Gene loci information

Transcript annotation

  • This transcript has been annotated as Protein lap4.

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 g11970 g11970.t2 TSS g11970.t2 19963419 19963419
chr_1 g11970 g11970.t2 isoform g11970.t2 19964332 20004378
chr_1 g11970 g11970.t2 exon g11970.t2.exon1 19964332 19964493
chr_1 g11970 g11970.t2 cds g11970.t2.CDS1 19964332 19964493
chr_1 g11970 g11970.t2 exon g11970.t2.exon2 19969370 19969487
chr_1 g11970 g11970.t2 cds g11970.t2.CDS2 19969370 19969487
chr_1 g11970 g11970.t2 exon g11970.t2.exon3 19973977 19974145
chr_1 g11970 g11970.t2 cds g11970.t2.CDS3 19973977 19974145
chr_1 g11970 g11970.t2 exon g11970.t2.exon4 19974980 19975393
chr_1 g11970 g11970.t2 cds g11970.t2.CDS4 19974980 19975393
chr_1 g11970 g11970.t2 exon g11970.t2.exon5 19975464 19975830
chr_1 g11970 g11970.t2 cds g11970.t2.CDS5 19975464 19975830
chr_1 g11970 g11970.t2 exon g11970.t2.exon6 19975894 19975945
chr_1 g11970 g11970.t2 cds g11970.t2.CDS6 19975894 19975945
chr_1 g11970 g11970.t2 exon g11970.t2.exon7 19976797 19976871
chr_1 g11970 g11970.t2 cds g11970.t2.CDS7 19976797 19976871
chr_1 g11970 g11970.t2 exon g11970.t2.exon8 19977143 19977357
chr_1 g11970 g11970.t2 cds g11970.t2.CDS8 19977143 19977357
chr_1 g11970 g11970.t2 exon g11970.t2.exon9 19977486 19977611
chr_1 g11970 g11970.t2 cds g11970.t2.CDS9 19977486 19977611
chr_1 g11970 g11970.t2 exon g11970.t2.exon10 19977683 19977995
chr_1 g11970 g11970.t2 cds g11970.t2.CDS10 19977683 19977995
chr_1 g11970 g11970.t2 exon g11970.t2.exon11 19981605 19981694
chr_1 g11970 g11970.t2 cds g11970.t2.CDS11 19981605 19981694
chr_1 g11970 g11970.t2 exon g11970.t2.exon12 19982101 19982605
chr_1 g11970 g11970.t2 cds g11970.t2.CDS12 19982101 19982605
chr_1 g11970 g11970.t2 exon g11970.t2.exon13 19982665 19982797
chr_1 g11970 g11970.t2 cds g11970.t2.CDS13 19982665 19982797
chr_1 g11970 g11970.t2 exon g11970.t2.exon14 19982908 19983091
chr_1 g11970 g11970.t2 cds g11970.t2.CDS14 19982908 19983091
chr_1 g11970 g11970.t2 exon g11970.t2.exon15 19983186 19983523
chr_1 g11970 g11970.t2 cds g11970.t2.CDS15 19983186 19983523
chr_1 g11970 g11970.t2 exon g11970.t2.exon16 19984287 19984571
chr_1 g11970 g11970.t2 cds g11970.t2.CDS16 19984287 19984571
chr_1 g11970 g11970.t2 exon g11970.t2.exon17 19986804 19986914
chr_1 g11970 g11970.t2 cds g11970.t2.CDS17 19986804 19986914
chr_1 g11970 g11970.t2 exon g11970.t2.exon18 19987076 19987255
chr_1 g11970 g11970.t2 cds g11970.t2.CDS18 19987076 19987255
chr_1 g11970 g11970.t2 exon g11970.t2.exon19 19987651 19988241
chr_1 g11970 g11970.t2 cds g11970.t2.CDS19 19987651 19988241
chr_1 g11970 g11970.t2 exon g11970.t2.exon20 19988308 19988520
chr_1 g11970 g11970.t2 cds g11970.t2.CDS20 19988308 19988520
chr_1 g11970 g11970.t2 exon g11970.t2.exon21 19996700 19998691
chr_1 g11970 g11970.t2 cds g11970.t2.CDS21 19996700 19998691
chr_1 g11970 g11970.t2 exon g11970.t2.exon22 19999498 19999609
chr_1 g11970 g11970.t2 cds g11970.t2.CDS22 19999498 19999609
chr_1 g11970 g11970.t2 exon g11970.t2.exon23 20002039 20002309
chr_1 g11970 g11970.t2 cds g11970.t2.CDS23 20002039 20002309
chr_1 g11970 g11970.t2 exon g11970.t2.exon24 20004339 20004378
chr_1 g11970 g11970.t2 cds g11970.t2.CDS24 20004339 20004378
chr_1 g11970 g11970.t2 TTS g11970.t2 NA NA

Sequences

>g11970.t2 Gene=g11970 Length=7056
ATGTTTAAGTGCATTCCCATATTCAAAGGATGTAATCGACAAGTGGAGTTTGTGGATAAA
AGACACTGCTCCTTACCAAATGTTCCCGAGGAAATTTTACGCTATTCAAGGAGTCTCGAG
GAATTGCTACTTGATGCAAATCATATTCGAGATTTGCCCAAGAATTTTTTCCGATTACAT
CGATTACGAAAGCTCGGCCTGAGTGACAATGAAATTCATAAACTTCCACCTGATATACAA
AATTTTGAAAATCTTGTAGAATTAGACGTATCAAGAAATGATATTCCTGACATTCCAGAT
GACATTCGCCATTTACGGCTTTTACAGATTGCTGATTTCAGCTCAAATCCTATTCCAAAA
TTACCAGCTGGTTTCTCACAGCTTAAAAGTTTGACAATATTAGGATTAAATGACATGTCC
TTGACCTCATTGCCAGCTGATTTTGGATGCTTAACACAATTGGAGTCACTAGAATTGCGC
GAAAATCTTCTTAAAAATCTTCCCGAGTCAATAAGTCAGTTAACAAAACTCGAGCGTTTA
GATTTGGGCGATAATGAAATAGAAGAATTGCCGCCACATTTGGGTGATTTACCATCACTG
CAAGAACTATGGCTCGATCATAATCAATTGCAGCGACTGCCGCCCGAAATTGGTAAACTA
AAGAATCTTATGTGTTTGGATGTGTCAGAAAATCGTCTTGAAGATTTACCTGAAGAAATT
GGAGGCTTAGAAAATCTTACTGATTTGCACTTGTCACAAAATCTTCTTGAATTTATACCA
AATGGTATTGAGAAGTTGACTAAATTGACAATATTAAAGTTGGACCAAAATCGCTTGCAT
GTTCTTAATGAAAGCATTGGAATGTGTGAAAATATGCAAGAGCTTATTCTAACTGAGAAC
TTTCTTATCGAATTGCCAAGCTCAATTGGGCGGATGTCGAAATTGAATAATTTAAATGTC
GATAGGAATTCACTCGTATCGGTGCCGTCGGAAATTGGCAATTTGACCAATTTAGGTGTG
CTGAGTTTGCGGGACAATAAATTATCGAAATTGCCATCCGAGCTTGGCAATTGTGGTGCA
CTACATGTTCTCGATGTGTCGGGCAATCGACTTCAATATTTGCCATATTCGTTAGTTAAT
TTACAACTTAAAGCTGTTTGGTTGTCAGAAAATCAAGCGCAGCCATTGTTGACTTTTCAA
CCTGATACTGATGAAGCAACGGGCGAGCAGGTTCTAACCTGCTTCTTGTTGCCACAACAA
GAAATGCAACCCGTTAGTCCAGAAGATTTAGCACCGGGAAGATTATATCGATCAAATCAA
AAATTCGGTTCAATGGATTTGTCTGATATAACGCAAGATAATCGTGAAGAGTCTGATAAT
GAAGATTGGCAAGCACGGGAAGAATCACGAACACATTCGGTAAAGTTTAGCGAGGATTCA
GCTACTGATAAAGAGACACCGTTTGTAAGGCAAAATACACCACATCCGAAGGAGCTAAAG
CTCAAAGCACACAAACTTTTTTCAAAAGACAAGAAGGATGACGACTCAAATTTGCAGCCC
CTGTCAGAAGAGTCACAACGCACAGAAAATGGTGAAACACCGACAGTTGAAAATAAATTT
GAAATGAATCATGCATATCATCAAGATGTGTCATCAACAGTTGCGCACACAGAAAATCAA
ATCATATCGACTAACGATGAGTCGGGTGAAAAGCGTGTTGGATTTCATGATGATGACAAC
CGAAATGAAGAGGAAGAGGAAGAAAATGACAAACGACCCGTATCAAAATTACATCGTCGT
GATACACCACATCATTTGAAAAATAAGCGTGTTCAGCAACATTTAAATGATAAAGCGGCA
AATGTGATTCTAAGTAGATTAAAAGAAAAACCGATACCAACAGTTGAAGAAATTGCGAAT
GCAGAAAATGCAATGCCTTTAGTGCAAGATGTTGGATTACCAATTGTCGATGTAAATCAG
AATGGAATTGAAATATCAGCAAACTTAAATGATTCCACAGATGCACTTACTGCATTGAAA
GAAGAAAGATTGGAGATTCATATTGAACGAACATCTGCTGGTCTTGGATTGAGTATTGCA
GGTGGAAAAGGTTCAACACCATACAAAGGCGATGATGAAGGAATTTTCATTTCACGTGTA
ACCGAAGGTGGTCCAGCAGATCTCGCTGGTTTACGTGTCGGTGATAAAGTATTAAAAGTT
AATGGTGTGTCAGTACATGACGCTGATCATTATGACGCAGTTGAAGTGCTAAAAGCATGT
GGTGCAGTTTTAGTGCTACTAGTTTCGCGTGAAGTTACTCGACTTGTTGGACATCCAGTA
TTCCTTGAAAATGGAGAACTTGCAAAAATTGCTATTGATCGTAAAGAAAATGGTGGCATT
GGAAAAATTATCCCCGCACCAATTCAAATTCAACCGCAACAACAACAATTCACAAGTGAA
ACACCACATTCCGCTCCAATTCTGGACACTTCTTCAAGTCATCATGCAGTCGCTAGTCAT
ATTCTGCATGGTAATACTTCAGATGTCGTTCATAAAGTAACACTACACACCACACTCATT
AGGGATCAAATTGGTCAGGGACTAGGTTTCTCAATAGCTGGCGGTAAAGGCCATCAACCA
TTTGTCGATGGATCAGATGGCATATATATTTCACGACTAACTGAAGGTGGCATTGCACAG
CGCGATGGGAAAGTGCAAGTTGGTGATCGTATTTTAGCGATTAACGGTGTGGATATGCGC
GCAGCTAATCATGATCATGCCGTGCAGTTACTAACCGATACACAAAGATTCGTTCGACTT
GTGATTGAACGCGAGGTTAAGGGACCAATTGAACCACCTCAAAGTCCTCGAAGTCCGCTA
CTTAAAGGATTAAGTCCAACTGGATATATGGCTAATAGGCCGACATACACGGGTTACAGA
CGATCAATTGGAGATGTTTTAGAAACGGGAAATGACACCTTTAACAAAAGCAAAGAAGTA
GAAGTAGAACATCATAATAACAATAACAGCACATTAAAAACAACAGCCACAATTCTAACA
CACAACACAACTTCATCAGCTGAAAAAATTCAACCACAGCAACAGCAGCAAAATCAAGAA
CTGACATCATCAGAAGCATTCATTAAAAATGAGCAACAACAAGCTGCACCACAACCAGCA
CCAAGAACTCGATTATCATCACAAAATTCAATTCCAATGACGAATGGAAGCAGTAATCTT
AAGAGTGATGATCCAGCACAGGCACCGCCACGTCCAATGACGAGTGATGATTTCCAAGCG
ATGATTCCAAAGCATTTTCTTAGTGGTGACAAAAGTATTGAAGTGCAAAAAACGTCACCG
ATTGTAGAGCAAGGAGCATCGGCTGTTACAGTAACAGTCAAAAAAGGACAATCAGATTTG
CCAATGCTGCCACCGGCACCAACTGAGCTTGGACTTGTTACTGAAACCATCACAAAATCC
ACATTCACTGAAACTGTAATGACACGTGTCACAGATAATCGTTTAATGGAACCATTAATT
AGTGAGGAAGTAGTGCTACCGAAAAATCAAGGACCATTAGGATTTTCAATCATCGGTGGA
ACCGATCATTCGTGTGTACCTTTTGGAGGCAGAGATCCAGGAATTTTCATATCACATATT
GTTCCCGGTGGAATAGCTGCACAATGTGGTAAACTTCGAATGGGTGATCGTATATTGCGA
GTTAATGGCACAGATGTGACAAGTGCAACACATCAAGAAGCTGTAATGGAATTATTGAGA
CCGTGCGAAGAAATTAAATTAACTGTTCAACATGATCCATTACCAGCTGGTTTCCAGGAA
GTAACGATCGTAAAAGGCGAAGGCGAACGTCTGGGTATGCATATTAAAGGTGGCCTCAAA
GGACAACGTGGCAATCCACTTGATGCAAACGACGAAGGTGTTTTCATATCAAAAATTAAC
AGTACTGGTGCTGTACGACGCGATGGTCGTTTAAAAGTTGGCATGCGAATTCTTGAGGTC
AATGGACAGTCATTGCTTGGTGCAACTCATCAAGAAGCAGTCGATAGTTTACGTTTGAGT
GCAAATCGTTTGAACTTGGTCGTATGCAAGGGTTATGAAAAATCAGATTTAATTCATGGA
ATGATCTCATCTGGAACTGGCAGTCGCTTGAGCAGTCGAGCATCAGAGACTGGTTCAGAA
ATGAGTTTGGATCAGGATGATTTTGAGCATTCAACTGTAATACAAAACTCACATGCTGAA
GGTTTACACAATAAATCAACTGAAGACGTATTCGAGGAAGGACGTAGTGAAGAGATAGTA
AATACGAGTCAAGAGATTGCTCGTCTCGCTAACGAGGTTGCATTACTCAGTCAGGCAGAA
AATGATACTGCATTGGTCAAGGCAAAGGAAAAGAGCACACCTGAAAAGGTATTGGATATT
GTTCGTGCAGCAGAATCGTTAGCGCTGAGCGAAGTAATTCCACCAAAATCACCAGTTGAT
CATCATCATGAAACATTACAAAAGACTACAACAATTGTGATGTCAAAACACACGCTCGAC
ACACTCAATACAGCCACGAGTGCTGATTCGCAGCAATCATCATCGCTACAGCAACAGCCC
ATGCAAACGACACCATCACAGATTGAAAGCGTTCAACCAACGAATATCACTAACATTCCT
TCCTCCGCTCAAGTAACTGGAATGAAAAGTTCAATGCATGAAAATCTTTCTGTTAATTCT
GCTCCTAAAAACACTTCTACACCCTCAATGATGCTGAAATCCTCAACATCACATTTGCCA
TATACAGCAAGTAATGTTGATGAATTTCTTCAAAAGAACTTTGTCGAACAACAAAAACGT
GAACGCGTGCTGTCAAGTAGCAGTGAGGATAATTTTGATTATGAGCCATATTCACGTCGA
GAATTTCGTATGGACTTGAAGGGAGTGACGGCAGAAGATAAAGACACGCCAACATCTGGC
TATCATACTTCGCCTAATGAGCATGAGAAATGGCCTCAGAATCAAGGCATAATGAGTCCT
GAGAGCAGTGATTATGAAAAATTCGATCATTCTCAAAGGAATGCAACATATCGCAAGTCA
GTCAGCTTCGATTTAGATGTTGAAGTTGATGAAGAAAAAACCGAAGAAAAGAAGCAACAG
CAGCAGCCGAAAAAGATTAAAAGTATCTTGCGTTCTCCCAGTCCGAGTGTTTATAGCACA
CCAATACCACCGCCATTAATCCCAACAGATGATGATGATGATGAAGATGAGGATTTAGAT
GAAGGCAGTGACAATCCCTTTAAAAAAGAATTCACAGAAATGGCACTTAAAGCCATTTGT
CCTATTTCTGATTCTGACAATTCTGATAGTCAACAAATTTCTGAAAATAATTTAAATCGA
TCAACGACATCAAAAATTCCAGTTTCAAAGACAATTTTTAAAGCGACAGCAAATCTTGTT
GAGCCTGTTAAAACTAAAACTCCTCCACCACGTCCACCAAAACCACAAGTAAAACGAGCT
GAAATGAAAAAGAATGAAGGTTTGGAGAAGCTAAGTCAACAAATGGACGATGAAGATTTC
TTGGAATTTGTTCATGACGTTCAGACCAATACAATTCAAGAAATTGCTCCATTCAATCCT
GAGAGTAGTCCATTGCCACCACTTCCCAAACTTCCTCCTCCTTCTCTTAAATCTTTCAAA
CGAACAGGCAGTCTCGAGAGACCAAAAGAAAGCCCTCCACCACCACCAACTCCGATTTTG
AAATGTCAACCGGAAATTGTTGAAATTCTTCCCGCTAAATTTGATACATTCCCACGCAAA
CAAACTGCCAATTTTGTCAATGAAAATTCAGCAACAAATGTGCTTGTCACTGAGGAAGAA
CATCGTGAGATTTTATTGACCGAGAATGAAATTCGTAATGCAATGCTTTATGAGTATGTT
GATGATAAAAATCTACAATCTAAATCTGAATTATTGAATCCAAATTTTTCTTCCAACAAT
CCTTTCTTGGACACTGACACAATTGCATCATCTACCTCGACTTTTAGCTATCAAAGTTCA
CCAAATATCATGTCACCGACATCAACACTCGAACGATCAAGCGAGAGCACTTATACACCA
ATTTATAGCGCTCCACAAGTGCTACCCGTTCACTATGGTCAATTGCCAAAGCCTCAACAT
ACGGGCTACCTTGTTGCCCTTCCACAGCAACAATATGTCATTCAACAGCCTCAGCAACAA
CAACAACAGCCAATTTTGGTGAGTGGTGATGGTCAAAATCCATTCTATGTTACTAATAGC
TATAGCAATAACACAATTGCAAATAATCATCATCAAACATTATTAATGCAATCGGCTTAT
ATGCCAGCACCATCACCACTTGCGTCATATAATAGAACAATTCACACACAACAGCAACAA
CAATCACAATTTGTTTATGAGCATGAACAACCACAACAAACTAGTTTTTATTCTAATTTT
AATAGTAATAGTGTTAATATGCAGCAACAACAAATGAATTATTCAGAATTATCACCGATT
AAAGTTAATCAAGTACAACAACACTTTGTATATGCAAAAGACAGCGATCAACAGAAATCA
CCTCAAATGACTTCGTTTGGGAAGCAAACTGAATCACCAACACCACCATCATCTGTAAAA
GCAGAAACACCGAAAACAGTATCAGATAAGAAGCGATTTTTTGAGCATGTAATGGAAGAT
CAACAAAAACCAACACCTAAATCAGACAAATCCTTCTCGTTTCTATCTGAGGACGAAATT
GAGAAACTGAGGCAAGAGAATGAAAAGAAAATTGCAACGATAACGCGTGAAACAAAGAAA
AAGATTGCATCAGCAATGGCTACTGGAGTGACAGCAAGTGATGACAACATTAACAACAAT
GATCAATTTAATGACAATGTCAATGAAGACGATGAAGAATTTTATAGTAAAAATAAAAAT
CTTATCATTAGTCAACATGTCATGAATACTGAGATTGATGATGACACTAATAATAGAAAT
CCACTAGAGGCACTGGAAGCAGTATTTCGCAGCTAA

>g11970.t2 Gene=g11970 Length=2351
MFKCIPIFKGCNRQVEFVDKRHCSLPNVPEEILRYSRSLEELLLDANHIRDLPKNFFRLH
RLRKLGLSDNEIHKLPPDIQNFENLVELDVSRNDIPDIPDDIRHLRLLQIADFSSNPIPK
LPAGFSQLKSLTILGLNDMSLTSLPADFGCLTQLESLELRENLLKNLPESISQLTKLERL
DLGDNEIEELPPHLGDLPSLQELWLDHNQLQRLPPEIGKLKNLMCLDVSENRLEDLPEEI
GGLENLTDLHLSQNLLEFIPNGIEKLTKLTILKLDQNRLHVLNESIGMCENMQELILTEN
FLIELPSSIGRMSKLNNLNVDRNSLVSVPSEIGNLTNLGVLSLRDNKLSKLPSELGNCGA
LHVLDVSGNRLQYLPYSLVNLQLKAVWLSENQAQPLLTFQPDTDEATGEQVLTCFLLPQQ
EMQPVSPEDLAPGRLYRSNQKFGSMDLSDITQDNREESDNEDWQAREESRTHSVKFSEDS
ATDKETPFVRQNTPHPKELKLKAHKLFSKDKKDDDSNLQPLSEESQRTENGETPTVENKF
EMNHAYHQDVSSTVAHTENQIISTNDESGEKRVGFHDDDNRNEEEEEENDKRPVSKLHRR
DTPHHLKNKRVQQHLNDKAANVILSRLKEKPIPTVEEIANAENAMPLVQDVGLPIVDVNQ
NGIEISANLNDSTDALTALKEERLEIHIERTSAGLGLSIAGGKGSTPYKGDDEGIFISRV
TEGGPADLAGLRVGDKVLKVNGVSVHDADHYDAVEVLKACGAVLVLLVSREVTRLVGHPV
FLENGELAKIAIDRKENGGIGKIIPAPIQIQPQQQQFTSETPHSAPILDTSSSHHAVASH
ILHGNTSDVVHKVTLHTTLIRDQIGQGLGFSIAGGKGHQPFVDGSDGIYISRLTEGGIAQ
RDGKVQVGDRILAINGVDMRAANHDHAVQLLTDTQRFVRLVIEREVKGPIEPPQSPRSPL
LKGLSPTGYMANRPTYTGYRRSIGDVLETGNDTFNKSKEVEVEHHNNNNSTLKTTATILT
HNTTSSAEKIQPQQQQQNQELTSSEAFIKNEQQQAAPQPAPRTRLSSQNSIPMTNGSSNL
KSDDPAQAPPRPMTSDDFQAMIPKHFLSGDKSIEVQKTSPIVEQGASAVTVTVKKGQSDL
PMLPPAPTELGLVTETITKSTFTETVMTRVTDNRLMEPLISEEVVLPKNQGPLGFSIIGG
TDHSCVPFGGRDPGIFISHIVPGGIAAQCGKLRMGDRILRVNGTDVTSATHQEAVMELLR
PCEEIKLTVQHDPLPAGFQEVTIVKGEGERLGMHIKGGLKGQRGNPLDANDEGVFISKIN
STGAVRRDGRLKVGMRILEVNGQSLLGATHQEAVDSLRLSANRLNLVVCKGYEKSDLIHG
MISSGTGSRLSSRASETGSEMSLDQDDFEHSTVIQNSHAEGLHNKSTEDVFEEGRSEEIV
NTSQEIARLANEVALLSQAENDTALVKAKEKSTPEKVLDIVRAAESLALSEVIPPKSPVD
HHHETLQKTTTIVMSKHTLDTLNTATSADSQQSSSLQQQPMQTTPSQIESVQPTNITNIP
SSAQVTGMKSSMHENLSVNSAPKNTSTPSMMLKSSTSHLPYTASNVDEFLQKNFVEQQKR
ERVLSSSSEDNFDYEPYSRREFRMDLKGVTAEDKDTPTSGYHTSPNEHEKWPQNQGIMSP
ESSDYEKFDHSQRNATYRKSVSFDLDVEVDEEKTEEKKQQQQPKKIKSILRSPSPSVYST
PIPPPLIPTDDDDDEDEDLDEGSDNPFKKEFTEMALKAICPISDSDNSDSQQISENNLNR
STTSKIPVSKTIFKATANLVEPVKTKTPPPRPPKPQVKRAEMKKNEGLEKLSQQMDDEDF
LEFVHDVQTNTIQEIAPFNPESSPLPPLPKLPPPSLKSFKRTGSLERPKESPPPPPTPIL
KCQPEIVEILPAKFDTFPRKQTANFVNENSATNVLVTEEEHREILLTENEIRNAMLYEYV
DDKNLQSKSELLNPNFSSNNPFLDTDTIASSTSTFSYQSSPNIMSPTSTLERSSESTYTP
IYSAPQVLPVHYGQLPKPQHTGYLVALPQQQYVIQQPQQQQQQPILVSGDGQNPFYVTNS
YSNNTIANNHHQTLLMQSAYMPAPSPLASYNRTIHTQQQQQSQFVYEHEQPQQTSFYSNF
NSNSVNMQQQQMNYSELSPIKVNQVQQHFVYAKDSDQQKSPQMTSFGKQTESPTPPSSVK
AETPKTVSDKKRFFEHVMEDQQKPTPKSDKSFSFLSEDEIEKLRQENEKKIATITRETKK
KIASAMATGVTASDDNINNNDQFNDNVNEDDEEFYSKNKNLIISQHVMNTEIDDDTNNRN
PLEALEAVFRS

Protein features from InterProScan

Transcript Database ID Name Start End E.value
26 g11970.t2 CDD cd00992 PDZ_signaling 685 768 1.32078E-24
28 g11970.t2 CDD cd00992 PDZ_signaling 858 943 6.91042E-21
25 g11970.t2 CDD cd00992 PDZ_signaling 1183 1270 4.0946E-23
27 g11970.t2 CDD cd00992 PDZ_signaling 1280 1369 1.87408E-19
23 g11970.t2 Coils Coil Coil 1439 1459 -
22 g11970.t2 Coils Coil Coil 2260 2280 -
24 g11970.t2 Coils Coil Coil 2342 2351 -
17 g11970.t2 Gene3D G3DSA:3.80.10.10 Ribonuclease Inhibitor 2 116 1.9E-23
16 g11970.t2 Gene3D G3DSA:3.80.10.10 Ribonuclease Inhibitor 117 212 5.5E-27
15 g11970.t2 Gene3D G3DSA:3.80.10.10 Ribonuclease Inhibitor 213 403 4.4E-44
21 g11970.t2 Gene3D G3DSA:2.30.42.10 - 670 775 2.4E-29
19 g11970.t2 Gene3D G3DSA:2.30.42.10 - 830 949 1.9E-26
20 g11970.t2 Gene3D G3DSA:2.30.42.10 - 1176 1274 1.2E-28
18 g11970.t2 Gene3D G3DSA:2.30.42.10 - 1275 1379 6.5E-28
64 g11970.t2 MobiDBLite mobidb-lite consensus disorder prediction 441 533 -
70 g11970.t2 MobiDBLite mobidb-lite consensus disorder prediction 450 485 -
66 g11970.t2 MobiDBLite mobidb-lite consensus disorder prediction 495 520 -
71 g11970.t2 MobiDBLite mobidb-lite consensus disorder prediction 562 604 -
62 g11970.t2 MobiDBLite mobidb-lite consensus disorder prediction 1525 1550 -
67 g11970.t2 MobiDBLite mobidb-lite consensus disorder prediction 1646 1693 -
72 g11970.t2 MobiDBLite mobidb-lite consensus disorder prediction 1656 1681 -
63 g11970.t2 MobiDBLite mobidb-lite consensus disorder prediction 1708 1723 -
69 g11970.t2 MobiDBLite mobidb-lite consensus disorder prediction 1708 1848 -
68 g11970.t2 MobiDBLite mobidb-lite consensus disorder prediction 1783 1811 -
61 g11970.t2 MobiDBLite mobidb-lite consensus disorder prediction 2192 2228 -
65 g11970.t2 MobiDBLite mobidb-lite consensus disorder prediction 2192 2223 -
7 g11970.t2 PANTHER PTHR23119:SF44 PROTEIN SCRIBBLE HOMOLOG 1 1475 0.0
8 g11970.t2 PANTHER PTHR23119 DISCS LARGE 1 1475 0.0
1 g11970.t2 Pfam PF13855 Leucine rich repeat 37 95 2.2E-8
2 g11970.t2 Pfam PF13855 Leucine rich repeat 198 256 1.9E-9
4 g11970.t2 Pfam PF00595 PDZ domain 685 768 2.6E-16
6 g11970.t2 Pfam PF00595 PDZ domain 861 943 2.7E-18
3 g11970.t2 Pfam PF00595 PDZ domain 1184 1270 1.4E-19
5 g11970.t2 Pfam PF00595 PDZ domain 1281 1368 9.1E-12
74 g11970.t2 ProSiteProfiles PS51450 Leucine-rich repeat profile. 38 59 6.942
75 g11970.t2 ProSiteProfiles PS51450 Leucine-rich repeat profile. 61 82 6.888
83 g11970.t2 ProSiteProfiles PS51450 Leucine-rich repeat profile. 84 105 7.596
78 g11970.t2 ProSiteProfiles PS51450 Leucine-rich repeat profile. 107 129 4.932
80 g11970.t2 ProSiteProfiles PS51450 Leucine-rich repeat profile. 130 151 4.932
84 g11970.t2 ProSiteProfiles PS51450 Leucine-rich repeat profile. 153 174 6.957
85 g11970.t2 ProSiteProfiles PS51450 Leucine-rich repeat profile. 176 198 7.712
87 g11970.t2 ProSiteProfiles PS51450 Leucine-rich repeat profile. 199 220 7.812
82 g11970.t2 ProSiteProfiles PS51450 Leucine-rich repeat profile. 222 243 6.888
76 g11970.t2 ProSiteProfiles PS51450 Leucine-rich repeat profile. 245 267 7.15
81 g11970.t2 ProSiteProfiles PS51450 Leucine-rich repeat profile. 268 289 5.887
86 g11970.t2 ProSiteProfiles PS51450 Leucine-rich repeat profile. 291 312 4.986
73 g11970.t2 ProSiteProfiles PS51450 Leucine-rich repeat profile. 314 335 5.741
79 g11970.t2 ProSiteProfiles PS51450 Leucine-rich repeat profile. 337 358 7.096
77 g11970.t2 ProSiteProfiles PS51450 Leucine-rich repeat profile. 360 382 6.326
91 g11970.t2 ProSiteProfiles PS50106 PDZ domain profile. 685 772 22.355
88 g11970.t2 ProSiteProfiles PS50106 PDZ domain profile. 856 946 22.114
89 g11970.t2 ProSiteProfiles PS50106 PDZ domain profile. 1183 1273 21.431
90 g11970.t2 ProSiteProfiles PS50106 PDZ domain profile. 1280 1372 18.315
40 g11970.t2 SMART SM00364 LRR_bac_2 36 55 85.0
41 g11970.t2 SMART SM00369 LRR_typ_2 37 58 92.0
48 g11970.t2 SMART SM00369 LRR_typ_2 59 81 2.2
60 g11970.t2 SMART SM00365 LRR_sd22_2 59 84 130.0
50 g11970.t2 SMART SM00369 LRR_typ_2 82 104 17.0
51 g11970.t2 SMART SM00369 LRR_typ_2 105 127 250.0
53 g11970.t2 SMART SM00369 LRR_typ_2 128 150 41.0
35 g11970.t2 SMART SM00364 LRR_bac_2 151 170 48.0
45 g11970.t2 SMART SM00369 LRR_typ_2 151 173 14.0
57 g11970.t2 SMART SM00365 LRR_sd22_2 151 173 94.0
34 g11970.t2 SMART SM00364 LRR_bac_2 174 193 230.0
43 g11970.t2 SMART SM00369 LRR_typ_2 174 196 0.26
56 g11970.t2 SMART SM00365 LRR_sd22_2 174 192 14.0
38 g11970.t2 SMART SM00364 LRR_bac_2 197 216 120.0
42 g11970.t2 SMART SM00369 LRR_typ_2 197 219 0.007
58 g11970.t2 SMART SM00365 LRR_sd22_2 197 225 300.0
36 g11970.t2 SMART SM00364 LRR_bac_2 220 239 25.0
47 g11970.t2 SMART SM00369 LRR_typ_2 220 242 6.7
46 g11970.t2 SMART SM00369 LRR_typ_2 243 265 1.7
59 g11970.t2 SMART SM00365 LRR_sd22_2 243 265 320.0
44 g11970.t2 SMART SM00369 LRR_typ_2 266 289 9.3
33 g11970.t2 SMART SM00364 LRR_bac_2 289 308 270.0
39 g11970.t2 SMART SM00364 LRR_bac_2 312 331 130.0
52 g11970.t2 SMART SM00369 LRR_typ_2 312 334 79.0
54 g11970.t2 SMART SM00369 LRR_typ_2 335 358 0.016
55 g11970.t2 SMART SM00365 LRR_sd22_2 335 357 110.0
37 g11970.t2 SMART SM00364 LRR_bac_2 358 377 210.0
49 g11970.t2 SMART SM00369 LRR_typ_2 359 381 120.0
31 g11970.t2 SMART SM00228 pdz_new 693 772 1.2E-22
30 g11970.t2 SMART SM00228 pdz_new 866 946 1.3E-21
32 g11970.t2 SMART SM00228 pdz_new 1191 1273 1.3E-24
29 g11970.t2 SMART SM00228 pdz_new 1289 1372 4.1E-17
9 g11970.t2 SUPERFAMILY SSF52075 Outer arm dynein light chain 1 10 121 2.62E-20
14 g11970.t2 SUPERFAMILY SSF52058 L domain-like 94 393 2.38E-62
11 g11970.t2 SUPERFAMILY SSF50156 PDZ domain-like 676 773 9.2E-26
10 g11970.t2 SUPERFAMILY SSF50156 PDZ domain-like 834 952 7.62E-24
13 g11970.t2 SUPERFAMILY SSF50156 PDZ domain-like 1176 1272 5.26E-26
12 g11970.t2 SUPERFAMILY SSF50156 PDZ domain-like 1277 1373 7.36E-20

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:0005515 protein binding MF

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