Imagem 1

Example: RPL12P6, GAPDH, ENSG00000237984

Summary

Gene Name Piga
Plot displaying the genomic locations of a parental gene (in chrX) and its retrocopy(ies). Each line represents a retrocopy.
Specie Rattus norvegicus
Full Name phosphatidylinositol glycan anchor biosynthesis, class A
Also known as -
Coordinate chrX:31786823-31799751
Strand -
Gene summary Predicted to enable phosphatidylinositol N-acetylglucosaminyltransferase activity. Predicted to be involved in GPI anchor biosynthetic process. Predicted to act upstream of or within cellular response to leukemia inhibitory factor. Predicted to be located in endoplasmic reticulum membrane. Predicted to be part of glycosylphosphatidylinositol-N-acetylglucosaminyltransferase (GPI-GnT) complex. Human ortholog(s) of this gene implicated in multiple congenital anomalies-hypotonia-seizures syndrome 2 and paroxysmal nocturnal hemoglobinuria. Orthologous to human PIGA (phosphatidylinositol glycan anchor biosynthesis class A). [provided by Alliance of Genome Resources, Apr 2022]

Retrocopy(s) from Piga

Retroname Coord Strand Genomic Region ENSG
PigaP1 chr8:49260727-49261683 + Intragenic
N/A UCSC

Expression

Transcript Sequences

>XM_008773181.1
ACGTGTCTCGTCTGTCCTTTCCAACGTTCTCGGTCCCTTCTGGACGGGGTTGGGCCGTTCTTAGAGGAGCGTGGCTGGCTGTGGAGGAGGTGAAGCCTACCCTACGGGAGGCCCAGAAGTCAGGTGCGAGGGTCTCCGTAGTCAAATGGGGCTATGGGTGCCTTGAGGGTTGGAGCTGGTTCCTAGGCTGAGTTTAGTAGAGCGAGGGATTGGAATCTTAGGACGTTTTTCCGACTCCCTTTGCATATGGCCAGATTTTGCCTCATCCTGGGGTGGAGGCTCATAGACCCGGGCTGACCCTCTTTGGCTCTAGTGCACCCGAGATGCCTCTCAGGGAGTCGTGCCTTGGGACTGGATTAAAGTATGATTCTCTTGATTTCTCAGCCCCGTCCGAGCTCCCTCTAAGGATCCTCAGGAGCTTCTACTAATAAGGGAGTTTACTGGCCATGACTGAGAATTTTGAGGACTTCTTGACTTTGTCATTTACGTTGCTTGAGTAGGGACGTTTTACAGTTTGCTTAACATGTATCGCTCGGAGAGAGAATTCACCAGATTTTACAGCCTCTCTTCACTTATAGAAGCCAAGATTCAGTGACAGAAGACACATTTCTTAACAGGCTTGCTCTGAGAACTGATGCGTGAACCACCTCAGCATGGCCAATAGAAGAGGAGGTGGGCAAGGCCAGCCTCCTTCAGTGTCTCCTTCCCCCGGTAGCTCCGGAAGTCTTTCCACTGATAGGACCTGCACTCATAATATATGCATGGTGTCTGACTTTTTCTACCCAAACATGGGAGGTGTGGAAAGCCACATTTACCAGCTCTCTCAGTGCCTCATTGAGAGGGGGCACAAAGTCATAACTGTCACCCATGCTTATGGAAATCGAAAGGGCGTCCGTTACCTCACCAATGGCCTCAAAGTTTACTATTTGCCTCTGAGAGTCATGTACAACCAATCTACAGCCACGACTCTCTTTCACAGTCTGCCATTGCTCAGGTACATATTTGTTCGGGAGAGAATTACGATAATCCATTCCCACAGTTCTTTCTCTGCCATGGCCCATGATGCTCTCTTCCACGCCAAGACAATGGGGCTTCAGACAGTCTTCACAGACCATTCCCTTTTTGGATTTGCTGATGTCAGCTCGGTGCTTACAAACAAGCTTCTTACTGTGTCTCTTTGTGACACAAACCACATCATTTGTGTCTCTTACACTAGTAAGGAGAACACTGTACTCAGAGCAGCACTGAATCCTGAAATAGTGTCCGTCATTCCTAACGCTGTAGATCCTACTGACTTCACTCCAGAACCATTTAGGAGGCATGATAGTGTAATAACTGTTGTTGTTGTCAGCAGACTTGTTTACAGAAAAGGGACTGATTTGCTTAGTGGTATAATACCTGAACTCTGTCAGAAATACCAAGAATTAAACTTCCTGATTGGAGGAGAGGGACCAAAGAGGATCATTTTGGAAGAAGTCCGGGAGAGATACCAGCTGCACGACAGGGTGCAACTTTTGGGAGCTTTAGAACACAAGGATGTTAGAAATGTCCTAGTTCAAGGACATATTTTTCTTAACACCTCCCTCACAGAAGCATTCTGCATGGCAATCGTGGAAGCCGCCAGTTGTGGTTTGCAGGTCGTCAGCACAAAGGTTGGTGGGATTCCTGAAGTCCTTCCAGAAAATCTTATTATTTTATGTGAGCCTTCAGTAAAATCTTTGTGTGAAGGTCTGGAAAAAGCCATTTTCCAAGTGAAGTCGGGGACATTGCCTGCTCCAGAAAATATCCACAATGTAGTGAAGACTTTCTACACCTGGCGGAATGTGGCAGAGAGAACTGAAAAAGTGTATGAGCGAGTGTCAAAGGAATCCGTGTTGCCAATGCACAAGAGATTGGACAGGCTCATCTCTCACTGTGGCCCAGTGACAGGCTACATTTTTGCTTTGCTGGCCGTGCTCAGCTATCTCTTCCTCATTTTCCTGCAATGGATGACTCCAGACTCTGTCATTGATGTTGCAATAGATGCTACTGGGCCAAGGAGAGCCTGGACTCATCAATGGCCTCGTGATAAGAAAAGAGATGAGAATGATAAAGTATCCAAAAGCAGGTAGAAGCAAGCCCAAATTAACAAGTCCTATTAGATACTTGCAATAGTCCTGTTAGCATTTGAAAATAATTTTGCTCATTGTTTTTGGGTTTTCGAGTTGGTTTTGTAAATTATGCTACCTCTGTATCGTTCACTTTTGTTTTTGAAAAAAGATTCTTATGCAA