Imagem 1

Example: RPL12P6, GAPDH, ENSG00000237984

Summary

Gene Name Arl6
Plot displaying the genomic locations of a parental gene (in chr11) and its retrocopy(ies). Each line represents a retrocopy.
Specie Rattus norvegicus
Full Name ADP-ribosylation factor like GTPase 6
Also known as -
Coordinate chr11:42858476-42884324
Strand +
Gene summary Predicted to enable GTP binding activity. Predicted to be involved in several processes, including cilium assembly; intracellular protein transport; and protein localization to non-motile cilium. Predicted to act upstream of or within several processes, including fat cell differentiation; protein transport from ciliary membrane to plasma membrane; and retina layer formation. Predicted to be located in cilium; cytosol; and membrane. Predicted to be active in axoneme. Human ortholog(s) of this gene implicated in Bardet-Biedl syndrome; Bardet-Biedl syndrome 1; Bardet-Biedl syndrome 3; and retinitis pigmentosa 55. Orthologous to human ARL6 (ADP ribosylation factor like GTPase 6). [provided by Alliance of Genome Resources, Apr 2022]

Retrocopy(s) from Arl6

Retroname Coord Strand Genomic Region ENSG
Arl6P1 chr5:43469221-43470392 + Intergenic
N/A UCSC

Expression

Transcript Sequences

>XM_006248193.3
CTAGCACACTACCCGGCAGGCTGTGCGTGGGCCTACAGCTCCCACGCGTCCCAGCAGCAAAGGTGCTTCCCCTCGATTCCCAGCTCATTGGCGGCCCCCCATGTCTTCTGTGCTCACACTCTCTGATAGTTATTCTGCGGGAATCAGACCATTTTTTTTTAACCCAGAGCTCTTCAGCCGCAGGAAGGAGAACACGTCGGCGGACACCTAAAATGCCTGAATAGGCGTGGCTTTAGGACCGGAAGAAGCTCCCGTTGCCAAGGGAACGCCGCGCGCTGTGGCGCCTGCTCAGCCACTGATGCTCCCATCCCGGGTGAACCCGCCGGTAACCCCAACTTGTAGAAGAGGCTGTGCTTGGAGCAGAGTAACCTTCCTACGAAGGCATAGAGAGGAAGGCTGAGGTTCCTGGGGAAGATCCCATCGCGGAGACGGGTGTAAGAGTGCGTCCCTTCCTGTCCTTGTCAGCCCTATTGCCGCGGGATCGGCGTCAAAGATCAGTTGCTGTTTAAATATTTAAGCCACAATATGGGATTGCTGGACAGACTTTCAGGTTTACTTGGCCTGAAGAAGAAGGAGGTTCATGTTTTATGCCTCGGGCTGGATAATAGTGGGAAAACAACAATCATTAACAAACTGAAACCCTCAAATGCTCAAGTTCAAGATATAGTTCCAACCATAGGATTTAGCATAGAGAAATTCAAATCGTCCAGTTTGTCTTTTACAGTGTTTGACATGTCAGGTCAAGGAAGGTACAGGAATCTCTGGGAACACTATTATAAAGATGGACAAGCCATTATCTTTGTCGTTGACAGTAGTGATAAATTAAGAATGGTTGTGGCCAAAGAAGAGCTTGATACCCTTCTAAATCACCCAGATATTAAGCACCGTCGAATTCCAATCTTGTTCTTTGCAAACAAAATGGATCTTAGAGACGCAGTGACTTCTGTGAAAGTGTCTCAGCTGCTGTGTTTAGAGAACATTAAAGATAAGCCGTGGCATATTTGTGCTAGTGATGCCCTCAAAGGAGAAGGACTGCAGGAAGGCGTGGACTGGCTTCAAGATCAGATCCAAGCTGTGAAAACGTGAAAAGATAGTCACTGGAGACCTCAGCGATTCTCAATTAATGGTATCTATGTAAGGCATACTGAATAATCTCAAATTTATTTTAAAAGATATATGCAACTAAGAATATTTTTACAACATTCTGCTTGCTTTTGTGGACTCTGGAAGAACATTTTAAGGACTTTAGGACTTGAGACATTATTAATCTGGCCATTAACTGTACAAAATCTAAGATTTCTTAGGAACTCCCTAGTCCCAGCTTCTTGTAAAAATCTATACATTGTTATAATCAAAATGTATAAATACCACTTGTAAGCCATCTCGATATCCTGTCATGACTTATATCTTTAATGTATTTTTATTTTTAATTGTCTTCTAAAAGTTTAGTTCATTGTATTACTTTGAAGTGCAAATTGTGTTAGGGAAACAGCCTTAAAGATTTATAAGGGATCACAAGTAATTAGTCTATATGTAATTTTTATTGTCACTATCAATAAAAAATGAAATATACCAA