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.t2 TSS g11391.t2 15906931 15906931
chr_1 g11391 g11391.t2 isoform g11391.t2 15907015 15929198
chr_1 g11391 g11391.t2 exon g11391.t2.exon1 15907015 15907068
chr_1 g11391 g11391.t2 cds g11391.t2.CDS1 15907015 15907068
chr_1 g11391 g11391.t2 exon g11391.t2.exon2 15907133 15907336
chr_1 g11391 g11391.t2 cds g11391.t2.CDS2 15907133 15907336
chr_1 g11391 g11391.t2 exon g11391.t2.exon3 15909228 15909305
chr_1 g11391 g11391.t2 cds g11391.t2.CDS3 15909228 15909305
chr_1 g11391 g11391.t2 exon g11391.t2.exon4 15909364 15909458
chr_1 g11391 g11391.t2 cds g11391.t2.CDS4 15909364 15909458
chr_1 g11391 g11391.t2 exon g11391.t2.exon5 15909535 15909558
chr_1 g11391 g11391.t2 cds g11391.t2.CDS5 15909535 15909558
chr_1 g11391 g11391.t2 exon g11391.t2.exon6 15909620 15909689
chr_1 g11391 g11391.t2 cds g11391.t2.CDS6 15909620 15909689
chr_1 g11391 g11391.t2 exon g11391.t2.exon7 15909744 15909819
chr_1 g11391 g11391.t2 cds g11391.t2.CDS7 15909744 15909819
chr_1 g11391 g11391.t2 exon g11391.t2.exon8 15909875 15909998
chr_1 g11391 g11391.t2 cds g11391.t2.CDS8 15909875 15909998
chr_1 g11391 g11391.t2 exon g11391.t2.exon9 15910056 15910230
chr_1 g11391 g11391.t2 cds g11391.t2.CDS9 15910056 15910230
chr_1 g11391 g11391.t2 exon g11391.t2.exon10 15910291 15910640
chr_1 g11391 g11391.t2 cds g11391.t2.CDS10 15910291 15910640
chr_1 g11391 g11391.t2 exon g11391.t2.exon11 15910705 15911306
chr_1 g11391 g11391.t2 cds g11391.t2.CDS11 15910705 15911306
chr_1 g11391 g11391.t2 exon g11391.t2.exon12 15911365 15912189
chr_1 g11391 g11391.t2 cds g11391.t2.CDS12 15911365 15912189
chr_1 g11391 g11391.t2 exon g11391.t2.exon13 15912763 15913412
chr_1 g11391 g11391.t2 cds g11391.t2.CDS13 15912763 15913412
chr_1 g11391 g11391.t2 exon g11391.t2.exon14 15913713 15913812
chr_1 g11391 g11391.t2 cds g11391.t2.CDS14 15913713 15913812
chr_1 g11391 g11391.t2 exon g11391.t2.exon15 15913900 15914110
chr_1 g11391 g11391.t2 cds g11391.t2.CDS15 15913900 15914110
chr_1 g11391 g11391.t2 exon g11391.t2.exon16 15914187 15914411
chr_1 g11391 g11391.t2 cds g11391.t2.CDS16 15914187 15914411
chr_1 g11391 g11391.t2 exon g11391.t2.exon17 15914469 15914961
chr_1 g11391 g11391.t2 cds g11391.t2.CDS17 15914469 15914961
chr_1 g11391 g11391.t2 exon g11391.t2.exon18 15915028 15915199
chr_1 g11391 g11391.t2 cds g11391.t2.CDS18 15915028 15915199
chr_1 g11391 g11391.t2 exon g11391.t2.exon19 15915261 15915375
chr_1 g11391 g11391.t2 cds g11391.t2.CDS19 15915261 15915375
chr_1 g11391 g11391.t2 exon g11391.t2.exon20 15915444 15916175
chr_1 g11391 g11391.t2 cds g11391.t2.CDS20 15915444 15916175
chr_1 g11391 g11391.t2 exon g11391.t2.exon21 15916232 15916369
chr_1 g11391 g11391.t2 cds g11391.t2.CDS21 15916232 15916369
chr_1 g11391 g11391.t2 exon g11391.t2.exon22 15916847 15917056
chr_1 g11391 g11391.t2 cds g11391.t2.CDS22 15916847 15917056
chr_1 g11391 g11391.t2 exon g11391.t2.exon23 15917116 15917231
chr_1 g11391 g11391.t2 cds g11391.t2.CDS23 15917116 15917231
chr_1 g11391 g11391.t2 exon g11391.t2.exon24 15917291 15918346
chr_1 g11391 g11391.t2 cds g11391.t2.CDS24 15917291 15918346
chr_1 g11391 g11391.t2 exon g11391.t2.exon25 15918401 15919872
chr_1 g11391 g11391.t2 cds g11391.t2.CDS25 15918401 15919872
chr_1 g11391 g11391.t2 exon g11391.t2.exon26 15919929 15920144
chr_1 g11391 g11391.t2 cds g11391.t2.CDS26 15919929 15920144
chr_1 g11391 g11391.t2 exon g11391.t2.exon27 15920199 15920330
chr_1 g11391 g11391.t2 cds g11391.t2.CDS27 15920199 15920330
chr_1 g11391 g11391.t2 exon g11391.t2.exon28 15920389 15920589
chr_1 g11391 g11391.t2 cds g11391.t2.CDS28 15920389 15920589
chr_1 g11391 g11391.t2 exon g11391.t2.exon29 15920655 15920746
chr_1 g11391 g11391.t2 cds g11391.t2.CDS29 15920655 15920746
chr_1 g11391 g11391.t2 exon g11391.t2.exon30 15920804 15921474
chr_1 g11391 g11391.t2 cds g11391.t2.CDS30 15920804 15921474
chr_1 g11391 g11391.t2 exon g11391.t2.exon31 15921531 15921784
chr_1 g11391 g11391.t2 cds g11391.t2.CDS31 15921531 15921784
chr_1 g11391 g11391.t2 exon g11391.t2.exon32 15922651 15922741
chr_1 g11391 g11391.t2 cds g11391.t2.CDS32 15922651 15922741
chr_1 g11391 g11391.t2 exon g11391.t2.exon33 15922805 15923577
chr_1 g11391 g11391.t2 cds g11391.t2.CDS33 15922805 15923577
chr_1 g11391 g11391.t2 exon g11391.t2.exon34 15923635 15923886
chr_1 g11391 g11391.t2 cds g11391.t2.CDS34 15923635 15923886
chr_1 g11391 g11391.t2 exon g11391.t2.exon35 15924109 15924221
chr_1 g11391 g11391.t2 cds g11391.t2.CDS35 15924109 15924221
chr_1 g11391 g11391.t2 exon g11391.t2.exon36 15924895 15924988
chr_1 g11391 g11391.t2 cds g11391.t2.CDS36 15924895 15924988
chr_1 g11391 g11391.t2 exon g11391.t2.exon37 15925051 15925268
chr_1 g11391 g11391.t2 cds g11391.t2.CDS37 15925051 15925268
chr_1 g11391 g11391.t2 exon g11391.t2.exon38 15925344 15926431
chr_1 g11391 g11391.t2 cds g11391.t2.CDS38 15925344 15926431
chr_1 g11391 g11391.t2 exon g11391.t2.exon39 15926488 15928635
chr_1 g11391 g11391.t2 cds g11391.t2.CDS39 15926488 15928635
chr_1 g11391 g11391.t2 exon g11391.t2.exon40 15928689 15928951
chr_1 g11391 g11391.t2 cds g11391.t2.CDS40 15928689 15928951
chr_1 g11391 g11391.t2 exon g11391.t2.exon41 15929007 15929198
chr_1 g11391 g11391.t2 cds g11391.t2.CDS41 15929007 15929198
chr_1 g11391 g11391.t2 TTS g11391.t2 15929278 15929278

Sequences

>g11391.t2 Gene=g11391 Length=15165
ATGGCCGAAGCAGATGGAGGATCCGAGCAGGATGATGTCTCATTTCTTCGTACTGAAGAC
ATGGTTTGCTTGTCATGTACAGCAACCGGAGAAAGAGTGTGTTTGGCAGCTGAAGGTTTT
GGCAATCGGCATTGCTTTTTGGAAAATATTGCCGACAAAAATATTCCACCAGACCTTTCA
CAATGTGTTTTTGTAATTGAGCAAGCATTGTCAGTCAGAGCTCTTCAAGAGTTAGTTACT
GCTGCAGCCTCTGAATCGTCTAAAGGAACTGGTTCAGGGCATCGTACGCTTCTATATGGC
AATGCAATTTTATTACGTCACCAGAACAGTGATATGTACTTGGCATGTTTGTCAACATCC
TCATCAAATGACAAATTATCTTTTGATGTTGGTTTACAAGAGCATAGTCATGGTGAAGCC
TGTTGGTGGACTGTACATCCAGCTAGCAAACAAAGATCTGAAGGTGAAAAAGTGCGTGTT
GGTGATGATTTGATTTTAGTTTCTGTAGCTACAGAACGTTATTTGCACACAACAAAAGAG
AATGATTTTTCAATTGTCAACGCAAGCTTCCATGTTACACATTGGTCTGTGCAACCATAT
GGTACTGGAATATCAAGAATGAAATACGTTGGATATGTTTTTGGTGGCGATGTTTTACGT
TTTTTTCATGGCGGTGATGAATGTTTAACAATACCATCAACATGGTCGAGACAACCTGGA
CAAAATATTGTTGTATACGAGGGAGGTTCAGTAATGTCTCAAGCTAGATCATTATGGCGA
CTAGAATTAGCAAGAACAAAATGGTCTGGTGGATTTATTAATTGGTATCATCCTATGAGA
ATTAGACATTTAACAACTGGCAGATATTTAGGTGTAAATGAAAATAATGAATTAATTTTG
ACAGCACGAGATGATGCAACAACAGCACAAACTGCCTTTTGTCTCAGACAAGAAAAGGAT
GATCAAAAAGTTGTGCTTGAAGACAAAGATCTAGAAGTTATTGGTTCACCGATTATTAAA
TATGGTGACAGTACAGTCATTGTTCAGCATGCAGAGACTGGTCTTTGGCTCAGTTACAAA
AGTTATGAAACTAAAAAGAAAGGTGTTGGAAAGGTTGAAGAGAAGCAAGCAATTTTACAT
GAAGAAGGTAAAATGGATGATGGTCTCGACTTTTCAAGATCTCAAGAAGAAGAATCAAGA
ACTGCACGTGTTATTCGTAAATGTAGCAGTCTCTTTCACAATTTCATTACTGGACTAGAA
ACATTGCAACAAAACAGAAGACATTCGCTATTTTTCCTAACTGTAAATTTGGGTGAAATG
GTTATGTGTTTAGAAGATTTGATTAATTATTTTGCGCAACCAGAAGATGACATTGAACAC
GAAGAAAAACAGAATAAATTAAGAGCTCTTAGAAATCGGCAAGATCTTTTTCAAGAAGAG
GGTGTCTTAAATTTAATTCTTGATGCTATTGATAAGATTAATGTTATCACATCTCAAGGA
TTTTTGTCATCCTTTTTGGCAAGTGACGAAAGTGGTCAAAGTTGGGATATGATTTCTGCT
TATTTATATCAACTTCTCGCTGCTATTATCAAAGGAAATCATACAAATTGTGCTCAATTT
GCCAATTCTAATCGTTTAAATTGGCTTTTTTCACGGCTTGGTTCACAAGCATCTAGTGAA
GGTTCAGGCATGCTTGATGTATTGCATTGTGTTTTGATTGATTCACCTGAAGCTTTGAAT
ATGATGCGTGATGAACATATCAAAGTTATTATTTCATTGTTAGAAAAACATGGACGTGAT
CCAAAAGTTTTAGATGTTTTATGCTCACTTTGTGTGGGTAATGGCTTTGCTGTTCGCAGT
TCACAAAACAATATTTGTGATTATTTACTACCCGGTAAAAATCTTCTTTTACAAACTCAA
CTAGTCGATCATGTTGCAAGTGTTAGACCAAATATTTTCGTTGGTCGAGTTGAAGGATCA
AGTTTTTATCAAAAATGGTATTTTGAGGTCGTTACTGATCATATTGAACAAATTACACAC
ATGATTCCCTATTTGAGAATTGGTTGGGCAAATTCACTTGGTTTTATCACTTATCCCGGT
GGCGGGGAAAAATGGGGAGGAAATGGTGTCGGTGATGATTTATACAGTTATGGATTTGAT
GGTGTCAATTTATGGACTGGTGGAAGACACACACAAGTTGTTGCTGAAGAACCTTCTGAT
TTCAAAATCAAAAAAGGAGATGTAATTGGTTGCGCACTTGATTTGAGTATACCAATCATT
ACATTTACATTTAATGGTCAGAAAGTCCAAGGATGTTTCCGTGACTTTAATTTAGATGGA
ATGTTTTTCCCTGTCATTAGCTGTTCATCAAAAGTCAGTTGTCGTTTTTTGTTTGGTGGT
GATCATGGAAAACTCAAATATATCCCACCAATGGGCTATTCTCCTTTAGTTCAATGTCTT
ATGCCACATCAAAATCTTTCATTAGATCCATGCTTTTATTTTGGAAATCTTAATAAAAGT
GTTCTTTCTGGTCCATGGCTTATAGAAGATGATGAAGCTTTTGTACCAAATCCAGTTGAT
ACTTCGAGTGTTACATTACCATCATTTGTTGAAAATATTAAAGATAAATTGGCAGAGAAT
ATTCATGAAATGTGGGCTTTGAATAAAATTGAAGCAGCACCAGAAAAACGTTATGATTGT
CAATTAGCTGTTCAAACATTGAAAACAATAATTGCTTTGGGCTATTATATAACTTTGGAT
AAGCCACCTGCACGAATTCGTCCAATTAGATTGCCAAATGATCCTTACATGCAAGGCAAT
GGTTATAAACCATCTCCGCTTGATTTAAGCGCTGCTGTACTTACACCTAAATTAGAAGAA
CTTGTAGATCAGCTCGCTGAAAATACTCATAATTTATGGGCAAAAGAAAGAATTCAACAA
GGATGGAAATATGGCTTGAATGAAGATTCAGAAAATTATAGAAGTCCTCATCTTGTGCCA
TATTCAAAAGTTGATGAAGCAATTAAGAAAGCAAATCGAGATACTGCATCAGAAACTGTC
AAAACATTATTAATTTATGGCTATAATTTAGATCCACCAACATCAGAAGCAAATGAAGCT
TTATTGGCTGAAGCAATGAAGCAAAAGTATGCTGCATTCAGGACATATCGTGTAGAAAAA
ACATATGCAGTAACATCAGGAAAATGGTATTTCGAATTTGAAGTGCTTACTGCTGGTCCA
ATGAGAGTTGGTTGGGCCCGTGCTGATGCAGCTCCTGGTATGATGTTGGGAAGTGATGAC
AGTTCTTGGGCATTTGATGGTTATAATGAAGAAAAAATCTTTGGTGGTGGTGCTGAATCT
TTTGGAAAACAATGGGGTCCTGGCGATATTGTTGGAGTCTTTTTGGATCTTGTTGATCAT
ACTATTAGCTTTTCACTTAATGGTGAACTTCTTATGGATGCTCTTGGCGGTGAAACAAGT
TTTGCAGATGTACATGGAGGTAGTGAAGGTGTTGGATTTGTGCCAGCATGCACATTAGGT
GTTGGTCAGAAAGCTCGTCTTATATATGGACAAAATGTAGACTCTTTGAAATTTTTCACT
ACTTGTGGTTTACAAGAAGGTTATGAACCTTTCTGTGTTAACATGAAACGACCAGTAACA
CATTGGTACACAAAAGATCAACCGATATTTGAAAATACAGACGATATGCTTGGATGTGTT
ATTGATGTAACAAGAATTCCTGGTGGTGCTGATACTCCACCATGTCTTAAAATTTCTCAC
AATACATTTGAAACTATGGAAAAAGCTAATTGGGAATTCTTAAGACTTTCATTGCCAGTT
ACATGTCAGAGTGTTTTTATTACTGAACGAGAGAAAGTTCAACGATGGGAAGAAATTAGA
TTACGACAGCATAGATTATTAGCTGAAGTAGAAAATACTACACCAGCTCATTATGAACAC
ATTATGAGATCAGGTTTTACCATGAACGACATTAAAGGATTGCGTTATACTGAAGATGCA
GGCGAATCTGATGAAGTTTTACGGCATCCACGACGTCCATCACGAAAAGGAAGTCTTTCA
AGGCCAAATGGTTTTGATGCACCAACATTGGAAGTTAATGGCAGAATACAGAGATCAACT
AGTGATCTCGATATGAATCAATACAGTGAAGGAGAAGATCGAGTTGATGATAAAAAGAAA
CGTGGTCGTTCTCCATTCAGACTTTTTGGCAAAAAACGCGATCAATCAAAAGATAAAATT
AAAGGAAAGAATGAAGTTGAAGGTGATAAGCGTCAAGGTAGAAATGTTATTCAATCAAGC
ATTATGACACGATCACCAACTGTTAAAGTATCAAATGCTGATTTACGTGTTCAAGCACCA
TCAGTTCCCGAGCGACAAAAGAGTCTTAAATTAGGATCACAACATGTTGAATCAATTGGA
AATGAAGTTTATGATAGTGAATGTTTAAAACTTATTAATGAATATTTTTATGGTGTTCGT
ATATATCCTGGTCAAGATCCTACTCATGTTTATATTGGTTGGGTGACAACTCAATATCAT
TTATATAGTCATGATTTCAAGCAAGAAAATGTTAGGAGAGCATCAGTTTATGTTGAAAAT
GAATATGAACAGCCAATTGGACATGTAACGCGCGAGGCATGTTACGTTGTTAGAGCTGAT
GAACTTTTTAATGAAGTAACACAAGATACATCAGGCAAAGGAGCAAGTCAAGGAATGTTT
GTAGGCTGTTTTATTGATACAGCAACTGGAATCATCAGATTTACATGCGAAGGAAAAGAA
ACAAGTCATCGATGGCAAATGGAACCTGATACAAAACTGTTTCCTGCCATTTTTGTTGAA
GCAACAAGCAAAGAAATTTTGCAAATTGAGTTAGGACGAACACCTACAACTTTACCCTTG
TCAGCTGCTGTTCTTCCAACAAGTGACAAGCATGTCAATCCACAATTTCCTCCTCGTTTA
AAGGTGCAATGCTTGAAGCCACATCAATGGGCACGCGTTCCTAACGTTTCATTAGATATT
CATGCTTTGAAACTTAGTGATATTCGTGGCTGGTCAATGCTATGTGAAGATCCTGTTTCA
ATGCTTGCTCTTAATATACCAGAAGAAGACAGATGCATCGATATTCTAGAACTTATTGAA
ATGGAAAAACTATTGTCTTTCCATTCACACACTTTGACTCTTTATGCTGCACTTTGCTAC
CAAAGTAATTACCGAGCAGCTCACACTTTGTGTCAACATGTTGATCAGAAACAATTGCTT
TATGCAATTAAATCGGAATACATGAGTGGTTCACTTCGTATTGGTTTCTATGATATTTTA
ATTGCACTTCATTTAGAATCTCATGCAACAACTATGGAAGCGTGTAAGAACGAGTTTATT
GTTCCTCTTGGACCGGAATTGAAAGAATTCTATAGTGATAAAGATATGTGTCATTCACTT
AGATCATTAAAGATGCATTCAATTCGACCAACTATGAAAATGACAGAGATTGCTTCACCC
ACATCACTTAATGCACCTCAAGTTGTAGAAATCACTGCTGCTATTTCTAGTGAGCCGATT
CCAGTCATCGATCAACTTTATTCACCGAAATTCCCTCTTGAAGTGTTACGAGAGTTTGTC
ATGGGAGCTATTCAAGAAGCTGTTGAAATTAATCAAGTGCATAATCGCGATCCAATTGGG
GGTTCGAACGAAAATCTTTTCCTACCTTTGATTAAATTAACTGATAGATTGCTATTAGTC
GGTGTATTGACTGATGAAGATGTACATAAATTACTTTTGATGATTGACCCTGAAACATGG
GATGAAACCTTTGATAGAGAAGGAAAAGATGAACATAAAAAAGGCTTGTTGACTATGAAA
ATGGCAGAAGGAGCAAAATTGCAAATGTGCTATTTGTTGCATCATTTATGCGATATTCAA
TTAAGACATCGTGTTGAAAGTATAATTGCATTTTCACATGATTTCGTTGGAGATTTACAA
GCTGATCAATTGAGACGTTATATTGAAATTAAGCAATCAGATTTACCAAGTGCTGTTGCT
GCTAAAAAGACAAGAGAATTCCGTTGTCCTCCACGTGAACAGATGAATGCTATTCTCAAT
TTTAAAAATTTAGAGGAAGATGATGAAAACTCACCTTGTGGCAATGATTTGCGTGAAAAA
TTGAATGAATTTCATGATCATTTAATGGGAAAAGTGTCACTTAATGCTTTACTTGAACCA
GAAGCTGCTGAAATTGATGCAGCTGATGACAAACCAGGAGCTATGAAAAAATTATATAAT
TTTATAAATGCTGTTAAGGATTTAGAAGAAGAGCAAGGTCCAAGTGAAGAACCGGAAAAA
AAAACACCTGAAGAAGTTTTTAGAAAAGTGCTCATAAAAACAATTGTTTCATGGGCTGAA
GAATCACAAATTGAAACTCCAAAACTTGTCAGAGAAATGTTTAGTCTCCTTGTTCGTCAG
TATGACACAGTAGGTGAACTAATCCGATCACTGGAGAAGACTTATGTTGTTAATTATAAA
ACACAAGATGATGTTGCTAATATGTGGATTGGTTTGAGTCAAATTCGTGCTTTATTACCA
GTACAGATGTGTCAGGAAGAAGAAGAGCTTATGAGAAAAAGATTATGGAAACTTGTAAAC
AATCACACATTCTTCCAACATCCTGATTTAATTCGTGTATTGAGAGTTCACGAAAATGTT
ATGGCTGTAATGATGAACACACTTGGTCGTCGAGCTCAAGCTCAAAGCGATACACCAAGT
GGTGAAGGTACAGAAGGTGCTCCAGTTAAAGAAAAAGATACATCTCATGAGATGGTCGTA
GCTTGTTGTAGATTTTTGTGTTATTTCTGTCGTACTGGTAGACAAAATCAAAAAGCTATG
TTCGATCATTTTGACTTTTTATTGGAAAATTCAAACATTTTATTGTCACGCCCAAGTTTA
CGTGGTTCAACTCCACTGGACGTTGCTTATTCAAGTTTAATGGAAAATACAGAACTTGCA
CTTGCCTTGCGTGAACATTATTTGGAGAAAATTGCAATTTATCTCTCACGTTGTGGCCTT
CAAAGTAATTCTGAGTTAGTTGAAAAAGGCTATCCAGATTTAGGCTGGGATCCTGTTGAA
GGTGAAAGATTTCTAGATTTCTTACGTTTCTGTGTTTGGGTCAACGGTGAAAGTGTTGAA
GAAAATGCAAACCTTGTTATTCGTTTGCTGATTAGACGTCCAGAATGTTTGGGTCCAGCA
TTGAGAGGTGAAGGTGAAGGACTGCTTCAGGCAATTATTGAAGCAAATAAAATGAGTGAA
AGAATATCTGATCGTCGTAAAATGCAAGACGAAGCTGAAGGACAAATGAGTGTTGCTTTC
AATCATCCTTTGCCAGAGAGTGAAGAAGATGAGGATTATATTGATACTGGTGCAGCTATT
CTTGCATTTTATTGTACATTGGTAGATTTACTAGGACGTTGTGCTCCTGATGCATCAGTT
ATTGAACAAGGAAAGAATGAATCATTAAGAGCAAGAGCTATTTTGCGTTCACTTGTACCG
CTTGAAGATTTGCAAGGTGTTTTGAGCTTGAAATTTACATTGATAAATCCAGCAGCTGGT
GAAGAAAGACCAAAGTCAGACATGCCAAGTGGTTTGATTCCTGGGCATAAACAAAGTATT
GTTATGTTTTTGGAGAGAGTTTATGGAATTGAGACACAAGAGCTCTTTTACAAATTATTA
GAAGATGCTTTCTTACCGGACCTTCGCATTGCTACAATGCTAGACAGAGGCGATGGTTCT
GAGAGCAAATTGGCACTTTCTATTAATCGTTATATTGGAAATTCAATTTTGCCAGTACTC
ATTAAACATTCAAAGTTTTATAATGAGGCTGATAATTATGCTTCTTTACTCGATGCTTCA
CTTCATACAGTTTATCGACTTTCAAAGAATAAGATGTTGACAAAAGGACAACGTGAAGGT
GTTTCAGACTTTTTAGTTGCTTTGACCACAGCAATGCAACCTGCTATGCTTTTGAAACTC
CTCCGTAAGCTTACAATTGATGTTGAGAAATTATCAGAATACACAACTGTTGCTTTGAGA
TTGCTAACTTTACATTATGAAAGATGTGCTAAGTACTATGGATCAACGTCGGGCCAAGGA
ACTTATGGTACATCATCCGATGAAGAGAAACGTTTGACTATGTTATTATTTTCAAATATA
TTTGATTCATTGAGTAATATGGATTATGAACCAGAATTGTTTGGAAAAGCTCTTCCATGT
CTTATTGCTATCGGTTGTGCTTTACCTCCTGATTATAGTTTATCAAAGAATACAGATGAT
GATTTATATGGAAAACCAACTGGAGGAGGTCCTGATCAACCTCAATATCATCCACAACCA
ATCAATACAGTCAGTGTTAATCTCAATAATGATTTGAATACCTGCATTCAAAAGTTCAGT
GAACATTATCATGATGCGTGGGCTTCAAGAAAATTAGAAAACGGTTGGACCTATGGTGAT
CAGTGGTCTGACACACAAAAGTCTCATCCACGTTTAAAACCATATAGCATGTTGAGTGAT
TATGAAAAAGAAAGATATAAAGATCCAGTAAGAGAAATTATGAAAGCACTTTTAGCTTTA
GGTTGGAATGTTGAACATTCAGATTCTGATATGCCAGGATCATCAAGAGGATCAATTCGT
AGATCATCTAAACCAGAAGGACATCATGGTCAAGATTCATCTTCACCATTCAATTATCAT
CCGCAACCAATTGACATGACCAATTTGACATTGAGCAGAGAAATGCAAAATATGGCAGAG
AGATTGGCCGAAAATTCACATGATATTTGGGCAAAGAAAAAGATGGAAGAATTGGCCACA
CTAGGTGGAAGCATTCATCCACAATTAGTTCCTTACGATTTGTTAACAGATAAAGAAAAG
AGAAAAGACCGTGAACGATCACAAGAATTTTTGAAATACTTGCAATATCAAGGATATAAA
CTTCATAAACCAAAGGCCGTTACTACTGATTCTGAAGTTGTAAATATTCAAGCGGCCATT
GAATTGAGATTTGCATATTCTTTATTAGGAAAACTCATTCAATATCTTGATAAATCAACA
GTTAACATGAAATTGTTAAAACCATCTGCAATTTTCAGTCGTCGCTCGTCATTTAAGACA
AGCTCACGAGACATTAAATTTTTCTCAAAAGTTGTTCTACCACTCATGGAAAAATACTTC
TCAACTCATAGAAACTATTTTATTGCAATTGCCACTGCAACTAATAATGTTGGTGCAGCT
TCTCTTAAAGAAAAGGAAATGGTTGCAGCATTGTTCTGCAAATTAGCGAATTTATTACGT
AATCGATTAACTGCTTTTGGACCAGATGTTCGTTTAGTAGTGAAAGTTTTACAAGTTTTA
GTAAAAAGTATCGATGCAAAATCACTTGTTAGAAATTGTCCTGAATTTATTCGTACATCA
ATGTTAACCTTCTTTAATAATACTGCAGATGACTTAATGCATACGATCAAAAATTTACTA
GATGGAAAATATAGTCATTTGAGAGGAACACATTTGAAAACATCAACATCATTACAATAT
GTCAATCAAGTAATTTTACCTGTTTTAACTGCAATGTTTGATCATTTAGCAGCGTGCGAA
TATGGAAATGAATTGCTCCTTGATGAAATTCAAGTGGCATCGTATAAAATACTCTCTGCA
CTTTATACATTAGGCACAGATAATAATCTTACACGTGATCGTAAATATTTGAAAACTGAA
TTTGAGAGACATAAGCCAGCATTGGGATCATGCTTAGGAGCATTCAGTTCCACTTTTCCA
GTTGCATTTTTGGAACCACACAATAACAAGCATAACCAATATTCATTATTAAATCGCATC
GCTGACCATTCACTTGAGGCACAAGATATTATGGAGTCAGAAAAAAGTTATCAAGAGGCA
CAACATGTCATTGATGTTATTTTGCCACTTTTGTGCTCATATTTGCCGTTTTGGTGGGCT
CAAGGCCCTGATAATGTCAATCCAACATCTGGTAATCATGTGACTACTATAACAGCTGAC
CATATGAATCAACTTTTAAAACATGTTCTCAAATTGATTAAAAAAAATATAGGAAATGAA
AATGCTTTATGGATGACAAGAATTGCAGCTTATACTCAACAAATTATTATTAATAGTTCA
GAAGAGCTTCTTAAAGATCCTTTCTTACCTCTTGCTGAAAGAGTAAAAAAACGTGTTGAC
AATATGTTCCATAAAGAAGAGAGTTTACGTGGATTTTTGAAGTCTTCAACAGACGATACT
TCACAAGTAGAATCACAGATTCAAGAAGATTGGCAGTTGCTTGTTAGAGATATTTATTCA
TTTTATCCATTACTCATTAAATATGTTGATTTGCAAAGAAATCACTGGCTTAAAGATAAT
ATTTCTGAGGCTGAAGAGCTTTATAATAATGTCGCAGAAATTTTCAATATTTGGTCAAAG
AGTCAGTACTTTTTGAAAGAAGAACAGAACTTTATTAGTGCGAATGAGATTGATAATATG
GCATTGATTATGCCAACTGCATCGAGAAGAACAGCAACAGCTGTTGAAGGTCAACCGCAA
GGTGGTGGAAAAATTAAAAAGAAGAAAAAGAATCGTGACAAAAAACGTGATAAAGACAAA
GAAATTCAAGCTAGTTTGATGGTTGCATGCTTAAAACGTTTATTGCCAGTTGGTCTCAAT
TTGTTTGCTGGTCGTGAACAAGAATTAGTGCAACATTGTAAAGATCGTTATTTGAAGAAA
ATGCCTGAATATGAAGTGCTTGATTTTGCACGCATTCAATTGACGCTTCCTGATAAACTT
GATCCAGCTGATGAAATGAGTTGGCAACATTATTTATACTCTAAACTAGGTAAAAAGAAT
GAACCGACTCTTGAAGATGTTAGTGAAAAGACAACAACTACAACTGATAAAAAAGGAGAA
GAAAAAAAGATTGAAGATACAGTTGAAAGAATTGTTGCAATGGCCAAAGTTCTATATGGA
TTGCATATGATTGATCATCCACAACAACAAAGTAAAAATGTATATCACAGTGTTGTTAGT
ATACAAAGGAAGCGTGTCGTTATAGCTTGTTTCCGACAAACATCATTGCACTCATTGCCA
AGACATCGAGCATGTAATATATTTGCTAAGGTCTACAAAGATTTGTGGCTTCAGGAGGAA
AATGTCGGTCAAGAAGTTATGATTGAAGATTTAACGCAATCCTTTGAAGATTCTGAAAAG
CAAAAAAAAGAAGACGATGAGGAAGAAGGAAAACCAGATCCATTGACTCAGCTGATTACA
ACGTTCTGTCGAGGAGCAATGACTGAAAGATCAGGTGCATTACAAGAAGATCCTCTTTAC
ATGTCATATGCTGAAATTGTTGCAAAATCTTGTGGAGAAGAGGAGGAAGAAGGTGGTGAA
GAAGAAGATGAAGAAGCTGAAGAAGAAGGTGGTGCAAGCATTCATGAACAAGAAATGGAA
AAACAAAAGTTACTGTTTCATCAAGCTCGTTTGGCAAATCGTGGTGTAGCTGAGATGGTT
CTACTACACATTAGTGCATCTAAAGGTGTGCCGTCAGATATGGTCATGAAAACACTTGAA
CTTGGAATTGCTGTTTTGCGCGGTGGTAATATTGATATACAAATGCGCATGTTGAACCAT
TTAAAAGACAAAAAAGATGTTGGATTTTTCACATCAATTGCGGGCTTGATGAATTCTTGC
AGTGTACTTGATTTAGATGCTTTTGAGAGAAACACAAAAGCTGAGGGTCTTGGAGTTGGC
TCAGAAGGTGCTGCAGGCGAGAAAAATATGCATGATGCTGAATTCACATGTGCTCTTTTC
CGTTTCATTCAATTGACTTGCGAAGGTCACAATTTGGAATGGCAAAATTATTTAAGAACT
CAAGCTGGTAATACAACTACTGTGAACGTAGTCATTTGTACAGTCGATTATTTGCTTCGT
TTGCAAGAATCAATTATGGACTTTTATTGGCATTATTCGAGCAAAGAATTAATTGATCCA
GCTGGTAAAGTAAATTTCTTCAAAGCTATTGGTGTGGCGAGTCAAGTTTTCAATACACTC
ACTGAAGTCATTCAAGGTCCATGTACACAAAATCAGCAGGCACTTGCTCACTCAAGATTA
TGGGATGCTGTCGGCGGTTTTCTATTTTTATTCAGTCACATGCAAGAAAAACTTTCGAAG
CATTCCTCTCAAGTTGATTTGTTGAAAGAGCTTTTAAATTTGCAAAAAGACATGATTACA
ATGATGCTCTCTATGCTTGAGGGTAATGTTGTTAATGGCACGATTGGAAAACAAATGGTC
GACACATTGGTTGAATCAGCTTCAAATGTAGAATTGATTTTGAAATACTTTGATATGTTC
TTGAAGCTTAAAGATTTGATTTCTTCACCAAGTTTTGCTGAGATCGACCCAAATAATGAT
GGATGGGTTTTGCCAAAAGATTTCAAAGAAAAAATGGATCAACAAAAGAGTTATACACCA
GATGAAATTGAATTCTTACTTGCATGTTGTGAAGTCAATCATGATGGAAAAGTTGATTAT
GTTGGTTTCTGTGACCGTTTCCATGAACCAGCTAAAGAAATCGGTTTCAATCTTGCTGTT
TTGCTTACAAATCTTTCTGAGCATATGCCTAATGAACCAAGATTGGCAAGATTTTTGGAA
ACTGCAAGTTCTGTTCTAAATTACTTTGAAGCATTCTTAGGAAGAATTGAAATTTTAGGC
TCATCAAAGAAAATCGAACGTGTTTACTTTGAAATTAAGGAATCAAATATTGAACAATGG
GAGAAACCACAAATTAAAGAATCTAAGCGTGCTTTCTTCTATTCAATTGTCACAGAAGGT
GGTGATAAAGAAAAACTCGAAGCATTTGTTAACTTTTGTGAGGATGCCATTTTTGAAATG
ACTCATGCCTCTGAAATTATGGCGACTGACGAAAAAGGTGGTAGTGTAAAACGGGAAACA
TCATACAGCTCATATATCAGTGATGAAGATGAAGAAAGAGCTGCCAGAGATCCTATTCGT
AAAACAATTCAATCGGTAAAAGATGGATTCAAACATTTCGCTTTTCTTTTAAGTCCTGCC
AACATTAAACATCAAATTAGTATCTTGCAAACAAAATCAATTCCAGAACTCATTGTTGGC
TTCTTTAAACTCATTTTATACTCTTTCTATTATACCGGCTATGCATTCTATGCTATTTTA
CGGTACTTCTTTAATATTTTAATGAATTTAATGCGCGGACCTGCTGTCGAAGAGGAAGAA
GTTCCATTAGTTGCAGAAATTGAGCGTCATCTACCAGCATTGACTTTACCACCATTACCA
GAAGAAGAACCATCATCTAGTACAGAAGGAAGTAAAGATGAAACTGGAGGAAATATAGGT
GGTACAAGTGGAGAAGATATAAGTGGTGAAGGTTCAATAGATAAACAAGGAGACACTAGT
GATACAGAAGCACGATTAGAGCCTCCAATGACTCTTCAAGATCTTCTTGGAGGTGAGGCA
GCAAAAGCAGCTGAAAAAGAACGTAGTGAGGCACAAAAAGTGCAAGAAGCAGCTATGGCA
AGCATTGAGTCTGAAAGTAAAAAATCAACACAAACAACCACCGATCCTTCTGCTGCCAGT
CAAATTGATTTCTCACAATATGCACATAAGGCAGTCAGTTTTCTTGCAAGAAACTTTTAT
ACTCTTAAATATGTTGCTCTTGTTTTGGCTTTCTGTATCAACTTTATGCTTTTATTCTAT
AAAGTAACTACATTTGGTGAAGAAAATGATGGTTCTGGTGATAGTGAATTAAGCGATTTA
GGTTCAGCTATGGGTTCTGGTTCTGGTGCGGGAATTGATTTGGGCAGTGCAGAAGGGTCC
GGTGAAACAGACGAAGAAGATCCTCTTGAGTTGGTTCAAGTTGATGAAGCATACATTGAA
CATGTCATGAGATTTGCAGCAGCTTTACACAGTCTGGTTTCATTGTGCATGCTTATTGCT
TATTACCATTTGAAAGTTCCACTTGCTATTTTCAAACGTGAAAAAGAAATTGCTCGTCGT
TTGGAATTTGATGGTCTTTTTATTGCTGAACATCCTGAAGATGACGATATAAAATCACAT
TGGGATAAATTAGTAATTAGTTCAAAAAGCTTCCCTGTCAATTATTGGGATAAATTTGTA
AAGAAAAAGGTTCGACAAAAGTACAGCGAAACTTATGACTTTGATTCAATTTCAAATTTA
CTTGGTATGGAAAAGACAGCATTTGGCACTCAAGAAGTCAACGAAAGCGGTGGACTTATT
CATTTTATTCTCAATATTGATTGGCGTTATCAAGTATGGAAAGCTGGTGTTACAATCACA
GATAATGCTTTCCTTTATTCTCTTTGGTACTTTACTTTCTCAATTTTGGGCAACTTTAAC
AACTTTTTCTTTGCTGCTCATTTACTCGATGTTGCTGTTGGTTTCAAGACTCTAAGAACA
ATCTTGCAATCAGTAACACACAATGGCAAACAATTAGTTTTGACTGTCATGCTTCTTACA
ATTATTGTGTATATTTACACTGTAATTGCTTTCAACTTTTTCCGCAAATTCTATATACAA
GAGGAAGAAGATGAAGTAGATAAAAAATGTCATGATATGTTAACATGTTTCGTCTTCCAT
TTGTATAAGGGTGTAAGAGCTGGTGGTGGTATTGGTGATGAAATAGGAGATCCAGACGGA
GATGATTATGAAGTTTATCGTATAATTTTCGATATTACATTCTTCTTCTTCGTTATTGTC
ATCTTGTTGGCCATCATTCAAGGTTTGATCATTGATGCTTTTGGTGAGCTTCGTGATCAA
TTAGAATCAGTAAAAGAAGACATGGAGTCGAATTGCTTTATCTGTGGCATAGGAAAAGAC
TACTTTGATAAAGTTCCTCATGGATTTGATACGCACGTTGCACAAGAACATAATCTAGCA
AATTACATGTTCTTCCTGATGCACTTGATTAATAAACCGGATACAGAATATACGGGTCAA
GAGACTTATGTGTGGAACATGTATCAACAGCGCTGTTGGGATTTCTTCCCTGTTGGTGAT
TGCTTTAGGAAGCAATATGAAGATGAACTTGGTGGAAGCCAGTAA

>g11391.t2 Gene=g11391 Length=5054
MAEADGGSEQDDVSFLRTEDMVCLSCTATGERVCLAAEGFGNRHCFLENIADKNIPPDLS
QCVFVIEQALSVRALQELVTAAASESSKGTGSGHRTLLYGNAILLRHQNSDMYLACLSTS
SSNDKLSFDVGLQEHSHGEACWWTVHPASKQRSEGEKVRVGDDLILVSVATERYLHTTKE
NDFSIVNASFHVTHWSVQPYGTGISRMKYVGYVFGGDVLRFFHGGDECLTIPSTWSRQPG
QNIVVYEGGSVMSQARSLWRLELARTKWSGGFINWYHPMRIRHLTTGRYLGVNENNELIL
TARDDATTAQTAFCLRQEKDDQKVVLEDKDLEVIGSPIIKYGDSTVIVQHAETGLWLSYK
SYETKKKGVGKVEEKQAILHEEGKMDDGLDFSRSQEEESRTARVIRKCSSLFHNFITGLE
TLQQNRRHSLFFLTVNLGEMVMCLEDLINYFAQPEDDIEHEEKQNKLRALRNRQDLFQEE
GVLNLILDAIDKINVITSQGFLSSFLASDESGQSWDMISAYLYQLLAAIIKGNHTNCAQF
ANSNRLNWLFSRLGSQASSEGSGMLDVLHCVLIDSPEALNMMRDEHIKVIISLLEKHGRD
PKVLDVLCSLCVGNGFAVRSSQNNICDYLLPGKNLLLQTQLVDHVASVRPNIFVGRVEGS
SFYQKWYFEVVTDHIEQITHMIPYLRIGWANSLGFITYPGGGEKWGGNGVGDDLYSYGFD
GVNLWTGGRHTQVVAEEPSDFKIKKGDVIGCALDLSIPIITFTFNGQKVQGCFRDFNLDG
MFFPVISCSSKVSCRFLFGGDHGKLKYIPPMGYSPLVQCLMPHQNLSLDPCFYFGNLNKS
VLSGPWLIEDDEAFVPNPVDTSSVTLPSFVENIKDKLAENIHEMWALNKIEAAPEKRYDC
QLAVQTLKTIIALGYYITLDKPPARIRPIRLPNDPYMQGNGYKPSPLDLSAAVLTPKLEE
LVDQLAENTHNLWAKERIQQGWKYGLNEDSENYRSPHLVPYSKVDEAIKKANRDTASETV
KTLLIYGYNLDPPTSEANEALLAEAMKQKYAAFRTYRVEKTYAVTSGKWYFEFEVLTAGP
MRVGWARADAAPGMMLGSDDSSWAFDGYNEEKIFGGGAESFGKQWGPGDIVGVFLDLVDH
TISFSLNGELLMDALGGETSFADVHGGSEGVGFVPACTLGVGQKARLIYGQNVDSLKFFT
TCGLQEGYEPFCVNMKRPVTHWYTKDQPIFENTDDMLGCVIDVTRIPGGADTPPCLKISH
NTFETMEKANWEFLRLSLPVTCQSVFITEREKVQRWEEIRLRQHRLLAEVENTTPAHYEH
IMRSGFTMNDIKGLRYTEDAGESDEVLRHPRRPSRKGSLSRPNGFDAPTLEVNGRIQRST
SDLDMNQYSEGEDRVDDKKKRGRSPFRLFGKKRDQSKDKIKGKNEVEGDKRQGRNVIQSS
IMTRSPTVKVSNADLRVQAPSVPERQKSLKLGSQHVESIGNEVYDSECLKLINEYFYGVR
IYPGQDPTHVYIGWVTTQYHLYSHDFKQENVRRASVYVENEYEQPIGHVTREACYVVRAD
ELFNEVTQDTSGKGASQGMFVGCFIDTATGIIRFTCEGKETSHRWQMEPDTKLFPAIFVE
ATSKEILQIELGRTPTTLPLSAAVLPTSDKHVNPQFPPRLKVQCLKPHQWARVPNVSLDI
HALKLSDIRGWSMLCEDPVSMLALNIPEEDRCIDILELIEMEKLLSFHSHTLTLYAALCY
QSNYRAAHTLCQHVDQKQLLYAIKSEYMSGSLRIGFYDILIALHLESHATTMEACKNEFI
VPLGPELKEFYSDKDMCHSLRSLKMHSIRPTMKMTEIASPTSLNAPQVVEITAAISSEPI
PVIDQLYSPKFPLEVLREFVMGAIQEAVEINQVHNRDPIGGSNENLFLPLIKLTDRLLLV
GVLTDEDVHKLLLMIDPETWDETFDREGKDEHKKGLLTMKMAEGAKLQMCYLLHHLCDIQ
LRHRVESIIAFSHDFVGDLQADQLRRYIEIKQSDLPSAVAAKKTREFRCPPREQMNAILN
FKNLEEDDENSPCGNDLREKLNEFHDHLMGKVSLNALLEPEAAEIDAADDKPGAMKKLYN
FINAVKDLEEEQGPSEEPEKKTPEEVFRKVLIKTIVSWAEESQIETPKLVREMFSLLVRQ
YDTVGELIRSLEKTYVVNYKTQDDVANMWIGLSQIRALLPVQMCQEEEELMRKRLWKLVN
NHTFFQHPDLIRVLRVHENVMAVMMNTLGRRAQAQSDTPSGEGTEGAPVKEKDTSHEMVV
ACCRFLCYFCRTGRQNQKAMFDHFDFLLENSNILLSRPSLRGSTPLDVAYSSLMENTELA
LALREHYLEKIAIYLSRCGLQSNSELVEKGYPDLGWDPVEGERFLDFLRFCVWVNGESVE
ENANLVIRLLIRRPECLGPALRGEGEGLLQAIIEANKMSERISDRRKMQDEAEGQMSVAF
NHPLPESEEDEDYIDTGAAILAFYCTLVDLLGRCAPDASVIEQGKNESLRARAILRSLVP
LEDLQGVLSLKFTLINPAAGEERPKSDMPSGLIPGHKQSIVMFLERVYGIETQELFYKLL
EDAFLPDLRIATMLDRGDGSESKLALSINRYIGNSILPVLIKHSKFYNEADNYASLLDAS
LHTVYRLSKNKMLTKGQREGVSDFLVALTTAMQPAMLLKLLRKLTIDVEKLSEYTTVALR
LLTLHYERCAKYYGSTSGQGTYGTSSDEEKRLTMLLFSNIFDSLSNMDYEPELFGKALPC
LIAIGCALPPDYSLSKNTDDDLYGKPTGGGPDQPQYHPQPINTVSVNLNNDLNTCIQKFS
EHYHDAWASRKLENGWTYGDQWSDTQKSHPRLKPYSMLSDYEKERYKDPVREIMKALLAL
GWNVEHSDSDMPGSSRGSIRRSSKPEGHHGQDSSSPFNYHPQPIDMTNLTLSREMQNMAE
RLAENSHDIWAKKKMEELATLGGSIHPQLVPYDLLTDKEKRKDRERSQEFLKYLQYQGYK
LHKPKAVTTDSEVVNIQAAIELRFAYSLLGKLIQYLDKSTVNMKLLKPSAIFSRRSSFKT
SSRDIKFFSKVVLPLMEKYFSTHRNYFIAIATATNNVGAASLKEKEMVAALFCKLANLLR
NRLTAFGPDVRLVVKVLQVLVKSIDAKSLVRNCPEFIRTSMLTFFNNTADDLMHTIKNLL
DGKYSHLRGTHLKTSTSLQYVNQVILPVLTAMFDHLAACEYGNELLLDEIQVASYKILSA
LYTLGTDNNLTRDRKYLKTEFERHKPALGSCLGAFSSTFPVAFLEPHNNKHNQYSLLNRI
ADHSLEAQDIMESEKSYQEAQHVIDVILPLLCSYLPFWWAQGPDNVNPTSGNHVTTITAD
HMNQLLKHVLKLIKKNIGNENALWMTRIAAYTQQIIINSSEELLKDPFLPLAERVKKRVD
NMFHKEESLRGFLKSSTDDTSQVESQIQEDWQLLVRDIYSFYPLLIKYVDLQRNHWLKDN
ISEAEELYNNVAEIFNIWSKSQYFLKEEQNFISANEIDNMALIMPTASRRTATAVEGQPQ
GGGKIKKKKKNRDKKRDKDKEIQASLMVACLKRLLPVGLNLFAGREQELVQHCKDRYLKK
MPEYEVLDFARIQLTLPDKLDPADEMSWQHYLYSKLGKKNEPTLEDVSEKTTTTTDKKGE
EKKIEDTVERIVAMAKVLYGLHMIDHPQQQSKNVYHSVVSIQRKRVVIACFRQTSLHSLP
RHRACNIFAKVYKDLWLQEENVGQEVMIEDLTQSFEDSEKQKKEDDEEEGKPDPLTQLIT
TFCRGAMTERSGALQEDPLYMSYAEIVAKSCGEEEEEGGEEEDEEAEEEGGASIHEQEME
KQKLLFHQARLANRGVAEMVLLHISASKGVPSDMVMKTLELGIAVLRGGNIDIQMRMLNH
LKDKKDVGFFTSIAGLMNSCSVLDLDAFERNTKAEGLGVGSEGAAGEKNMHDAEFTCALF
RFIQLTCEGHNLEWQNYLRTQAGNTTTVNVVICTVDYLLRLQESIMDFYWHYSSKELIDP
AGKVNFFKAIGVASQVFNTLTEVIQGPCTQNQQALAHSRLWDAVGGFLFLFSHMQEKLSK
HSSQVDLLKELLNLQKDMITMMLSMLEGNVVNGTIGKQMVDTLVESASNVELILKYFDMF
LKLKDLISSPSFAEIDPNNDGWVLPKDFKEKMDQQKSYTPDEIEFLLACCEVNHDGKVDY
VGFCDRFHEPAKEIGFNLAVLLTNLSEHMPNEPRLARFLETASSVLNYFEAFLGRIEILG
SSKKIERVYFEIKESNIEQWEKPQIKESKRAFFYSIVTEGGDKEKLEAFVNFCEDAIFEM
THASEIMATDEKGGSVKRETSYSSYISDEDEERAARDPIRKTIQSVKDGFKHFAFLLSPA
NIKHQISILQTKSIPELIVGFFKLILYSFYYTGYAFYAILRYFFNILMNLMRGPAVEEEE
VPLVAEIERHLPALTLPPLPEEEPSSSTEGSKDETGGNIGGTSGEDISGEGSIDKQGDTS
DTEARLEPPMTLQDLLGGEAAKAAEKERSEAQKVQEAAMASIESESKKSTQTTTDPSAAS
QIDFSQYAHKAVSFLARNFYTLKYVALVLAFCINFMLLFYKVTTFGEENDGSGDSELSDL
GSAMGSGSGAGIDLGSAEGSGETDEEDPLELVQVDEAYIEHVMRFAAALHSLVSLCMLIA
YYHLKVPLAIFKREKEIARRLEFDGLFIAEHPEDDDIKSHWDKLVISSKSFPVNYWDKFV
KKKVRQKYSETYDFDSISNLLGMEKTAFGTQEVNESGGLIHFILNIDWRYQVWKAGVTIT
DNAFLYSLWYFTFSILGNFNNFFFAAHLLDVAVGFKTLRTILQSVTHNGKQLVLTVMLLT
IIVYIYTVIAFNFFRKFYIQEEEDEVDKKCHDMLTCFVFHLYKGVRAGGGIGDEIGDPDG
DDYEVYRIIFDITFFFFVIVILLAIIQGLIIDAFGELRDQLESVKEDMESNCFICGIGKD
YFDKVPHGFDTHVAQEHNLANYMFFLMHLINKPDTEYTGQETYVWNMYQQRCWDFFPVGD
CFRKQYEDELGGSQ

Protein features from InterProScan

Transcript Database ID Name Start End E.value
57 g11391.t2 CDD cd12877 SPRY1_RyR 647 799 1.33839E-76
58 g11391.t2 CDD cd12878 SPRY2_RyR 1054 1190 3.63696E-76
56 g11391.t2 CDD cd12879 SPRY3_RyR 1485 1632 3.55767E-70
43 g11391.t2 Coils Coil Coil 460 480 -
44 g11391.t2 Coils Coil Coil 3748 3768 -
34 g11391.t2 Gene3D G3DSA:2.80.10.50 - 1 204 7.1E-84
33 g11391.t2 Gene3D G3DSA:2.80.10.50 - 208 394 7.0E-60
39 g11391.t2 Gene3D G3DSA:1.25.10.120 - 395 536 2.6E-58
42 g11391.t2 Gene3D G3DSA:2.60.120.920 - 640 836 7.7E-59
37 g11391.t2 Gene3D G3DSA:1.10.490.160 - 850 894 1.6E-9
41 g11391.t2 Gene3D G3DSA:2.60.120.920 - 1049 1231 9.0E-54
40 g11391.t2 Gene3D G3DSA:2.60.120.920 - 1423 1643 3.4E-14
35 g11391.t2 Gene3D G3DSA:1.10.490.160 - 2792 2906 2.5E-33
36 g11391.t2 Gene3D G3DSA:1.10.490.160 - 2918 3004 1.4E-29
38 g11391.t2 Gene3D G3DSA:1.10.238.10 - 4150 4212 3.3E-5
75 g11391.t2 MobiDBLite mobidb-lite consensus disorder prediction 1340 1431 -
78 g11391.t2 MobiDBLite mobidb-lite consensus disorder prediction 1387 1431 -
79 g11391.t2 MobiDBLite mobidb-lite consensus disorder prediction 2251 2272 -
80 g11391.t2 MobiDBLite mobidb-lite consensus disorder prediction 2888 2922 -
73 g11391.t2 MobiDBLite mobidb-lite consensus disorder prediction 3531 3559 -
76 g11391.t2 MobiDBLite mobidb-lite consensus disorder prediction 3754 3773 -
82 g11391.t2 MobiDBLite mobidb-lite consensus disorder prediction 3754 3776 -
81 g11391.t2 MobiDBLite mobidb-lite consensus disorder prediction 3810 3833 -
72 g11391.t2 MobiDBLite mobidb-lite consensus disorder prediction 3814 3831 -
77 g11391.t2 MobiDBLite mobidb-lite consensus disorder prediction 4454 4554 -
74 g11391.t2 MobiDBLite mobidb-lite consensus disorder prediction 4461 4482 -
16 g11391.t2 PANTHER PTHR12864:SF53 RYANODINE RECEPTOR 44F-LIKE PROTEIN 1 3309 0.0
18 g11391.t2 PANTHER PTHR12864 RAN BINDING PROTEIN 9-RELATED 1 3309 0.0
15 g11391.t2 PANTHER PTHR12864:SF53 RYANODINE RECEPTOR 44F-LIKE PROTEIN 3352 5052 0.0
17 g11391.t2 PANTHER PTHR12864 RAN BINDING PROTEIN 9-RELATED 3352 5052 0.0
21 g11391.t2 PRINTS PR00795 Ryanodine receptor signature 56 77 8.3E-85
23 g11391.t2 PRINTS PR00795 Ryanodine receptor signature 92 110 8.3E-85
22 g11391.t2 PRINTS PR00795 Ryanodine receptor signature 150 174 8.3E-85
24 g11391.t2 PRINTS PR00795 Ryanodine receptor signature 254 277 8.3E-85
20 g11391.t2 PRINTS PR00795 Ryanodine receptor signature 563 582 8.3E-85
26 g11391.t2 PRINTS PR00795 Ryanodine receptor signature 705 727 8.3E-85
25 g11391.t2 PRINTS PR00795 Ryanodine receptor signature 789 809 8.3E-85
19 g11391.t2 PRINTS PR00795 Ryanodine receptor signature 874 897 8.3E-85
4 g11391.t2 Pfam PF08709 Inositol 1,4,5-trisphosphate/ryanodine receptor 12 204 3.8E-64
14 g11391.t2 Pfam PF02815 MIR domain 211 391 5.8E-48
2 g11391.t2 Pfam PF01365 RIH domain 442 641 5.0E-61
7 g11391.t2 Pfam PF00622 SPRY domain 665 800 1.4E-20
11 g11391.t2 Pfam PF02026 RyR domain 854 892 3.1E-11
10 g11391.t2 Pfam PF02026 RyR domain 942 1031 2.7E-30
6 g11391.t2 Pfam PF00622 SPRY domain 1068 1192 4.4E-20
5 g11391.t2 Pfam PF00622 SPRY domain 1495 1633 5.3E-19
3 g11391.t2 Pfam PF01365 RIH domain 2192 2422 4.5E-68
9 g11391.t2 Pfam PF02026 RyR domain 2796 2885 3.5E-29
12 g11391.t2 Pfam PF02026 RyR domain 2919 3002 2.3E-25
13 g11391.t2 Pfam PF08454 RyR and IP3R Homology associated 3951 4067 6.3E-31
1 g11391.t2 Pfam PF06459 Ryanodine Receptor TM 4-6 4510 4690 2.4E-46
8 g11391.t2 Pfam PF00520 Ion transport protein 4817 4960 4.7E-14
48 g11391.t2 Phobius NON_CYTOPLASMIC_DOMAIN Region of a membrane-bound protein predicted to be outside the membrane, in the extracellular region. 1 4403 -
52 g11391.t2 Phobius TRANSMEMBRANE Region of a membrane-bound protein predicted to be embedded in the membrane. 4404 4424 -
46 g11391.t2 Phobius CYTOPLASMIC_DOMAIN Region of a membrane-bound protein predicted to be outside the membrane, in the cytoplasm. 4425 4579 -
54 g11391.t2 Phobius TRANSMEMBRANE Region of a membrane-bound protein predicted to be embedded in the membrane. 4580 4600 -
49 g11391.t2 Phobius NON_CYTOPLASMIC_DOMAIN Region of a membrane-bound protein predicted to be outside the membrane, in the extracellular region. 4601 4664 -
53 g11391.t2 Phobius TRANSMEMBRANE Region of a membrane-bound protein predicted to be embedded in the membrane. 4665 4684 -
45 g11391.t2 Phobius CYTOPLASMIC_DOMAIN Region of a membrane-bound protein predicted to be outside the membrane, in the cytoplasm. 4685 4851 -
51 g11391.t2 Phobius TRANSMEMBRANE Region of a membrane-bound protein predicted to be embedded in the membrane. 4852 4874 -
50 g11391.t2 Phobius NON_CYTOPLASMIC_DOMAIN Region of a membrane-bound protein predicted to be outside the membrane, in the extracellular region. 4875 4927 -
55 g11391.t2 Phobius TRANSMEMBRANE Region of a membrane-bound protein predicted to be embedded in the membrane. 4928 4951 -
47 g11391.t2 Phobius CYTOPLASMIC_DOMAIN Region of a membrane-bound protein predicted to be outside the membrane, in the cytoplasm. 4952 5054 -
85 g11391.t2 ProSiteProfiles PS50919 MIR domain profile. 94 148 10.316
87 g11391.t2 ProSiteProfiles PS50919 MIR domain profile. 155 200 8.088
84 g11391.t2 ProSiteProfiles PS50919 MIR domain profile. 210 264 6.938
83 g11391.t2 ProSiteProfiles PS50919 MIR domain profile. 270 328 7.256
86 g11391.t2 ProSiteProfiles PS50919 MIR domain profile. 336 394 7.207
90 g11391.t2 ProSiteProfiles PS50188 B30.2/SPRY domain profile. 577 803 11.338
89 g11391.t2 ProSiteProfiles PS50188 B30.2/SPRY domain profile. 1007 1194 17.857
88 g11391.t2 ProSiteProfiles PS50188 B30.2/SPRY domain profile. 1416 1636 12.143
69 g11391.t2 SMART SM00472 mir_2 94 148 8.3E-4
71 g11391.t2 SMART SM00472 mir_2 155 200 0.0028
68 g11391.t2 SMART SM00472 mir_2 210 264 0.7
70 g11391.t2 SMART SM00472 mir_2 270 361 2.3E-15
65 g11391.t2 SMART SM00449 SPRY_3 663 802 2.8E-26
67 g11391.t2 SMART SM00449 SPRY_3 1066 1193 4.0E-36
66 g11391.t2 SMART SM00449 SPRY_3 1492 1635 2.0E-21
29 g11391.t2 SUPERFAMILY SSF82109 MIR domain 98 181 3.66E-7
28 g11391.t2 SUPERFAMILY SSF82109 MIR domain 215 392 4.53E-41
31 g11391.t2 SUPERFAMILY SSF49899 Concanavalin A-like lectins/glucanases 665 803 5.14E-9
30 g11391.t2 SUPERFAMILY SSF49899 Concanavalin A-like lectins/glucanases 1058 1155 9.1E-21
27 g11391.t2 SUPERFAMILY SSF100909 IP3 receptor type 1 binding core, domain 2 2229 2312 6.8E-5
32 g11391.t2 SUPERFAMILY SSF47473 EF-hand 4152 4211 1.78E-7
63 g11391.t2 TMHMM TMhelix Region of a membrane-bound protein predicted to be embedded in the membrane. 4398 4420 -
62 g11391.t2 TMHMM TMhelix Region of a membrane-bound protein predicted to be embedded in the membrane. 4584 4606 -
59 g11391.t2 TMHMM TMhelix Region of a membrane-bound protein predicted to be embedded in the membrane. 4662 4684 -
64 g11391.t2 TMHMM TMhelix Region of a membrane-bound protein predicted to be embedded in the membrane. 4804 4826 -
61 g11391.t2 TMHMM TMhelix Region of a membrane-bound protein predicted to be embedded in the membrane. 4852 4874 -
60 g11391.t2 TMHMM TMhelix Region of a membrane-bound protein predicted to be embedded in the membrane. 4932 4951 -

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