Imagem 1

Example: RPL12P6, GAPDH, ENSG00000237984

Summary

Gene Name Tdrd3
Plot displaying the genomic locations of a parental gene (in chr15) and its retrocopy(ies). Each line represents a retrocopy.
Specie Rattus norvegicus
Full Name tudor domain containing 3
Also known as -
Coordinate chr15:70732164-70864855
Strand +
Gene summary Predicted to enable chromatin binding activity; methylated histone binding activity; and transcription coactivator activity. Predicted to be involved in chromatin organization; mRNA processing; and positive regulation of transcription, DNA-templated. Predicted to be located in Golgi apparatus; cytosol; and nucleoplasm. Predicted to be part of exon-exon junction complex. Predicted to be active in nucleus. Orthologous to human TDRD3 (tudor domain containing 3). [provided by Alliance of Genome Resources, Apr 2022]

Retrocopy(s) from Tdrd3

Retroname Coord Strand Genomic Region ENSG
Tdrd3P1 chr4:3027220-3027705 + Intergenic
N/A UCSC

Expression

Transcript Sequences

>NM_001012043.1
CACAGTCGAACAGAGGAGttttttttctttttcttttctttcttcttttttctctctttcttctttttcttttttctGGGTCTCCAGCAGGAGGCCTGTCCCCCACCCTCAGTTCAGACCCCCGCCGTCCCCGAGCCTGAGCAGCTAACCATGGCCGAGGTGTCCGGCGCCGCGTTGTCCCAGGCGGGTTGGTATCTTTCAGATGAAGGCATTGAAGCTTGTACAAGCTCTCCTGGGAAAGTCAATATAAATGACATCATCCTGATTGCTCTCAATATTTGAGAACAATTGGCAAGAAGTTCCTCCCCAGTGACATCAGCGGTGGAAAGGTAGAAAAGCTCGAAGGTCCATGTGTTTTACAAATTCAGAAGGTCCGCAATGTGGCTGCGCCGAGGGATAATGAGGAGTCCCAAGCTGCGCCAAGGATGCTGCGTGTGCAGATGACGGACGGGCACACGAGTTGTACTGCAGTAGAATTCAGTTACATTTCAAAGATAAGCCTGAACACACCACCTGGCACAAAAGTGAAGCTCTCCGGCACTGTGGACATAAAGAACGGATTCCTGCTGTTAAGTGACTCTAATACCACAGTTCTTGGTGGTGAAGTGGAACACCTAATTGACAAGTGGGCGTTACAGAGAAGCTTACTAAAACACAACAGAAGCAATATTGGAGCTGAAGGTGGCCCGCCTCCTTTTTTACCTTTCGGACAGAAATGTGCATCTACTGTCCAAGTGGATAGCAGAGAACTTGATCGAAGAAAGACATTACAAGTTTCATTGCCTGCCAAACCTACAAATGATAATGATGAGTTTGAAAAGCAAAGGACTGCTGCCATTGCAGAGGTCGCAAAGAGCAAAGAGACCAAGACATTTGGAGGAGGTGGAGGTGGAGTCAGAAGTCATCTCAATATTGGTGCTGGCGGGCACCGAAATCGGGAGGTTTCACAGAAGGAAAAGGCTTCCAAGTCAGAGAGCAAAAATGAAGGTGTCTATAGAGAACTGGTTGATGAGAAAGCGCTGAAGCACATAACGGAAATGGGCTTCAGTAAGGAGGCGTCGAGGCAAGCACTGATGGATAATGCCAACAACCTAGAGGCAGCCTTGAACGTACTTCTGAACAGCAGTAAACAGAAGCCTGTCGTGGGTCCTCCTCCCAGAGGTAGAGGGAAAGGCAGGGGGCGAGTACGATCAGAAGATGAAGAAGACCTAGGAAACGCAAGACCGTCAGCACCAAGCACATTATTTGATTTCTTGGAGTCTAAAATGGGAACTCTGAATATGGAAGAACCTAGGTCACAGCCACAGCACCTTTATCAAGGACAGCACAGAGTATCGAATACTGAGCAGCCGAGAAATGAGAAACCTCCTCGCTTTCAAAGAGACACCCCCAATTTGAAGTCAGCCTTAGAAAACAGCGTATTATCTAGAAATAGAGGCTCCGAAAGACCAAGCAGTTCTTCAGGTTCTGATGTGTGGGCAGAAGAGAGGATCAAGTGTGATAGGCCGTATTCTAGATATGACAGAACTAAAGACGCTTCGTATCCTTTAGGTTTTCAGCACAATGATGGTGCTTTTAAAAGGAGAGATAACTCTATGCAAAACAGATCAGGAAGAGGCCCGTTGTATGCAGAGGCAAAAGAAAACCCACATCCTTCAGAATTTGTAGATTATAATAATCAAAAACGTGGGAAAAGAGAAAACCAAACCAGTAATCCTGATCATTTTTATGACAGGAAATCACGAACAATGAATAGTGAAGCGTTTAGTGGTCTAAAAATTGAAAAACATTTTAGTGCAAATACTGATTATCAGAATCCTGTCCAAAGTAATAGTTTTGTTGGTGTTCCAAATGGAGAAACAGATATGCCTATGAAAGGAAGACGAGTAGGACCAATTAAGCCAGCAGGACCTGTCACAGCTGTGCCCTACGATGATAAAATATTTTATAATAGTGGGCCCAAAAGAAGATCTGGGCCAATTAAGCCTGAAAAGGTGATAGAATCATCTATTCCTGTGGAGTATGCAAAAATGTGGAAACCTGGAGATGAATGTTTTGCACTTTATTGGGAAGACAACAAGTTTTACCGAGCAGAAGTTGAAGCCCTGCATTCTTCGGGCATGACAGCGGTTGTGAAGTTCACGGACTACGGAAACTACGAAGAGGTGCTTCTAAGCAACATCAAGCCTGTTCAGACAGAGGCATGGGAAGAAGAGGGTACCTATGATCACACCATTGAGTTCCGGAGAGGGGGTGACGGACAGCCTCGAAGGTCCACTCGGCCAACACAGCAGTTTTACCAGCCTCCTCGAGCTCGGAACTAATGTGAAAGGGTTTTTGTGAAGGAAGAACCACTGACTGAAAGATCCTGGCAGCCCATTCATAGATTTCCACTTCTTCAGACTGTGACTCAACGTGCTGGATATGATTTTTAGAGAAAGAAAAAAAAAATAAGGAAATTTTAGGGGAAAGATTCAACCTACACAAAGCAAGGGGGGAAATACTGAGTCTGATAGAGCAAATATCTTTACAATGGAAAACTTTTCTTCTGCCATCAATAAAACCAGTGTGTTATTATA