Imagem 1

Example: RPL12P6, GAPDH, ENSG00000237984

Summary

Gene Name CEP57
Plot displaying the genomic locations of a parental gene (in chr11) and its retrocopy(ies). Each line represents a retrocopy.
Specie Homo sapiens
Full Name centrosomal protein 57
Also known as MVA2|PIG8|TSP57
Coordinate chr11:95790471-95832693
Strand +
Gene summary This gene encodes a cytoplasmic protein called Translokin. This protein localizes to the centrosome and has a function in microtubular stabilization. The N-terminal half of this protein is required for its centrosome localization and for its multimerization, and the C-terminal half is required for nucleating, bundling and anchoring microtubules to the centrosomes. This protein specifically interacts with fibroblast growth factor 2 (FGF2), sorting nexin 6, Ran-binding protein M and the kinesins KIF3A and KIF3B, and thus mediates the nuclear translocation and mitogenic activity of the FGF2. It also interacts with cyclin D1 and controls nucleocytoplasmic distribution of the cyclin D1 in quiescent cells. This protein is crucial for maintaining correct chromosomal number during cell division. Mutations in this gene cause mosaic variegated aneuploidy syndrome, a rare autosomal recessive disorder. Multiple alternatively spliced transcript variants encoding different isoforms have been identified. [provided by RefSeq, Aug 2011]

Retrocopy(s) from CEP57

Retroname Coord Strand Genomic Region ENSG
CEP57P1 chr1:173361683-173363733 - Intragenic
ENSG00000231615 UCSC

Expression

Transcript Sequences

>NM_014679.5
CTTTCTGTGTAAGCTGTGAGCGTAGGCGGCCCTGAGGGGGTGTGTTGCAGGGGTTTCCAAGCCCAGCACCAGCACCCTTGCCCTTTTCCATCAGGGGTTCAGCCTAGGGTCCCCGCTGGTGGGCGGCTCCCGAGTCTTGGAGAAGAGCACGAGAACCTAGACCGCCCCCGAAGTGCGGAGACCCCCTGGGCAGGCTGAAAGATGGCGGCGGCGTCTGTCTCTGCGGCTTCTGGTTCTCACTTGTCGAACAGCTTTGCTGAGCCATCAAGGTCTAATGGAAGCATGGTTCGGCATTCTTCATCTCCATATGTAGTATATCCTTCGGATAAGCCTTTCCTTAATAGTGATCTACGACGCTCCCCAAGTAAGCCTACACTTGCCTATCCAGAAAGCAACAGCAGAGCCATATTTTCTGCTCTTAAGAATCTTCAAGATAAGATTCGACGCTTGGAACTTGAGAGGATTCAGGCAGAAGAAAGTGTGAAAACCTTGTCTAGAGAAACAATTGAATATAAGAAAGTACTGGATGAACAGATACAAGAAAGGGAGAATTCAAAGAATGAGGAATCAAAGCACAATCAAGAACTGACATCTCAGTTGTTAGCTGCAGAAAATAAATGCAATCTATTAGAAAAACAATTGGAATACATGCGAAATATGATAAAGCATGCCGAAATGGAGAGGACATCTGTCTTAGAGAAACAAGTTTCCCTAGAAAGAGAACGACAACATGATCAAACACATGTTCAGAGCCAACTTGAAAAATTGGATCTTCTTGAACAGGAGTATAACAAACTTACCACAATGCAGGCCCTTGCAGAAAAAAAAATGCAAGAGTTGGAAGCAAAACTCCATGAAGAAGAACAGGAAAGGAAACGCATGCAAGCTAAGGCAGCTGAGTTGCAGACTGGTCTAGAAACAAATAGACTTATCTTTGAAGATAAGGCAACTCCGTGTGTTCCCAATGCAAGAAGAATTAAAAAAAAGAAGTCAAAACCACCAGAAAAGAAAAGTTCTAGGAACTATTTTGGTGCACAACCACATTATAGATTATGCTTGGGTGATATGCCATTTGTAGCTGGGAAGTCCACAAGCCCTAGCCATGCCGTGGTAGCCAATGTTCAGCTTGTCTTGCATCTAATGAAGCAACACAGTAAAGCTTTGTGCAATGATCGAGTCATCAACAGTATTCCTTTGGCAAAGCAAGTATCTTCACGAGGTGGTAAAAGTAAGAAGTTGTCAGTAACACCTCCCTCCTCCAACGGTATTAATGAGGAGTTGTCAGAAGTCTTACAGACTTTACAGGATGAATTTGGGCAAATGAGCTTTGATCACCAGCAGCTTGCAAAACTTATCCAGGAGTCGCCAACCGTTGAACTGAAAGACAAGTTGGAGTGTGAATTGGAGGCATTAGTGGGAAGGATGGAAGCAAAAGCCAACCAAATAACTAAAGTTCGAAAATACCAAGCCCAGCTGGAGAAACAGAAGTTAGAGAAGCAGAAGAAGGAATTAAAAGCTACCAAAAAGACTCTTGATGAAGAAAGAAACAGCAGCAGCCGTTCTGGAATCACAGGGACCACAAATAAGAAAGATTTTATGAAACTGAGACCTGGAGAAAAAAGGAGAAAAAATCTTCAGTTATTGAAGGACATGCAAAGCATACAGAATTCATTACAAAGCAGTAGTTTGTGTTGGGATTACTGACTCATAACCAGGTCAGAAATTTTATTCAGATAATCTGTACCTCATCAATCAGATGATGACAATTTACTTCCCAGGTCTCATACTCACTTATGTTGGAATTAATTAATAGCAGGTGTTAAAGGACCCAGGCTTCATTACACAGGCTTTTCATGTATGCAGGATGACTCAATGTTAAAGCATTTAAATGGAAACCAGGGGAGTTTTAAAGCCCGAGAAACCACACATAATCTTTTGTTGAGATGAGTTTGCTGTACTGACGCTGCACTTTGTAAACAGATTACCAGTTTTTTACTTGTGGGTGTGATTTTTTAAAATAGTTCTTTATATATAATTAAAATTAGGTTTAAATTTTCAAAATATGAGACTATGCTATAGGCAGTGCTTGCTTGAAAAGTCTCATTTTTAAATCTCCCTGGCATGAGGTGCCCACTTCCCCTTTCCAAAGCAACCATTAAACATACTTTGTTTCTACTATTGGTGGAGTTTTTCTATATTTAAAAATACATATATATTTCAGAGGATTTTTATTTTGCTTTTTGGCATTTCAGACTTTGATCAGTGTTAAGTGCACTTGTATTGCTTTTTAATCTGTTAATTTTTTAAAGACCCAAGCAGTCATTTTGAGTTATATCTATAAAAATTATAAAAGGATTTTTGAAAGTATAAACAAATTGTCAGTGAAATAAATGAGATTTTGGAATAAAGTGAGAATGGGAGAAGGGATATGTTGTGAGCATATACCTTCACAGTTCTTAATACCTGTTTTGTAATCATGATATTCAGTCAAGGCATTATGGTTTTTAATCTTGAAACTTAGAGAACCCTTTGAATATTTGCTTTTACTGGTGTACAGTATGAGTGGAATATAAACTGTACACATAATTATCATGTTGATATAAATCATAATTTCAACTAGATCAAGACATGTTAACCTTTTATAAATTTAAAGTCAATAAAGCACCTTTTTAAAGGAAACACTGCAACTTTCCTTAACAGCCTGTTAATAAAGGCTTTGTGACAAGCTCTCAAAAAATGCATTTCTAAATAGGAGGACATCAATGTATTGATGAAGAGAAAAAACTAGTACTTAGTTGCCACACTCATGCTTACATAGAAAGAGAGCCCAAGAATATTAGATTTCCTCATGATACAAGATACTACAGTAACAGGCTTTAATTTAGGATCCTTAAGATTTTGGGGTATTATTTGTGACTCTCCTGAAATTGTAAACTTGTGCTTCTGTGTCCAGTTTTCTAATGAGTAGGTTCGTAGCTTGATTGAATTAATAATTGTGAGCCCATAGACACAAGGGAAGTGAGAAACAGTGCTCTGGTGACATGATAAATATATGTGTCAACCACCATTTCAGCTATTAAAAACTCCTGTTATCTCCTTGTTTGAATTTCAGGTCATTAAATTGTATAACCATCATTTGAA