ERV24_Prim

Basic information Differential Expression Stage analysis Survival analysis Correlation analysis

DF ID DF0000115
TE superfamily ERV1
TE class LTR
Species Primates
Length 7575
Kimura value 22.49
Tau index 0.8850
Description ERV1 retrotransposon, ERV24_Prim subfamily
Comment Endogenous element with LTR24 LTRs. ORFs: (roughly) gag 899-2224, pol 2228-5926, env 5961-7358. Pol product 78% similar to that of PRIMA4 and 69% similar to that of ERV8_MD. Env is 85% similar to that of PRIMA4.
Sequence
TTTTGGCGACCNNGANGGGACCCGAAGCGGACCTCCAGTGATCCCCGTCACTTCGCCGACAGCCGGAGCCTTGGTACCAGCACGAACGACTTTCGTTCACCCGACCTCGCCGGAGTCAGCGGGGATCTCTGGTAAGGCCCCTCTCGGGNTCCGAATCCTCCCGGCTTTGGTTGAGGATTCAGACTTTATTCGAGCTACACACATTCCTAACTCGACGGGGTTGGAATTGAAGCTCTACTGCAAGGTAGGAGTTTCATTTGTTATTCTCTAGAGATTCTGCTGATCGCAGATTTGTGATTTTCACTTTTCTCTGAGGTTAAGGTTTTGTTTGGAATTACTCNTTAGAGTTTTTACAACCTTTTCTCTCATTCGAAATTTTGGTCAGGGAGAAAACAGTTTCTCTCTGAAAAGAGGAAGTGAATCTTTGTGGCTTAAGCAAAAATTTGTAATCTTTAAAACTGGCCAGATTCTGAAGCTCGGTTCAATTGACAAATCTAAACTTTCTTCTTGAGTGACCAAAATTATAAAAGGCTCTCTATGAGGACGAGATAAGTCCCGAAGATAAGAGACACTGCTCCTCCCGGCCGAAAGGCGCCTTAGGTGACTAAGGTCTTGCGGGGGTGTCGGAGTTTATCGCCCATGATGTGNAGCGGCCTCACAGGGNATCCCTTAAGAAGAACATNCAGGGANCCTTGCTTAATCCGGNGGGCGCACATAAAGGNTTGGTCACCCGGCGCCTTAAGCACCCAAGTCTCTTGGGATCACCGAGACACGTAAGAGGGAAGAACCGACTCANGGGTGACACCTTGAGGAGCGACGCCCACAAGCAGCACACTCGACCCAAAACACNTCCCACTAGGTCTTTGGTCATTCAAAAGGAAAGTCTAAATTATGGGNAATCGNGCTTCTAAAACCGAGTCTTCCTCCTTAAGGAGAGATCCACCNTTAGAAACACCAGCTGGATTTATGTNTAACACTTATGGCGCCTCTTCNTGCAAATATCTAGGAAAATGGNCCCACNTAACTCGGGATGACCCCAAACTACAATGGCCAAAATGGGGNNCCTTTGAAATGCCTAAANTAATTTATTTGCGCGCNCAATTGGAAAAAGCTGGCTTTAGAATNAGACAAANTGAATGGGAGANCTACTTTCAATGGTACCTAGAAGCTTCTAAAAGAGGTTCTGANAAAGTCGCTTCCTTGCAGGAGGNAAACAAAAGATTGTCTGAAACNATTTCTGAATTGAAAAAGACTGCNGAAGTTTCTCCTCCTTCTCCAGCTCCTCCTTCTCTTTTGTCAGAACTTCCTTGTCTGGACTTACCTCCTCTTCCTCCTCCTCCTCCTTCTTCTGCTGTTCTGGCTCCATTTCGGGAATACCCTGTGTCCGGTAGAGGAGAACCTGCCTTGGTTTATCAACCATGGTCAAAAGTAGAACTTAAAGGCATAATTAAAGAATTCCCNGATCCTCTCCAAGATCCTATTGGATTTGCTAGAGAATTCGANTTAANCGTTCAAACTTATGANCCCGGATNTTCTGATCTNTATCAATTGATTCACATGTTGGTGTNAGAAAGCAAAGCCAANGANTGGNTAGNAAAGGCAAATTGGAANAATCCTTTAGAGGACTTTCANAAATNNNCTGAAGCAGATCGTGAANGGGCCCGCANTNCTGCCAAAGCTTTNCNNGATGCTATCCCCCNAGTTTTCCAAAAAGTAGTTGATTGGAACAAAATNCAGCAATGCCGACAAAATCTTGATGAGCCTGTAATGTCATACTATGAAAGATTTGAAAAAACGTTTAAACAATATTCAGGCCTATCAGAAGAAAGTTATGCTAACCACCAAAATGATACTCTCCTTAACTCAAACTTTATAAATGGATTAGATGAAGAATTGGCAATTATAATAAAGAGACAACGCCCCAGTTGGGCTACCTCTCAAACTCATGATCTAGTTAATTTTGCCGATCAAATGTCCCGTACCCTAACCAAGGAAGAAAAGGAAAGGAAAGTTAAACAGAAAGGAAAAGCAAATAAGATCATGAGTTTACAACTAAAACAATTGTCCAACCAATTTGTAACCCCTAAACGGCCTAATAAGTTCCAAAACCGACCCAATCCCCCGCTTTGCAATTACTGCAAAAAGCCTGGACATTTCAAAAAGGATTGTAGAAAATTAAAATGGAAAGAACAGCAACAGGCCAAAGAAAAAGAAGAATAGGGATGCTCCGAGGAAATCAAAGGGACTTTCCCCTTTCTCCTNACTAATGCCTTAGGAGAAATNGAAATTAATTTAAATGGAGAACANACACGAGCCCTTATTGACACTGGAGCTACGTTNTCAGTNNTNAACCCCACCTTATTACAAGGTCCCNTTCCTCGGAGTAAAAAAACAATACAAATGGTGGGNGTAACAAATACTCCTATANCAGCATATAAATCTCAACCTNTAGTTTTTCAGTTAGGNCCCCTACAGGGAACNCATGTTTTCCTCTTGGTTCCCTCGGCCCCCATNCATCTNNTAGGNAGAGACTTTTTGGAATTNCACAATGCNCACATTTCCTTCTCTCAAAAGGGGGAAATGTATTTAGAATTAGAAGATAAAATAGAATTATTAGGTTCGAAAATTTTTTCAAAATCTGATNCTTTTAATTCACAAATTGCAATTCATATTGCCATGGAGGAAACTAAATTGTTAAATAATGAAGAATTACAAGAGCTGTTAAAAATAGTACCTGATCANTTGTGGNCAAAATCTTCCACTGATATTGGGAAAATTATCTCGGCNGCCCCNATTAAAATTCAAATAGATCCATCNAAACCTCTNCCNAACCTTAANCAATACCCTCTAAGACCAGAGGCCTCGGAAGGGATNAGACCTATAATTTNGGATTATATAAAAAGAGGCTTNATTATTCCTTGCACNAGCCCNTGTAACACTCCAATCCTNCCNGTNAGAAAACCAAATGGNNGAGGATGGAGATTTGTNCAGGATCTNAGAGCNATTAATAANATNGTNATNCCTCGACNTCCNGTAGTACCAAACCCNNATACNTTGTTGACTGCCATCCCAACTGAAGGTGAGTTCTTCACTGTAATAGACCTNTGCNGTGCNTTCTTTAGCATTCCTGTNGATAAAGANAGTCAATNTCTNTTTGCCTTCACTTGGGAAGACAGACAATACACCTGGACNGTNATGCCTCAGGGGTNTACTGAGAGCCCNACTTATTTTTCNCAAATATTAAAAGCAGACCTNTCGGATGTCGANTTCCCTNAGAANTCCACCTTGATNCAGTATGTAGATGATTTACTTCTCTGCTCANNGGATAAGCAAGCCTCCANAGAGGACGGAATTCACCTNTTACAACAATTAGCTTCAAAGGGACACAAGGTTTCAAAAGAAAAACTTCAGTTCTGTCAAAAACAAGTNAAATATTTAGGNCACCTAATNTCAAAGGAAGGCCTTTTTATCAATCCGGANAGAATAAAAGGAATATTGGCCTTCCCTANCCCNAAAACTAAGAAACAACTGAGAGGATTTCTGGGATTGGCAGGATACTGCAGANATTGGATTCCAAACTTCTCCTTAANAGCTCAACCTTTATATACTCTCTTAAAACAAGATAAGCCAGACCCCCTGGAATGGACAGAGGAAAATCAGTTAACATCGGAAGAAATTAAAAAGAGTCTTACAGATGCCCCAGCNTTAGGACATCCAAATTATANTATTCCNTTTTCNTTGTTCGTTCATGAAAATCAGGGAAATGCCTTAGGNGTTCTNACTCAAAAACATGGNGATCAAAATAGACCCGTNGGATACTATAGTCAGCAACTGGACCCNGTGGCTAAAGGATTGCCACCTTGCNTGAGAGCAGTAACNGCNACNGCCNTGTTAGTAAAAGCNACCGAAGAAATAGTNATGGGATCTCCCCTCACCGTCTNTGTTCCACATTCTGTGGAAGCNCTTCTAAACTCGCACCACACTCAACATTNTTCGGTTAGTAGACTNACTTCTTATGAAGTTCTTCTNCTTTCTGCTCCCCATATTACNATCTCCAGATGTAATAATCTNAACCCTGCCACTCTTCTGCCCCTGCCTTCAGATGAAACGCCACATGATTGCATAATCTTAACCGACCAGCTTCTCTCTCCTAGGANGGACCTACAAGAAACTCCCCTTACTAACGCTGATGTTATTTGGTTTACGGATGGNTCTTACTTAAAGGACGAATCTGGAANTTATCGGGCAGGNTATGCTATAGCATCTTTAACTGAGGNAATAGAAAGCGCTCNTCTTCCAGGAGCNANNTCGGCCCAACAGGCAGAGTTAATNGCNCTNACTNGAGCCTGTCAATTGGCNAAAGGAANAACTGCTAATATTTATACAGATAGCAGATATGCTTTCGGAGTAGCTCATGATTTTGGNATGCTATGGAAACAAAGAGGATTTCTNACCTCTTCCGGTCAGCCCATAAAAAATGGACACCNTGTTTCAGAATTACTGGAAGCCATACTATTGCCAAAATCATTAGCCATTATCAAAATTCCNGGCCATTCAAAGNCAGACACTNCAGAAAGCAAAGGAAATCANTTAGCNGATANTACAGCAAAAAGNGCTGCCCTAAATGTATCTGAACAAGAAAATCAACCCATTTTAGCTTTTAAGGAAGCACTTGATTTTGATATAAAATTAGCTCAATCCAAAGCTCCAAAAACAGAACAAGAAAATTGGGAAACAAAAGGGGGAACGTACTCCTCCGAGACTGGGCTATGGTATGGACCAAACGGTCTACCCATACTTCCAACCAAATTACAGTCGTCTTTCTTAACTTATGTNCATGATTTAACTCATTGGAGCCCCGANAAAATGATTGCTTGGGGAAAACAATACTATTGGAAACCTTCTCCAACTGTTGCTCANAAGGTATACAATCGCTGCCATATCTGCCCAAAACATAATCCNGGGAAACCTTTACATAGTTCTCAAGGTCATTTTCCTTTACCAGAAGGCCCTTTCGAGGTATGGCAANTGGATTTTATTCAGCTGCCGCCATCNCAAGGATACGAGTATGTTCTNGTNATGGTTTGTATGTTTTCTCATTGGGTAGAAGCATTTCCNTGCAGAAGAGCNACGGCCTTAGCAGTAGGTAAAATTCTNTTAGAAAAAATTATTCCNNCTTGGGGAGTTCCTCTAGAACTCCACAGCGACNGAGGNACTCATTTTACTGGACAAGTAATNCAGTCAGTNTGTAAAATCTGGCCCATTCTNCAACATTTCCATTGTGCCTATCACCCCCAGTCNTCTGGACTGGTGGAACGNACAAATGGAATAATNAAAACTCAATTGGCAAAGTTNACNGAAGCTTTTAAANTTCCTTGGCCAAAGGCTCTTCCATTGGTNTTGCTTAACCTAAGATCNACCCCNTTTGGAAAACACCAGCTNTCTCCNTTTGAAATNATAACAGGNAGGCCTATGAANCTGNCTCCAGGAANTTNTGAACCTACGNTATTAAAAGGNGATATNCTNCATTATTGCNANGGCCTTATAAGGCANCTAACTAAAAACTNTAANTTAGTAAAAGANTCTTTCCACAGCGAGCTCCCGGGAGACGAAGANCTCAAAGATCACGGNCTCCAACCNGGAGATTTTGTCTATTGGAAACGACATCNANTAAAGGACTCCCTCCAACCNCGNTGGAAGGGNCCTTATCAGGTGCTNTTAACCAATCCTTGTGCTGCTAAGCTAAAGGGNATTGACTCCTGGATACACGTNNCTCATCTAAAGAAAGCCGCTTTGCCAATTTGGACTTCATCTCAAACCGGTGATCTAAAATTGAAATTCTCCAGAACCAACAAGGATGAGAAAAAGACGACATCCGAGGTAGACAGCTTTCCCAAGACACCGGACCAGGCCTGTATCTAAACGAACGCTTAATATTAATAATCGTTAATAGATGGAGAAGGTCTTCCTTTGCAAGTTCCCACTAAATTTCTTTCTTTTCGTCCCTAGTTCTTATGTTTTGTCGCTACTATCACCAGCTGTTGCCCATGAAGCAAACCTCTTCTTGCAATGGGCTCAAGACTATGCTAACGGATTACAGAAAAACACTTGTTGGGTATGCGGCCTCATGCCCCTTTCCGGTGGTTCTGGCCTACCGTGGTGGGTATCTCCTTTCCAAGGACGAGATTGGATAGAATATCAGAAATATATCNGTGTTTCTCAAGAACAGTCATCGGTGCTTAACACTAGTATGACTAAGGATGACGTACATCACTGGCCTATTAATAATACTTTACAAAGCAAAGGACATGGGAAGAGCTTTTCGGTAAANGAAACCAGTTCGTTAGCTTTAACGCTGGCGCTGCCCCAACTGAGAGATAAGACAACTCGATTTCGGGATGGTATAACACAAATTTGGGACGGTTTTATCTGGCTTACCCCCTCTTTTGGTCAGCTTAGTCAGCTTGCCCCTTTATGTTGGGAACAAAAGAATCACACCAAAGATACATGGCCCAATAGCACTAGAGATATGGGATGGATACCCAAGGAACAGTGTATCCACACCATTATATTACAAAGTACTGATTGGCATGCCACTGAATGGGCACAGCGACCGGGTATTTATTGGCTAGCTCCAAATGGAACGTCTTGGCTGTGCGGCACCAATCTATGGCCNTGGTTACCCCCAGGATGGTTAGGACGGTGTTCTTTGGGTTATGCCTGGGCACAAGGTCGAATAGTTCATACCCTTTCAAAGCCTGCAAATCTTCCTCATTTACAATCTCGTTGGGTTCGTTCTGTATTCCATTGGTATGATCATTTAGCTTCCATCTTTCTGCCACAACTGGGTATTGAGGATGTCATTTGGCATGTAGAGGCCCTAACCAATTACACANAAAAGGCCCTAAATGATAGCCGCATGGGTATCTCGTTATTAAACAATGAAGTTGCTCTTATGAGAAAGGCTGTATTACAGAACCGTATGGCTTTAGACATACTCACTGCAGCCCAAGGGGGAACCTGCGCNATCATAAAAACTGAGTGTTGTGTCTATATCCCAGATGAATCAGATAACATCACTAAATTAATGGCTGATATGAAAACCCAAATAACTAACCTTTCAGATCCAACACCCTCTCTAAACGATTGGCTAAGCAGCTGGTTTGGATCTTGGGGAACCTGGTGGCAGAAGCTGTTACTTATTCTAGGAATTATAATCATTTGTTGCGTTTTGTCCTGTTTTTGTCTTTACTGCTGCTGCGGCATTTGTTTGCAATGGAGTCAACGCACAACTGAAAAAACTAAAATAATGGTCGCTCAAAGAATTGCATTAATTGAAGATGCAGCCGTGTAGCCTGACTCAGGTCACAAAGTCACTTCCTTCATGTTGCTTTAAATTCGGCCTATACCCCATCAGCTTTATAGCCTGACAAATTCCCCCTGCCGTGGGACATGACNCTCTAGGAATGAGCCTTCCTAGCGACGCGGGACTAAGCTCCTGAACATAAAAGGAGCCAAAACATTTGAGTTCATCTACGATGCTTTCTTCGAAAGATCTTGATGAAAAGGGGGAAA



TF motifs of the concenus sequence

Use FIMO to detect transcription factor motifs in the concenus sequence of the TE family.

TE_family TFBS Start End Strand Score Matched sequence
ERV24_Prim SPIC 407 419 + 16.15 AAAAGAGGAAGTG
ERV24_Prim Nr5A2 4983 4991 - 16.13 TGACCTTGA
ERV24_Prim blmp-1 298 308 - 16.07 AAAAGTGAAAA
ERV24_Prim AGL27 2175 2188 - 16.05 CTTTCCATTTTAAT
ERV24_Prim ANL2 7328 7337 + 16.02 GCATTAATTG
ERV24_Prim ELK1::HOXA1 3666 3679 + 16.00 ATCGGAAGAAATTA
ERV24_Prim THRB 7352 7368 - 15.95 TGACCTGAGTCAGGCTA
ERV24_Prim HSFA4A 1164 1177 + 15.90 AGAAGCTTCTAAAA
ERV24_Prim RELA 2242 2251 + 15.89 GGGACTTTCC
ERV24_Prim Esrrg 4983 4991 + 15.85 TCAAGGTCA


TFBS enrichment in GRCh38

Use Fisher's exact test to perform enrichment analysis of transcription factor binding sites in the TE family of GRCh38.




GTEx

The promoter activity across 46 body sites from The Genotype-Tissue Expression (GTEx) project.




TCGA

The promoter activity across 33 cancer types from The Cancer Genome Atlas (TCGA).