAPTLEVNGR
IQRSTSDLDMNQYSEGEDRVDDKKKRGRSPFRLFGKKRDQSKDKIKGKNEVEGDKRQGRN
VIQSSIMTRSPTVKVSNADLRVQAPSVPERQKSLKLGSQHVESIGNEVYDSECLKLINEY
FYGVRIYPGQDPTHVYIGWVTTQYHLYSHDFKQENVRRASVYVENEYEQPIGHVTREACY
VVRADELFNEVTQDTSGKGASQGMFVGCFIDTATGIIRFTCEGKETSHRWQMEPDTKLFP
AIFVEATSKEILQIELGRTPTTLPLSAAVLPTSDKHVNPQFPPRLKVQCLKPHQWARVPN
VSLDIHALKLSDIRGWSMLCEDPVSMLALNIPEEDRCIDILELIEMEKLLSFHSHTLTLY
AALCYQSNYRAAHTLCQHVDQKQLLYAIKSEYMSGSLRIGFYDILIALHLESHATTMEAC
KNEFIVPLGPELKEFYSDKDMCHSLRSLKMHSIRPTMKMTEIASPTSLNAPQVVEITAAI
SSEPIPVIDQLYSPKFPLEVLREFVMGAIQEAVEINQVHNRDPIGGSNENLFLPLIKLTD
RLLLVGVLTDEDVHKLLLMIDPETWDETFDREGKDEHKKGLLTMKMAEGAKLQMCYLLHH
LCDIQLRHRVESIIAFSHDFVGDLQADQLRRYIEIKQSDLPSAVAAKKTREFRCPPREQM
NAILNFKNLEEDDENSPCGNDLREKLNEFHDHLMGKVSLNALLEPEAAEIDAADDKPGAM
KKLYNFINAVKDLEEEQGPSEEPEKKTPEEVFRKVLIKTIVSWAEESQIETPKLVREMFS
LLVRQYDTVGELIRSLEKTYVVNYKTQDDVANMWIGLSQIRALLPVQMCQEEEELMRKRL
WKLVNNHTFFQHPDLIRVLRVHENVMAVMMNTLGRRAQAQSDTPSGEGTEGAPVKEKDTS
HEMVVACCRFLCYFCRTGRQNQKAMFDHFDFLLENSNILLSRPSLRGSTPLDVAYSSLME
NTELALALREHYLEKIAIYLSRCGLQSNSELVEKGYPDLGWDPVEGERFLDFLRFCVWVN
GESVEENANLVIRLLIRRPECLGPALRGEGEGLLQAIIEANKMSERISDRRKMQDEAEGQ
MSVAFNHPLPESEEDEDYIDTGAAILAFYCTLVDLLGRCAPDASVIEQGKNESLRARAIL
RSLVPLEDLQGVLSLKFTLINPAAGEERPKSDMPSGLIPGHKQSIVMFLERVYGIETQEL
FYKLLEDAFLPDLRIATMLDRGDGSESKLALSINRYIGNSILPVLIKHSKFYNEADNYAS
LLDASLHTVYRLSKNKMLTKGQREGVSDFLVALTTAMQPAMLLKLLRKLTIDVEKLSEYT
TVALRLLTLHYERCAKYYGSTSGQGTYGTSSDEEKRLTMLLFSNIFDSLSNMDYEPELFG
KALPCLIAIGCALPPDYSLSKNTDDDLYGKPTGGGPDQPQYHPQPINTVSVNLNNDLNTC
IQKFSEHYHDAWASRKLENGWTYGDQWSDTQKSHPRLKPYSMLSDYEKERYKDPVREIMK
ALLALGWNVEHSDSDMPGSSRGSIRRSSKPEGHHGQDSSSPFNYHPQPIDMTNLTLSREM
QNMAERLAENSHDIWAKKKMEELATLGGSIHPQLVPYDLLTDKEKRKDRERSQEFLKYLQ
YQGYKLHKPKAVTTDSEVVNIQAAIELRFAYSLLGKLIQYLDKSTVNMKLLKPSAIFSRR
SSFKTSSRDIKFFSKVVLPLMEKYFSTHRNYFIAIATATNNVGAASLKEKEMVAALFCKL
ANLLRNRLTAFGPDVRLVVKVLQVLVKSIDAKSLVRNCPEFIRTSMLTFFNNTADDLMHT
IKNLLDGKYSHLRGTHLKTSTSLQYVNQVILPVLTAMFDHLAACEYGNELLLDEIQVASY
KILSALYTLGTDNNLTRDRKYLKTEFERHKPALGSCLGAFSSTFPVAFLEPHNNKHNQYS
LLNRIADHSLEAQDIMESEKSYQEAQHVIDVILPLLCSYLPFWWAQGPDNVNPTSGNHVT
TITADHMNQLLKHVLKLIKKNIGNENALWMTRIAAYTQQIIINSSEELLKDPFLPLAERV
KKRVDNMFHKEESLRGFLKSSTDDTSQVESQIQEDWQLLVRDIYSFYPLLIKYVDLQRNH
WLKDNISEAEELYNNVAEIFNIWSKSQYFLKEEQNFISANEIDNMALIMPTASRRTATAV
EGQPQGGGKIKKKKKNRDKKRDKDKEIQASLMVACLKRLLPVGLNLFAGREQELVQHCKD
RYLKKMPEYEVLDFARIQLTLPDKLDPADEMSWQHYLYSKLGKKNEPTLEDVSEKTTTTT
DKKGEEKKIEDTVERIVAMAKVLYGLHMIDHPQQQSKNVYHSVAISKSAEHILKKRVSAA
RKKLAITCLRAKPLYKLQRHRACNIFAKVYKDLWLQEENVGQEVMIEDLTQSFEDSEKQK
KEDDEEEGKPDPLTQLITTFCRGAMTERSGALQEDPLYMSYAEIVAKSCGEEEEEGGEEE
DEEAEEEGGASIHEQEMEKQKLLFHQARLANRGVAEMVLLHISASKGVPSDMVMKTLELG
IAVLRGGNIDIQMRMLNHLKDKKDVGFFTSIAGLMNSCSVLDLDAFERNTKAEGLGVGSE
GAAGEKNMHDAEFTCALFRFIQLTCEGHNLEWQNYLRTQAGNTTTVNVVICTVDYLLRLQ
ESIMDFYWHYSSKELIDPAGKVNFFKAIGVASQVFNTLTEVIQGPCTQNQQALAHSRLWD
AVGGFLFLFSHMQEKLSKHSSQVDLLKELLNLQKDMITMMLSMLEGNVVNGTIGKQMVDT
LVESASNVELILKYFDMFLKLKDLISSPSFAEIDPNNDGWVLPKDFKEKMDQQKSYTPDE
IEFLLACCEVNHDGKVDYVGFCDRFHEPAKEIGFNLAVLLTNLSEHMPNEPRLARFLETA
SSVLNYFEAFLGRIEILGSSKKIERVYFEIKESNIEQWEKPQIKESKRAFFYSIVTEGGD
KEKLEAFVNFCEDAIFEMTHASEIMATDEKGGSVKRETSYSSYISDEDEERAARDPIRKT
IQSVKDGFKHFAFLLSPANIKHQISILQTKSIPELIVGFFKLILYSFYYTGYAFYAILRY
FFNILMNLMRGPAVEEEEVPLVAEIERHLPALTLPPLPEEEPSSSTEGSKDETGGNIGGT
SGEDISGEGSIDKQGDTSDTEARLEPPMTLQDLLGGEAAKAAEKERSEAQKVQEAAMASI
ESESKKSTQTTTDPSAASQIDFSQYAHKAVSFLARNFYTLKYVALVLAFCINFMLLFYKV
TTFGEENDGSGDSELSDLGSAMGSGSGAGIDLGSAEGSGETDEEDPLELVQVDEAYIEHV
MRFAAALHSLVSLCMLIAYYHLKVPLAIFKREKEIARRLEFDGLFIAEHPEDDDIKSHWD
KLVISSKSFPVNYWDKFVKKKVRQKYSETYDFDSISNLLGMEKTAFGTQEVNESGGLIHF
ILNIDWRYQVWKAGVTITDNAFLYSLWYFTFSILGNFNNFFFAAHLLDVAVGFKTLRTIL
QSVTHNGKQLVLTVMLLTIIVYIYTVIAFNFFRKFYIQEEEDEVDKKCHDMLTCFVFHLY
KGVRAGGGIGDEIGDPDGDDYEVYRIIFDITFFFFVIVILLAIIQGLIIDAFGELRDQLE
SVKEDMESNCFICGIGKDYFDKVPHGFDTHVAQEHNLANYMFFLMHLINKPDTEYTGQET
YVWNMYQQRCWDFFPVGDCFRKQYEDELGGSQ

Protein features from InterProScan

Transcript Database ID Name Start End E.value
57 g11391.t3 CDD cd12877 SPRY1_RyR 652 804 1.34323E-76
58 g11391.t3 CDD cd12878 SPRY2_RyR 1059 1195 3.65007E-76
56 g11391.t3 CDD cd12879 SPRY3_RyR 1490 1637 3.11781E-70
44 g11391.t3 Coils Coil Coil 465 485 -
43 g11391.t3 Coils Coil Coil 3766 3786 -
33 g11391.t3 Gene3D G3DSA:2.80.10.50 - 1 209 7.4E-84
34 g11391.t3 Gene3D G3DSA:2.80.10.50 - 213 399 7.1E-60
39 g11391.t3 Gene3D G3DSA:1.25.10.120 - 400 541 2.6E-58
41 g11391.t3 Gene3D G3DSA:2.60.120.920 - 645 841 7.8E-59
37 g11391.t3 Gene3D G3DSA:1.10.490.160 - 855 898 1.7E-9
42 g11391.t3 Gene3D G3DSA:2.60.120.920 - 1054 1236 9.0E-54
40 g11391.t3 Gene3D G3DSA:2.60.120.920 - 1428 1648 3.4E-14
36 g11391.t3 Gene3D G3DSA:1.10.490.160 - 2797 2911 2.5E-33
35 g11391.t3 Gene3D G3DSA:1.10.490.160 - 2923 3009 1.4E-29
38 g11391.t3 Gene3D G3DSA:1.10.238.10 - 4168 4230 3.4E-5
82 g11391.t3 MobiDBLite mobidb-lite consensus disorder prediction 1345 1436 -
80 g11391.t3 MobiDBLite mobidb-lite consensus disorder prediction 1392 1436 -
72 g11391.t3 MobiDBLite mobidb-lite consensus disorder prediction 2256 2277 -
77 g11391.t3 MobiDBLite mobidb-lite consensus disorder prediction 2893 2927 -
74 g11391.t3 MobiDBLite mobidb-lite consensus disorder prediction 3536 3564 -
75 g11391.t3 MobiDBLite mobidb-lite consensus disorder prediction 3772 3795 -
81 g11391.t3 MobiDBLite mobidb-lite consensus disorder prediction 3772 3791 -
78 g11391.t3 MobiDBLite mobidb-lite consensus disorder prediction 3828 3851 -
79 g11391.t3 MobiDBLite mobidb-lite consensus disorder prediction 3832 3849 -
73 g11391.t3 MobiDBLite mobidb-lite consensus disorder prediction 4472 4572 -
76 g11391.t3 MobiDBLite mobidb-lite consensus disorder prediction 4479 4500 -
15 g11391.t3 PANTHER PTHR12864:SF53 RYANODINE RECEPTOR 44F-LIKE PROTEIN 1 3314 0.0
17 g11391.t3 PANTHER PTHR12864 RAN BINDING PROTEIN 9-RELATED 1 3314 0.0
16 g11391.t3 PANTHER PTHR12864:SF53 RYANODINE RECEPTOR 44F-LIKE PROTEIN 3357 5070 0.0
18 g11391.t3 PANTHER PTHR12864 RAN BINDING PROTEIN 9-RELATED 3357 5070 0.0
20 g11391.t3 PRINTS PR00795 Ryanodine receptor signature 56 77 8.5E-85
25 g11391.t3 PRINTS PR00795 Ryanodine receptor signature 97 115 8.5E-85
26 g11391.t3 PRINTS PR00795 Ryanodine receptor signature 155 179 8.5E-85
22 g11391.t3 PRINTS PR00795 Ryanodine receptor signature 259 282 8.5E-85
23 g11391.t3 PRINTS PR00795 Ryanodine receptor signature 568 587 8.5E-85
24 g11391.t3 PRINTS PR00795 Ryanodine receptor signature 710 732 8.5E-85
19 g11391.t3 PRINTS PR00795 Ryanodine receptor signature 794 814 8.5E-85
21 g11391.t3 PRINTS PR00795 Ryanodine receptor signature 879 902 8.5E-85
4 g11391.t3 Pfam PF08709 Inositol 1,4,5-trisphosphate/ryanodine receptor 12 209 5.7E-66
14 g11391.t3 Pfam PF02815 MIR domain 216 396 5.8E-48
3 g11391.t3 Pfam PF01365 RIH domain 447 646 5.1E-61
6 g11391.t3 Pfam PF00622 SPRY domain 670 805 1.4E-20
12 g11391.t3 Pfam PF02026 RyR domain 859 897 3.1E-11
9 g11391.t3 Pfam PF02026 RyR domain 947 1036 2.7E-30
7 g11391.t3 Pfam PF00622 SPRY domain 1073 1197 4.4E-20
5 g11391.t3 Pfam PF00622 SPRY domain 1500 1638 5.3E-19
2 g11391.t3 Pfam PF01365 RIH domain 2197 2427 4.5E-68
11 g11391.t3 Pfam PF02026 RyR domain 2801 2890 3.6E-29
10 g11391.t3 Pfam PF02026 RyR domain 2924 3007 2.4E-25
13 g11391.t3 Pfam PF08454 RyR and IP3R Homology associated 3969 4085 6.3E-31
1 g11391.t3 Pfam PF06459 Ryanodine Receptor TM 4-6 4528 4708 2.5E-46
8 g11391.t3 Pfam PF00520 Ion transport protein 4835 4978 4.7E-14
49 g11391.t3 Phobius NON_CYTOPLASMIC_DOMAIN Region of a membrane-bound protein predicted to be outside the membrane, in the extracellular region. 1 4421 -
52 g11391.t3 Phobius TRANSMEMBRANE Region of a membrane-bound protein predicted to be embedded in the membrane. 4422 4442 -
45 g11391.t3 Phobius CYTOPLASMIC_DOMAIN Region of a membrane-bound protein predicted to be outside the membrane, in the cytoplasm. 4443 4597 -
55 g11391.t3 Phobius TRANSMEMBRANE Region of a membrane-bound protein predicted to be embedded in the membrane. 4598 4618 -
48 g11391.t3 Phobius NON_CYTOPLASMIC_DOMAIN Region of a membrane-bound protein predicted to be outside the membrane, in the extracellular region. 4619 4682 -
54 g11391.t3 Phobius TRANSMEMBRANE Region of a membrane-bound protein predicted to be embedded in the membrane. 4683 4702 -
47 g11391.t3 Phobius CYTOPLASMIC_DOMAIN Region of a membrane-bound protein predicted to be outside the membrane, in the cytoplasm. 4703 4869 -
51 g11391.t3 Phobius TRANSMEMBRANE Region of a membrane-bound protein predicted to be embedded in the membrane. 4870 4892 -
50 g11391.t3 Phobius NON_CYTOPLASMIC_DOMAIN Region of a membrane-bound protein predicted to be outside the membrane, in the extracellular region. 4893 4945 -
53 g11391.t3 Phobius TRANSMEMBRANE Region of a membrane-bound protein predicted to be embedded in the membrane. 4946 4969 -
46 g11391.t3 Phobius CYTOPLASMIC_DOMAIN Region of a membrane-bound protein predicted to be outside the membrane, in the cytoplasm. 4970 5072 -
87 g11391.t3 ProSiteProfiles PS50919 MIR domain profile. 99 153 10.316
86 g11391.t3 ProSiteProfiles PS50919 MIR domain profile. 160 205 8.088
85 g11391.t3 ProSiteProfiles PS50919 MIR domain profile. 215 269 6.938
84 g11391.t3 ProSiteProfiles PS50919 MIR domain profile. 275 333 7.256
83 g11391.t3 ProSiteProfiles PS50919 MIR domain profile. 341 399 7.207
90 g11391.t3 ProSiteProfiles PS50188 B30.2/SPRY domain profile. 582 808 11.338
89 g11391.t3 ProSiteProfiles PS50188 B30.2/SPRY domain profile. 1012 1199 17.857
88 g11391.t3 ProSiteProfiles PS50188 B30.2/SPRY domain profile. 1421 1641 12.143
71 g11391.t3 SMART SM00472 mir_2 99 153 8.3E-4
70 g11391.t3 SMART SM00472 mir_2 160 205 0.0028
68 g11391.t3 SMART SM00472 mir_2 215 269 0.7
69 g11391.t3 SMART SM00472 mir_2 275 366 2.3E-15
67 g11391.t3 SMART SM00449 SPRY_3 668 807 2.8E-26
66 g11391.t3 SMART SM00449 SPRY_3 1071 1198 4.0E-36
65 g11391.t3 SMART SM00449 SPRY_3 1497 1640 2.0E-21
29 g11391.t3 SUPERFAMILY SSF82109 MIR domain 103 186 3.53E-7
28 g11391.t3 SUPERFAMILY SSF82109 MIR domain 220 397 4.53E-41
31 g11391.t3 SUPERFAMILY SSF49899 Concanavalin A-like lectins/glucanases 670 808 5.14E-9
30 g11391.t3 SUPERFAMILY SSF49899 Concanavalin A-like lectins/glucanases 1063 1160 9.1E-21
27 g11391.t3 SUPERFAMILY SSF100909 IP3 receptor type 1 binding core, domain 2 2234 2317 6.8E-5
32 g11391.t3 SUPERFAMILY SSF47473 EF-hand 4170 4229 1.78E-7
63 g11391.t3 TMHMM TMhelix Region of a membrane-bound protein predicted to be embedded in the membrane. 4416 4438 -
62 g11391.t3 TMHMM TMhelix Region of a membrane-bound protein predicted to be embedded in the membrane. 4602 4624 -
61 g11391.t3 TMHMM TMhelix Region of a membrane-bound protein predicted to be embedded in the membrane. 4680 4702 -
64 g11391.t3 TMHMM TMhelix Region of a membrane-bound protein predicted to be embedded in the membrane. 4822 4844 -
60 g11391.t3 TMHMM TMhelix Region of a membrane-bound protein predicted to be embedded in the membrane. 4870 4892 -
59 g11391.t3 TMHMM TMhelix Region of a membrane-bound protein predicted to be embedded in the membrane. 4950 4969 -

Transmembrane regions from TMHMM

Disordered region

IUPRED3 score over 0.5 is predictive of a disordered region.

GO terms from InterProScan

GOID TERM ONTOLOGY
GO:0070588 calcium ion transmembrane transport BP
GO:0016020 membrane CC
GO:0055085 transmembrane transport BP
GO:0006816 calcium ion transport BP
GO:0006811 ion transport BP
GO:0005219 ryanodine-sensitive calcium-release channel activity MF
GO:0005216 ion channel activity MF
GO:0005515 protein binding MF
GO:0016021 integral component of membrane CC
GO:0005262 calcium channel activity MF
GO:0005789 endoplasmic reticulum membrane CC
GO:0006874 cellular calcium ion homeostasis BP

KEGG

Orthology

Pathway

  • This transcript belongs to the following pathways

Expression

Transcript expression in Pv11 cells

TPM values are indicated as average +/- STDEV.

Differential expression

Differentially expressed genes were identified with DESeq2 using the ‘run_DE_analysis.pl’ script from Trinity. Transcripts were determined as differentially expressed when (1) FDR < 0.05 (2) fold change > 2 (TPM calculated by RSEM). DE information and fold change between conditions are indicated in the plot below.

Raw TPM values