Imagem 1

Example: RPL12P6, GAPDH, ENSG00000237984

Summary

Gene Name Khdc3
Plot displaying the genomic locations of a parental gene (in chr8) and its retrocopy(ies). Each line represents a retrocopy.
Specie Rattus norvegicus
Full Name KH domain containing 3, subcortical maternal complex member
Also known as Ecat1|RGD1311617
Coordinate chr8:79781941-79783845
Strand +
Gene summary Predicted to enable RNA binding activity. Predicted to be involved in several processes, including positive regulation of dendrite development; positive regulation of double-strand break repair via homologous recombination; and positive regulation of embryonic development. Predicted to act upstream of or within mitotic spindle assembly; mitotic spindle assembly checkpoint signaling; and protein phosphorylation. Predicted to be located in several cellular components, including cell cortex; centrosome; and mitochondrion. Predicted to be part of subcortical maternal complex. Predicted to be active in apical cortex. Human ortholog(s) of this gene implicated in gestational trophoblastic neoplasm. Orthologous to human KHDC3L (KH domain containing 3 like, subcortical maternal complex member). [provided by Alliance of Genome Resources, Apr 2022]

Retrocopy(s) from Khdc3

Retroname Coord Strand Genomic Region ENSG
Khdc3P1 chr13:28133004-28133751 + Intergenic
N/A UCSC
Khdc3P2 chr19:33651920-33652114 - Intergenic
N/A UCSC

Expression

Transcript Sequences

>NM_001106837.1
TTCTTTGATTTTGCGGTTGGGTAGGCTTTCGACTGGTACAGTATGGCCACTCTGAAGACGTTTCGGACGCTCGTTCAGCTGAAGCACAAACTAGGTAAAGCCTATGAAATTGTCGGAGAGCCCAGGCTGCCCAAGTGGTTCCATGTCGAGTACCTGGAAGATCCAAAAAAAATGTACGTGGAACCTACGCTAGTGGAAATCATGTTTGGAAAGGACGGAGAGCACATCCCGCATGTTGAGTGTACGTTGCATGTCCTGATTCACGTGAACGTCTGGGGCCCCGAAAAGCAAGCTGAGATTTTGATATTCGGACCGCCTAATTTTCAAAAGGACGTGGCTCAGATGCTTTCTAACGTGGCTCACTTCTGCCGCATGAAGTTGATGGAAAAGGAGGCTCTGGAGGCTGGAGTTGAGCGTCGTCTTATGGCCGCCAGTAAGGCGACCACCCAGCCGACTCCCGTGAAGGTCCGCGACGCTGCCACCCAGGTGGCTCCGGTGCAGGTCCGCGACGCTGCCATCCAGCCGGCTCCCGTGAAGGTCCGCGACGCTGCCACCCAGGTGGCTCCGGTGCAGGTCCACGAGGTAGCCACCCAGCCCGTTCCCGTGCAGGTCCGCGACGCTGCCACCCAGCCCGTTCCCGTGCGGGTCCGCGACGCTGCCACCCAGCCCGTTCCCGTGCGGGTCCGCGACGCTGCCACCCAGCCCGTTCCCGTGCGGGTCCGCGACGCTGCCACCCAGCCCGTTCCCGTGCGGGTCCGCGACGCTGCCACCGAGCCCGTTCCCGTGCAGGTCCGCGACGCTGCCACTCAGCCCGCTCCCGTGCAGGTCCGCGACGCTGCCACCCAGCCGGCTCCGGTGCAGGTCCGCGACGCTGCCACCCAGCCGGCTCCGGTGCAGGTCCGCGACGCTGCCACCCAGCCGGCTCCGGTGCAGGTCCGCGACGCTGCCACCCAGCCGGCTCCGGTGCAGGTCCGCGACGCTGCCACCCAGCCGGCTCCGGTGCAGGTCCGCGACGCTGCCACTCAGCCGGCCCCGGTGCAGGTCCGTGAGGCTGCCACGCAGCAGACTCCCGTGGAGGTCGCTGATGATACCCAGTTGGTTCAGTTGAAGGCTGGTGAAGCCTTCGCCCAGCACACTTCAGGGAAAGTCCACCAGGATGTCAATGGGCAGTCTCCCATTGAAGTCTGTGAGGGTGCCACCCAGCGGCATTCTGTAGATGCCTCTGAGGCCTTGTCCCAGAAGTGTCCTGAGGATCTTGAGGGGGGGGATACCGAGACTTCCTTGGATGACAGCTATGTCATAATTCGCCCTTCAAGAGCTGTCTGGGAACCCTTTGTCATGTTATAAATGCATCTCTGGTGTGAGCCAAGATAAATGGCACACACCTGCAAATCCAGAACCTAGAGGCAGGGCGTTAGCCTGGGGCTGAGTAAGGCCAGTGGTCTTAAACCTCAGCCTGCCTAAGACTGACTCCCTTCATCTTTCTTTCTGGTTGTTTTTACCCTAGGAATTGGGAAGAACGGAGTAGAGCGGTTTTGTTTCCCCCTTGTGTTACATGTTTGCAAACAATTTAGAGTATTGGAATAAAAATTGCATGCCT