Gene loci information

Transcript annotation

  • This transcript has been annotated as Putative glycerol kinase 5.

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_4 g14412 g14412.t1 TSS g14412.t1 362876 362876
chr_4 g14412 g14412.t1 isoform g14412.t1 363245 370777
chr_4 g14412 g14412.t1 exon g14412.t1.exon1 363245 363513
chr_4 g14412 g14412.t1 cds g14412.t1.CDS1 363245 363513
chr_4 g14412 g14412.t1 exon g14412.t1.exon2 363588 364880
chr_4 g14412 g14412.t1 cds g14412.t1.CDS2 363588 364880
chr_4 g14412 g14412.t1 exon g14412.t1.exon3 365134 365383
chr_4 g14412 g14412.t1 cds g14412.t1.CDS3 365134 365383
chr_4 g14412 g14412.t1 exon g14412.t1.exon4 365438 366134
chr_4 g14412 g14412.t1 cds g14412.t1.CDS4 365438 366134
chr_4 g14412 g14412.t1 exon g14412.t1.exon5 366184 366372
chr_4 g14412 g14412.t1 cds g14412.t1.CDS5 366184 366372
chr_4 g14412 g14412.t1 exon g14412.t1.exon6 366422 367501
chr_4 g14412 g14412.t1 cds g14412.t1.CDS6 366422 367501
chr_4 g14412 g14412.t1 exon g14412.t1.exon7 367579 368258
chr_4 g14412 g14412.t1 cds g14412.t1.CDS7 367579 368258
chr_4 g14412 g14412.t1 exon g14412.t1.exon8 368317 368815
chr_4 g14412 g14412.t1 cds g14412.t1.CDS8 368317 368815
chr_4 g14412 g14412.t1 exon g14412.t1.exon9 368878 369862
chr_4 g14412 g14412.t1 cds g14412.t1.CDS9 368878 369862
chr_4 g14412 g14412.t1 exon g14412.t1.exon10 369922 370777
chr_4 g14412 g14412.t1 cds g14412.t1.CDS10 369922 370777
chr_4 g14412 g14412.t1 TTS g14412.t1 370822 370822

Sequences

>g14412.t1 Gene=g14412 Length=6798
ATGTCAGATATGTCTCAACAAACAGATTTGCCAATCACTGCTGTTTTAGATGTTGGTACC
ACATCTGTTCGATGCTTTGTTTATTCGTCAAATTTCAAAATATTGTCAACTGCATCAAAA
GATATTGAAATTTTAATTCCCCAGCATGGTTATAATGAAATTGATCCTGAAAAATTGTAC
TGTGATTGTGTTTATGTAATTAAAAAAGCTGTGAGAGACGCAAATTGTTCATTTGCTGAA
ATTGTTCTTGGAATTTCAACTTTGAGATCTTCATTTACAACATGGAACAAAACAACTGGA
AAAACCTATCATAGAATTTGTACATGGAATGATATAAGAGCGGATGATCTTGTACGAAAA
TGGAATAAATCTTTCACATTTTATGGGCTTCATTTAGGTGCAGGATTTCTCTATTTTTTT
ACACGTTCTCAAAAGTTCCTTGCTGGATCAGTGCTGAAACTGACAAATACTCAAGTCACA
CCACGATTATTATGGTGCTTAGAAAACATTCCAGAGTTGAAAGAAGGCATAAAATTAGGC
GAGGCAGTGTTTGGAACAATTGAATCATTTCTTCTTTATAGACTGAAAAAAGGAAACACT
TTGACACAAGTTGAACATGTTTCAGATATGACTAATGCCATTGCTACAGGTCTTTATGAT
CCATTTACACTTTCTTGGGGTGATTGGGCTTTTAAAATGTTCAAAATTAATAGAAACATT
ATGCCAAAGGTGGTTGATAATTCATACAACTTTGGCTCAACGCATTCATCGGTTTTTGGT
GTTCCTGTAAAAATATCTGCTGTAATAGCTGATCAAGCAGCTTCAATATTTGGTAATTGT
GTCTTTAGCAAAGGAAATGCCAAATTGACACTTGGAACTGGAACTTTTCTAAGTATAAAC
ACAGCAAATAAGTGTCATGCAAGTATCTGTGGTTTATATCCACAAATTGCTTACAGCCTT
CATGAAACAGGCGTTATTTTTGATGTAGAAGGCAACAGCAATGATACAGCAATGAGTATA
CTTTGGGGAATGCAAATTGGTCTTTATAATGATCCTTCAGAAACTTCAGATATGGCTGAA
AGTGTTTGTGATTCTGATGGTGTATATTTTATACCAGCATTTAATGGTCTTTCTGCACCA
ATAAATGATTTTAATGCATCAACTGGATTTATAGGAATTAAACCATCAACAACAAAATAT
CATATGGTTCGTGCAATTTTACAATCTATTGTATTCCGTGTGGCACAATTAATAAGAGCT
GCAAGTAAAGAGACTAATTATGTTATTAGACAAGTTAAAGCTGATGGGGGTGTTTCAAAA
AATGATTTTGTGCTACAATCTTTAGCTGATTTATGTGATTTATCTGTTGCGAGAAGTAAT
GCTGAAAGTACAAGTCTTGGTGTAGCTTATCTAAGCTGTATAAACATGAGAGCAATGAAA
ATTGATGATGTGAAGAAACAATATAAACCATTAAAAGTATTCTTACCAAAGACTAAAAAT
AAAGAAGATATTATTAGAGATTTTTGTGAATGGGAAAGAGCTGTTGAAAGATTTAAAAGT
TGTACAAGTGTCGCTCAAAATTTTTTGGAGTGTGATTACCAATTAGAAGATTCAACTTAT
ACTTGTATTTTATCAATTAGTAATCCTAATGGCTTTGATAATTGGACAACTATCGATGGG
AACCATTTAGAAGGTTTTACAAATGCTGATGTAGTTAATTTAAGAGCATCTTACCAAACA
ACTACAAATATTCCACAAATAATTTGCTCAACTTTTATGAATCTTACTACAATTTCATTT
GCTATGAGTCAGATACGAACAATTTCACCCAATACATTCACATCGTGTTCTAATTTAGTT
TCTTTGAGAGTGTTTAATAATTTTATTGAGGATCTACCAGATAGCTTATTTATCAACAAC
GGAAATTTACGTTCTATTGACTTTACTGATAATCGGATTACACAATTCGGCGCCAATACA
TTTTTAAATACTGTCCTTGAATCGATAATGATGGATTATAATGAGATTACAACGTTTGAG
ACAGCGTGGTTTTTACCGATAAACTCAACATTGAAAAGTTTGAGTTTACATTCCAATCAA
ATAACAAAGTTTCCAGATTCTGCTTTCACTCATTTTAATCAACTTGAAAGCCTTTCTCTA
AGTGCTAATTATTTAAGTGATTTACCCAATAATGCTTTCGATGGATTGGAAAATTTACAA
GTTTTATCACTTTATGGAAATTTATTGACAATTTTAAAATTTGAATGGTTCAATCCACTT
ACAAATCTTGTAAGTTTGAGATTAGAATTTAATACAATTTCTGACCTTCCCAGCGGAATA
TTCAATAATAATAACAGATTAACTGATCTTGGACTTTCATTCAATCAACTTTCTGAAATT
AATTCAAATTCATTTGGTGATTTAAATAATCTAGTGACATTTTATGGAGAATTTAACATG
ATCAATTCAATTGATAGTGAATTTTTTGATCGAGCTATTAATTTAAATGGTTTATATCTT
ACATCAAATATTTGCACACAGTCTTCTTTTTATGATGTAGCTCTTAATCGGATTTCAGTA
CGTTTAGCATTACAGACTTGTTTTGATAATTTCAATGTTGAAACAACACTTGAATGCTTT
TATTTAGCAGCTGAATTTTTTCCTTATACGTGCGAGTTAACAATTGTAAATCCACAAGGT
CGTGATGATTTTGAAACAATTGATGGAGACCATGTTGAAGAAAACGGTGATAATGATGTT
TTGAGACTTGAAGCTTTTAATCAAAATACTTTTAACCTTCCATCCGTTCTTTGTGATCGT
TTTAATAATCTTCAAGAGATCACAATAACTGGTAGTCGAATGGAATTGTTAACATCTAAA
GCTTTTGAAAATTGTAGAGAATTGACTTATTTAGATCTTGAGCACAATAACATAACAGCA
TTAGAAGAAGGACTTTTTGATTCAAATCCATTGCTTGAAATTTTAAATCTAAATGATAAT
CATATTGCTACTATTGGTTTGAATACATTTGTTGGAACTCAATTATGGTATATTGATTTG
GAGCATAATCAACTCAATTTTTTTACGCCTAATTGGTTTAATCCAATCAATTCAACTTTA
AGATCACTAAATCTGAATGGAAATTTCATTACTAATTTACCTTCACAAGCTTTTTCAATA
TTGAGAAATTTAGAAGAATTAGAAATTGCTGCAAATTCATTTGTTTCAATTCCTGGAAAT
TCTTTTGAGGGATTAACAAATCTTGGTTATTTGGCAATGTATCGATGTAATATTGAGCAA
CTTTTACCAGAATGGTTTGCAGATTTATCTGCTCTTCATAGTCTTCATATTGAAACTAAT
AATATTACTGTATTACCTCAAGGAATTTTTAATTCCTTACAAAGACTTAATGACATAAAT
TTATCTCAAAATCAACTCACTACAATTGACTCTAGAGCTTTTGGAAATGTTTCAGCTTTT
GTTGCTTTTAATGCACAATTTAATCAAATTAATGCAATTAATCCTGAGTTCTTTGATCTT
GCTGAAGTTCTTTACATTTTATTTTTGAATGGAAACACTTGTGTGAGCACAAACTTTATT
AATGTAGTTGGAACAAGAGAACTTGTAAGAAACCAACTCCTTGGATGTTTTGAAAACTTC
TTGAAGCAAGAAAGAGGCATAATTGAATGTGAATATGTAGATGATGGAATTTTTGGATAC
GTTTGCGAGATGAAAATTAATAATCCAAGAGGTTCTGATGATTTCGAAAGAATTGAAGGT
ACACATATTGAAGGTTTTACTGATTCTGATGTTTTTCGTGTTGAAGCTTATCAACAAATT
TCAACCCTTGTGCCTGCAATTATTTGTATACAATTTATAAATTTACGTCAACTGTATTTA
GGTGCCAGCAACATTAAGAATATTTCATCAACTGCTTTCGAAAATTGCTTAAACCTTGAG
TATTTGAATCTTGAATTAAATTTAATTCAACAAATTCCATCAAACTTATTTATAAATTCA
CCTCATCTTGTTTACCTAAGTTTTCTCTTTAATGAAATTACTTTAATCTCTCCAAATGCT
TTCGAAAATACAATTATTGAAGATTTAAAATTGGACGATAATCAATTAACAGCAATTGAC
TTAAATTGGTTTAATGGCATCACTGAAACCTTACAATTTTTAACAATTTCTGAAAATCTC
ATCACAGAATTATCAGAAAATCAATTCTCTTCATTGATAAAACTTCGTGAACTTGATTTG
GGACGGAATTCTTTGGTAATGATTTCTGATACAGCTTTTGATGGATTAAGAAATCTGGAG
TATTTATGGCTCTACCATTCTACTATTAATGAAGTGAATCCAATTTGGTTTAGTGAAATG
CCATCATTACAAGGTGTTCATATTAACTATAACCAACTTACAAATCTTCCAAATGGTCTT
TTTCGCAACAACCACAGACTTTTTGAATTGAATGTGGCAGGAAATCGAATAAGAATTGTT
GATAGCAATATTTTTGGAAATCTTTCATCTCTTCTCTATCTTACAGCATCAAACAATCGC
ATAATGGCGATTGATTCACAATTTTTTGATCAAGCAACTCAAATTTACAATTTATTTCTT
TTTAATAATTTATGTACATCACAAAATTTCATCTCAATTGTTAACAATCGTTCTGAAATT
CGTAATCAACTCTCAAACTGTTTTGATATTTTTGAACGTGAAGGATTACTACAATGTACT
TATATTGAAGATGATTTTTTGCCTTATCGATGTGAATTTGAAGTTCAAAATATTGCTGGA
AACGATAACTTTGAAAGAATCGAAGGGTTACATGTAGGATCAAGAAATGACAATGATGTC
TTGCGTCTTGAATCTTTTGGTCAACAAACATTCAACATTCCTAGAATTATATGTAATCAG
TTCAATAACTTAGAGGAAATTTATTTTGCTTTTGCTGGAATTGAAGTCTTAACTAGCGAA
TCATTTTCGTCTTGCAATTCATTAAATTATCTCAATTTGGAACTCAATGATATAGCAATA
ATTAACAGTGGAGTGCTAAACAATCTTGTTAATTTGGCTTCTCTTAGTTTCTATGGAAAT
CAACTAATTGTAATTGAAAGCCAAGCATTTCAAAATTTACCTTTGACTTATCTTAATCTT
GATGTCAACAGACTTAGTTATATAAATCCCGAGTGGTTTGTAAGTGGATCACAATTAACT
TATTTAACAATAGCGTCGAATGAAATTGTTAGCTTGCCAAGTCGTGGATTTAGTAATGCA
GCAACATTGCAAGATTTAATTTTGTCAAATAATGAATTAAACTTCATTTCAATTGATTCT
TTTGAAGGTCTAACAAATCTGAATTATTTAATTCTCAATAACTGCAGCATCAAAAATATT
AATCCAATTTGGTTTGAAAATTTAAATTCGTTACAACGTCTTTATTTACAAGGCAATAAT
ATTGAGTCTCTTCCACAAAGAATTTTTAACAATTTGACTCATATTAATTTAGCCGGAAAT
CAATTGAGAGCAATCAATAGAAATGCTTTTGTTGCAATTGAATCATTAATTCAATTTAAT
GCTCAAAATAATATGATTGATGGAATTGAAACTTCTTTCTTTGATGAAGCTAGTTCACTT
TATACATTACAATTGCTTAATAATTTATGCACTTCTAATAACTTTATAAACATTCCAATG
AACAGAGAAAATGTAAGAGAACAATTATCAATATGTTTTGAAAACTTTGAATCAACTGAA
ATTAATTGCAATTATATGTATGATTTTCCTTATACTTGTTATTTCACAATCTTCAATCCT
CTCTCGAGAAATGACTTTAACAATATTCCTGGAATTCATATGAGCGGACGTGAAGACGAA
AATGTTGAGAGTTTAGATGCAAATAATCAATTGACAAATGTTTTTCCTGAAGTTATTTGC
AGGCAATTTACAAACCTCAATTACATTTACTTTCTAAATAGTGGGATTGAAATCTTAACA
GCTGATACTTTTTCAGCTTGTACAAAGCTTCTAACTCTGACGCTTGATGGCAATCGTATA
GCACAGTTGATTGACAATTTGTTTATAAATTCTCCAAATTTGGCATTGATTTCTTTGGCT
TTCAACAATATCAATCATGTGAGTGAAAATTCACTTACTGGTATCAATTTAGTTTTGCTT
GATCTTGAACAAAATGAAATATCTGAAATTCCAAATAACTTTTTGACTTCATCAACAAAT
CTTTACTATCTTATTCTAAATGAAAATAGATTAACAAACTTGCCAAATGGACTTTTTACT
GGTTTAAATTTAATTAGTTTTCTTGATATATCACATAATCAACAATTAAGTGATTTGCCA
GATAATTTTTTTAACGGTCTTGCCTTTCTTATGACTTTAGTAATGGACCATTGCAATTTT
ACTTCATTAAATCCAAATTGGTTCCATGATTTATCAAATATTAATAATTTATTTTTATCT
GATAATCCAATCGATCAATTACCAATTGGAGTTTTCAATCCATTATTTAGAGTTGATTAT
CTTGCTATAGATAATATGAACCTTGAAAGACTTGATGCTAATTCTTTTGGTGCAGCATTA
AGAAACGTTAGAGTGATACGTGCCAGAGGAAATAGAATTAATGCAATTGATCCAAGAATT
CTTGACAATTCAATCGGAAATTTAAATGAATTCTATTTGTTAAATAATGTTTGCATTGAT
AATAATTTTAGTGGAGTTCAAGCTAACATCGAAGAAGTAAGACAAGATTTATATAGATGT
TTTGCTAATTTTGAGTAA

>g14412.t1 Gene=g14412 Length=2265
MSDMSQQTDLPITAVLDVGTTSVRCFVYSSNFKILSTASKDIEILIPQHGYNEIDPEKLY
CDCVYVIKKAVRDANCSFAEIVLGISTLRSSFTTWNKTTGKTYHRICTWNDIRADDLVRK
WNKSFTFYGLHLGAGFLYFFTRSQKFLAGSVLKLTNTQVTPRLLWCLENIPELKEGIKLG
EAVFGTIESFLLYRLKKGNTLTQVEHVSDMTNAIATGLYDPFTLSWGDWAFKMFKINRNI
MPKVVDNSYNFGSTHSSVFGVPVKISAVIADQAASIFGNCVFSKGNAKLTLGTGTFLSIN
TANKCHASICGLYPQIAYSLHETGVIFDVEGNSNDTAMSILWGMQIGLYNDPSETSDMAE
SVCDSDGVYFIPAFNGLSAPINDFNASTGFIGIKPSTTKYHMVRAILQSIVFRVAQLIRA
ASKETNYVIRQVKADGGVSKNDFVLQSLADLCDLSVARSNAESTSLGVAYLSCINMRAMK
IDDVKKQYKPLKVFLPKTKNKEDIIRDFCEWERAVERFKSCTSVAQNFLECDYQLEDSTY
TCILSISNPNGFDNWTTIDGNHLEGFTNADVVNLRASYQTTTNIPQIICSTFMNLTTISF
AMSQIRTISPNTFTSCSNLVSLRVFNNFIEDLPDSLFINNGNLRSIDFTDNRITQFGANT
FLNTVLESIMMDYNEITTFETAWFLPINSTLKSLSLHSNQITKFPDSAFTHFNQLESLSL
SANYLSDLPNNAFDGLENLQVLSLYGNLLTILKFEWFNPLTNLVSLRLEFNTISDLPSGI
FNNNNRLTDLGLSFNQLSEINSNSFGDLNNLVTFYGEFNMINSIDSEFFDRAINLNGLYL
TSNICTQSSFYDVALNRISVRLALQTCFDNFNVETTLECFYLAAEFFPYTCELTIVNPQG
RDDFETIDGDHVEENGDNDVLRLEAFNQNTFNLPSVLCDRFNNLQEITITGSRMELLTSK
AFENCRELTYLDLEHNNITALEEGLFDSNPLLEILNLNDNHIATIGLNTFVGTQLWYIDL
EHNQLNFFTPNWFNPINSTLRSLNLNGNFITNLPSQAFSILRNLEELEIAANSFVSIPGN
SFEGLTNLGYLAMYRCNIEQLLPEWFADLSALHSLHIETNNITVLPQGIFNSLQRLNDIN
LSQNQLTTIDSRAFGNVSAFVAFNAQFNQINAINPEFFDLAEVLYILFLNGNTCVSTNFI
NVVGTRELVRNQLLGCFENFLKQERGIIECEYVDDGIFGYVCEMKINNPRGSDDFERIEG
THIEGFTDSDVFRVEAYQQISTLVPAIICIQFINLRQLYLGASNIKNISSTAFENCLNLE
YLNLELNLIQQIPSNLFINSPHLVYLSFLFNEITLISPNAFENTIIEDLKLDDNQLTAID
LNWFNGITETLQFLTISENLITELSENQFSSLIKLRELDLGRNSLVMISDTAFDGLRNLE
YLWLYHSTINEVNPIWFSEMPSLQGVHINYNQLTNLPNGLFRNNHRLFELNVAGNRIRIV
DSNIFGNLSSLLYLTASNNRIMAIDSQFFDQATQIYNLFLFNNLCTSQNFISIVNNRSEI
RNQLSNCFDIFEREGLLQCTYIEDDFLPYRCEFEVQNIAGNDNFERIEGLHVGSRNDNDV
LRLESFGQQTFNIPRIICNQFNNLEEIYFAFAGIEVLTSESFSSCNSLNYLNLELNDIAI
INSGVLNNLVNLASLSFYGNQLIVIESQAFQNLPLTYLNLDVNRLSYINPEWFVSGSQLT
YLTIASNEIVSLPSRGFSNAATLQDLILSNNELNFISIDSFEGLTNLNYLILNNCSIKNI
NPIWFENLNSLQRLYLQGNNIESLPQRIFNNLTHINLAGNQLRAINRNAFVAIESLIQFN
AQNNMIDGIETSFFDEASSLYTLQLLNNLCTSNNFINIPMNRENVREQLSICFENFESTE
INCNYMYDFPYTCYFTIFNPLSRNDFNNIPGIHMSGREDENVESLDANNQLTNVFPEVIC
RQFTNLNYIYFLNSGIEILTADTFSACTKLLTLTLDGNRIAQLIDNLFINSPNLALISLA
FNNINHVSENSLTGINLVLLDLEQNEISEIPNNFLTSSTNLYYLILNENRLTNLPNGLFT
GLNLISFLDISHNQQLSDLPDNFFNGLAFLMTLVMDHCNFTSLNPNWFHDLSNINNLFLS
DNPIDQLPIGVFNPLFRVDYLAIDNMNLERLDANSFGAALRNVRVIRARGNRINAIDPRI
LDNSIGNLNEFYLLNNVCIDNNFSGVQANIEEVRQDLYRCFANFE

Protein features from InterProScan

Transcript Database ID Name Start End E.value
109 g14412.t1 Gene3D G3DSA:3.30.420.40 - 11 279 0.000e+00
108 g14412.t1 Gene3D G3DSA:3.30.420.40 - 280 525 0.000e+00
105 g14412.t1 Gene3D G3DSA:3.80.10.10 Ribonuclease Inhibitor 527 685 0.000e+00
107 g14412.t1 Gene3D G3DSA:3.80.10.10 Ribonuclease Inhibitor 686 862 0.000e+00
102 g14412.t1 Gene3D G3DSA:3.80.10.10 Ribonuclease Inhibitor 865 1205 0.000e+00
101 g14412.t1 Gene3D G3DSA:3.80.10.10 Ribonuclease Inhibitor 1238 1569 0.000e+00
104 g14412.t1 Gene3D G3DSA:3.80.10.10 Ribonuclease Inhibitor 1611 1832 0.000e+00
106 g14412.t1 Gene3D G3DSA:3.80.10.10 Ribonuclease Inhibitor 1833 1893 2.000e-05
103 g14412.t1 Gene3D G3DSA:3.80.10.10 Ribonuclease Inhibitor 1894 2254 0.000e+00
16 g14412.t1 PANTHER PTHR45617:SF69 SI:DKEY-1J5.4 602 733 0.000e+00
26 g14412.t1 PANTHER PTHR45617 - 602 733 0.000e+00
17 g14412.t1 PANTHER PTHR45617:SF69 SI:DKEY-1J5.4 690 869 0.000e+00
27 g14412.t1 PANTHER PTHR45617 - 690 869 0.000e+00
19 g14412.t1 PANTHER PTHR45617:SF69 SI:DKEY-1J5.4 940 1090 0.000e+00
29 g14412.t1 PANTHER PTHR45617 - 940 1090 0.000e+00
21 g14412.t1 PANTHER PTHR45617:SF69 SI:DKEY-1J5.4 1077 1194 0.000e+00
31 g14412.t1 PANTHER PTHR45617 - 1077 1194 0.000e+00
15 g14412.t1 PANTHER PTHR45617:SF69 SI:DKEY-1J5.4 1278 1451 0.000e+00
25 g14412.t1 PANTHER PTHR45617 - 1278 1451 0.000e+00
20 g14412.t1 PANTHER PTHR45617:SF69 SI:DKEY-1J5.4 1415 1563 0.000e+00
30 g14412.t1 PANTHER PTHR45617 - 1415 1563 0.000e+00
14 g14412.t1 PANTHER PTHR45617:SF69 SI:DKEY-1J5.4 1642 1774 0.000e+00
24 g14412.t1 PANTHER PTHR45617 - 1642 1774 0.000e+00
22 g14412.t1 PANTHER PTHR45617:SF69 SI:DKEY-1J5.4 1755 1898 0.000e+00
32 g14412.t1 PANTHER PTHR45617 - 1755 1898 0.000e+00
18 g14412.t1 PANTHER PTHR45617:SF69 SI:DKEY-1J5.4 1966 2119 0.000e+00
28 g14412.t1 PANTHER PTHR45617 - 1966 2119 0.000e+00
13 g14412.t1 PANTHER PTHR45617:SF69 SI:DKEY-1J5.4 2115 2245 0.000e+00
23 g14412.t1 PANTHER PTHR45617 - 2115 2245 0.000e+00
12 g14412.t1 Pfam PF00370 FGGY family of carbohydrate kinases, N-terminal domain 14 278 0.000e+00
11 g14412.t1 Pfam PF02782 FGGY family of carbohydrate kinases, C-terminal domain 287 474 0.000e+00
4 g14412.t1 Pfam PF13855 Leucine rich repeat 690 749 0.000e+00
2 g14412.t1 Pfam PF13855 Leucine rich repeat 762 813 3.000e-07
6 g14412.t1 Pfam PF13855 Leucine rich repeat 943 1002 0.000e+00
10 g14412.t1 Pfam PF13855 Leucine rich repeat 1039 1097 0.000e+00
8 g14412.t1 Pfam PF13855 Leucine rich repeat 1111 1170 0.000e+00
3 g14412.t1 Pfam PF13855 Leucine rich repeat 1294 1347 1.000e-07
7 g14412.t1 Pfam PF13855 Leucine rich repeat 1414 1464 0.000e+00
9 g14412.t1 Pfam PF13855 Leucine rich repeat 1699 1749 7.000e-07
5 g14412.t1 Pfam PF13855 Leucine rich repeat 1762 1821 0.000e+00
1 g14412.t1 Pfam PF13855 Leucine rich repeat 2108 2164 1.000e-07
120 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 618 639 6.403e+00
117 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 642 663 6.734e+00
146 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 665 686 5.117e+00
112 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 690 711 7.643e+00
131 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 714 735 7.389e+00
126 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 738 759 5.617e+00
110 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 762 783 6.695e+00
144 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 786 807 6.457e+00
132 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 967 988 7.335e+00
124 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 991 1012 6.372e+00
123 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 1014 1035 5.001e+00
134 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 1039 1060 7.581e+00
130 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 1063 1084 6.010e+00
114 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 1111 1132 5.363e+00
119 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 1135 1156 6.203e+00
135 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 1294 1315 5.995e+00
147 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 1318 1339 7.527e+00
127 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 1342 1363 5.194e+00
115 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 1390 1411 6.634e+00
116 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 1414 1435 6.195e+00
111 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 1438 1459 5.533e+00
142 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 1462 1483 5.671e+00
122 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 1486 1507 4.847e+00
133 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 1510 1531 5.379e+00
143 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 1667 1688 5.279e+00
137 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 1691 1712 5.687e+00
128 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 1714 1735 6.064e+00
140 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 1738 1759 6.049e+00
118 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 1762 1785 6.218e+00
139 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 1786 1807 6.149e+00
121 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 1810 1831 7.481e+00
136 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 1832 1852 5.240e+00
145 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 2009 2030 6.180e+00
113 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 2033 2054 5.294e+00
138 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 2056 2076 7.458e+00
129 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 2080 2101 6.896e+00
125 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 2103 2126 5.078e+00
141 g14412.t1 ProSiteProfiles PS51450 Leucine-rich repeat profile. 2153 2174 6.103e+00
45 g14412.t1 SMART SM00364 LRR_bac_2 616 635 1.100e+02
82 g14412.t1 SMART SM00369 LRR_typ_2 616 639 7.700e+01
100 g14412.t1 SMART SM00365 LRR_sd22_2 640 660 6.000e+02
61 g14412.t1 SMART SM00369 LRR_typ_2 641 663 1.400e+02
49 g14412.t1 SMART SM00364 LRR_bac_2 688 707 7.500e+01
95 g14412.t1 SMART SM00365 LRR_sd22_2 688 709 1.300e+02
78 g14412.t1 SMART SM00369 LRR_typ_2 691 711 9.600e+00
50 g14412.t1 SMART SM00364 LRR_bac_2 712 731 1.800e+02
71 g14412.t1 SMART SM00369 LRR_typ_2 712 735 6.900e-02
97 g14412.t1 SMART SM00365 LRR_sd22_2 712 738 3.400e+02
90 g14412.t1 SMART SM00369 LRR_typ_2 736 759 1.800e+00
77 g14412.t1 SMART SM00369 LRR_typ_2 760 783 1.100e-03
93 g14412.t1 SMART SM00365 LRR_sd22_2 760 778 5.900e+02
81 g14412.t1 SMART SM00369 LRR_typ_2 786 807 7.300e+01
62 g14412.t1 SMART SM00369 LRR_typ_2 965 988 7.000e-01
99 g14412.t1 SMART SM00365 LRR_sd22_2 965 984 5.600e+02
56 g14412.t1 SMART SM00369 LRR_typ_2 990 1012 2.800e+01
72 g14412.t1 SMART SM00369 LRR_typ_2 1013 1035 1.100e+02
46 g14412.t1 SMART SM00364 LRR_bac_2 1037 1056 9.400e+01
58 g14412.t1 SMART SM00369 LRR_typ_2 1040 1060 2.300e+01
74 g14412.t1 SMART SM00369 LRR_typ_2 1061 1084 1.100e+00
96 g14412.t1 SMART SM00365 LRR_sd22_2 1061 1087 2.300e+02
79 g14412.t1 SMART SM00369 LRR_typ_2 1085 1108 4.700e+01
42 g14412.t1 SMART SM00364 LRR_bac_2 1109 1128 7.100e+01
65 g14412.t1 SMART SM00369 LRR_typ_2 1109 1132 6.300e-02
68 g14412.t1 SMART SM00369 LRR_typ_2 1133 1156 2.100e-01
98 g14412.t1 SMART SM00365 LRR_sd22_2 1133 1159 7.600e+02
89 g14412.t1 SMART SM00369 LRR_typ_2 1292 1315 1.900e+01
52 g14412.t1 SMART SM00369 LRR_typ_2 1316 1339 3.100e+01
54 g14412.t1 SMART SM00369 LRR_typ_2 1341 1363 2.000e+02
66 g14412.t1 SMART SM00369 LRR_typ_2 1367 1386 4.000e+02
47 g14412.t1 SMART SM00364 LRR_bac_2 1388 1407 2.500e+01
64 g14412.t1 SMART SM00369 LRR_typ_2 1391 1411 2.600e+02
83 g14412.t1 SMART SM00369 LRR_typ_2 1412 1435 8.200e-03
92 g14412.t1 SMART SM00365 LRR_sd22_2 1412 1438 4.100e+02
59 g14412.t1 SMART SM00369 LRR_typ_2 1436 1459 1.900e+02
41 g14412.t1 SMART SM00364 LRR_bac_2 1460 1479 9.100e+01
55 g14412.t1 SMART SM00369 LRR_typ_2 1460 1483 1.400e-02
57 g14412.t1 SMART SM00369 LRR_typ_2 1485 1507 9.000e+01
76 g14412.t1 SMART SM00369 LRR_typ_2 1508 1531 1.200e+01
85 g14412.t1 SMART SM00369 LRR_typ_2 1689 1712 3.900e+00
91 g14412.t1 SMART SM00365 LRR_sd22_2 1689 1715 1.500e+02
60 g14412.t1 SMART SM00369 LRR_typ_2 1713 1735 3.000e+02
44 g14412.t1 SMART SM00364 LRR_bac_2 1736 1755 1.300e+02
80 g14412.t1 SMART SM00369 LRR_typ_2 1737 1759 7.200e+01
70 g14412.t1 SMART SM00369 LRR_typ_2 1763 1783 8.400e+01
73 g14412.t1 SMART SM00369 LRR_typ_2 1784 1807 2.500e+01
40 g14412.t1 SMART SM00364 LRR_bac_2 1808 1827 3.600e+01
88 g14412.t1 SMART SM00369 LRR_typ_2 1808 1831 4.100e-04
94 g14412.t1 SMART SM00365 LRR_sd22_2 1808 1834 3.600e+01
75 g14412.t1 SMART SM00369 LRR_typ_2 1832 1852 1.100e+02
69 g14412.t1 SMART SM00369 LRR_typ_2 2007 2030 1.000e+02
63 g14412.t1 SMART SM00369 LRR_typ_2 2032 2054 2.500e+02
67 g14412.t1 SMART SM00369 LRR_typ_2 2055 2077 7.300e+01
48 g14412.t1 SMART SM00364 LRR_bac_2 2078 2097 5.900e+01
87 g14412.t1 SMART SM00369 LRR_typ_2 2079 2101 2.800e+00
43 g14412.t1 SMART SM00364 LRR_bac_2 2102 2122 2.900e+01
84 g14412.t1 SMART SM00369 LRR_typ_2 2102 2126 2.100e+02
51 g14412.t1 SMART SM00369 LRR_typ_2 2127 2150 8.800e+01
53 g14412.t1 SMART SM00369 LRR_typ_2 2151 2174 6.400e+00
86 g14412.t1 SMART SM00369 LRR_typ_2 2200 2223 4.900e+01
38 g14412.t1 SUPERFAMILY SSF53067 Actin-like ATPase domain 15 280 0.000e+00
39 g14412.t1 SUPERFAMILY SSF53067 Actin-like ATPase domain 281 518 0.000e+00
37 g14412.t1 SUPERFAMILY SSF52058 L domain-like 572 846 0.000e+00
34 g14412.t1 SUPERFAMILY SSF52058 L domain-like 923 1194 0.000e+00
35 g14412.t1 SUPERFAMILY SSF52058 L domain-like 1284 1545 0.000e+00
36 g14412.t1 SUPERFAMILY SSF52058 L domain-like 1627 1896 0.000e+00
33 g14412.t1 SUPERFAMILY SSF52058 L domain-like 1967 2237 0.000e+00

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
GO:0016773 phosphotransferase activity, alcohol group as acceptor MF
GO:0005975 carbohydrate metabolic process BP

KEGG

Orthology

Pathway

This gene does not belong to any 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