AluSg
Basic information Differential Expression Stage analysis Survival analysis Correlation analysis| DF ID | DF0000039 |
|---|---|
| TE superfamily | Alu |
| TE order | SINE |
| Species | Simiiformes |
| Length | 310 |
| Kimura value | 5.97 |
| Tau index | 0.7845 |
| Description | AluSg subfamily |
| Comment | Alu elements derive from a pair of internally-deleted 7SL RNA monomers that are joined by an A-rich linker. This element is described in "Origin and evolution of Alu repetitive elements"; Jurka J.; Molecular Biology Intelligence Unit:The impact of short interspersed elements (SINEs) on the host genome (ed. Richard J. Maraia), R.G. Landes Company, Austin, pp.25-41 (1995) |
| Sequence |
GGCCGGGCGCGGTGGCTCACGCCTGTAATCCCAGCACTTTGGGAGGCCGAGGCGGGCGGATCACGAGGTCAGGAGTTCGAGACCAGCCTGGCCAACATGGTGAAACCCCGTCTCTACTAAAAATACAAAAATTAGCCGGGCGTGGTGGCGCGCGCCTGTAATCCCAGCTACTCGGGAGGCTGAGGCAGGAGAATCGCTTGAACCCGGGAGGCGGAGGTTGCAGTGAGCCGAGATCGCGCCACTGCACTCCAGCCTGGGCGACAGAGCGAGACTCCGTCTCAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA
|
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 |
|---|---|---|---|---|---|---|
| AluSg | DOF5.1 | 281 | 299 | + | 15.65 | AAAAAAAAAAAAAAAAAAA |
| AluSg | DOF5.1 | 282 | 300 | + | 15.65 | AAAAAAAAAAAAAAAAAAA |
| AluSg | DOF5.1 | 283 | 301 | + | 15.65 | AAAAAAAAAAAAAAAAAAA |
| AluSg | DOF5.1 | 284 | 302 | + | 15.65 | AAAAAAAAAAAAAAAAAAA |
| AluSg | DOF5.1 | 285 | 303 | + | 15.65 | AAAAAAAAAAAAAAAAAAA |
| AluSg | DOF5.1 | 286 | 304 | + | 15.65 | AAAAAAAAAAAAAAAAAAA |
| AluSg | DOF5.1 | 287 | 305 | + | 15.65 | AAAAAAAAAAAAAAAAAAA |
| AluSg | DOF5.1 | 288 | 306 | + | 15.65 | AAAAAAAAAAAAAAAAAAA |
| AluSg | DOF5.1 | 289 | 307 | + | 15.65 | AAAAAAAAAAAAAAAAAAA |
| AluSg | DOF5.1 | 290 | 308 | + | 15.65 | AAAAAAAAAAAAAAAAAAA |
TFBS enrichment in GRCh38
Use Fisher's exact test to perform enrichment analysis of transcription factor binding sites in the TE family of GRCh38.