Imagem 1

Example: RPL12P6, GAPDH, ENSG00000237984

Summary

Gene Name Hspa9
Plot displaying the genomic locations of a parental gene (in chr18) and its retrocopy(ies). Each line represents a retrocopy.
Specie Rattus norvegicus
Full Name heat shock protein family A (Hsp70) member 9
Also known as Crp40|GRP-75|Hspa9a|PBP74
Coordinate chr18:27731072-27749235
Strand -
Gene summary Enables chaperone binding activity; fibroblast growth factor binding activity; and heat shock protein binding activity. Involved in several processes, including cellular response to interleukin-1; response to folic acid; and response to thyroxine. Located in mitochondrion. Biomarker of Parkinsonism and brain ischemia. Human ortholog(s) of this gene implicated in Parkinson's disease and autosomal dominant sideroblastic anemia 4. Orthologous to human HSPA9 (heat shock protein family A (Hsp70) member 9). [provided by Alliance of Genome Resources, Apr 2022]

Retrocopy(s) from Hspa9

Retroname Coord Strand Genomic Region ENSG
Hspa9P1 chr1:31206860-31209619 + Intergenic
N/A UCSC
Hspa9P2 chr3:74280506-74282622 + Intergenic
N/A UCSC
Hspa9P3 chr4:184010976-184013735 - Intergenic
N/A UCSC
Hspa9P4 chr5:58791800-58792174 - Intragenic
N/A UCSC
Hspa9P5 chr5:58792172-58792332 + Intragenic
N/A UCSC
Hspa9P6 chr6:34632147-34633010 + Intergenic
N/A UCSC

Expression

Transcript Sequences

>NM_001100658.2
CCCACGTGGTTGGAGGGTTCCAGAAGCGTAGCCACCGCCGTGCACGCAGCTCCGGGTCTGTGGGGTGTTTGTTCTTGCCCTCGTAGCCCTCTGTCCAGCCGCCATGATAAGCGCCAGCAGAGCCGCGGCCGCGCGTCTCGTGGGCACCACAGCGTCCCGGAGTCCCGCCGCCGCCCGTCACCAGGATGGCTGGAATGGCCTTAGTCATGAGGCTTTTAGATTTGTTTCAAGAAGGGATTATGCGTCAGAAGCAATCAAGGGTGCAGTTGTTGGAATTGATTTGGGTACTACTAACTCCTGTGTGGCTGTTATGGAGGGCAAACAAGCCAAGGTCCTGGAGAACGCCGAAGGTGCCAGAACTACCCCTTCTGTGGTTGCCTTTACACCAGATGGGGAGCGACTTGTTGGTATGCCAGCAAAACGACAAGCTGTCACCAACCCAAACAATACTTTCTATGCTACAAAGCGTCTTATTGGACGACGATATGATGACCCTGAAGTACAGAAAGACACTAAGAATGTTCCCTTTAAAATTGTCCGTGCCTCCAATGGTGATGCCTGGGTGGAGGCTCATGGAAAACTCTATTCTCCGAGTCAGATTGGAGCGTTTGTGTTGATGAAGATGAAAGAGACTGCAGAAAATTACTTGGGCCATACAGCAAAAAATGCTGTGATCACAGTCCCTGCTTATTTCAATGACTCACAGCGACAGGCCACTAAGGATGCTGGCCAGATATCTGGGCTAAATGTGCTCCGAGTGATCAACGAGCCTACAGCTGCAGCTCTGGCTTACGGTCTGGACAAATCCGAAGACAAAGTCATTGCTGTATATGATTTAGGTGGAGGAACCTTTGACATTTCTATCCTGGAAATTCAGAAAGGAGTGTTTGAGGTGAAATCCACCAATGGGGACACTTTCTTAGGAGGTGAAGACTTTGACCAAGCTTTGTTACGGCACATTGTCAAGGAGTTCAAGAGGGAGACAGGGGTTGATTTGACCAAAGACAACATGGCACTTCAGAGGGTTCGGGAAGCTGCTGAGAAGGCTAAATGTGAGCTCTCCTCATCTGTACAGACTGACATCAACTTGCCATACCTTACAATGGATGCTTCTGGACCAAAGCATTTGAATATGAAGTTGACTCGAGCTCAGTTTGAAGGCATTGTCACAGATCTAATCAAGAGAACTATTGCTCCGTGTCAGAAAGCTATGCAGGATGCAGAAGTCAGCAAGAGTGACATAGGAGAAGTGATCCTGGTTGGTGGCATGACGAGGATGCCCAAGGTTCAGCAGACTGTGCAAGATCTTTTTGGCAGAGCCCCAAGTAAAGCTGTTAATCCTGATGAGGCTGTAGCCATTGGAGCTGCCATTCAAGGAGGTGTGTTGGCTGGTGATGTTACAGATGTGCTACTCTTGGATGTCACTCCCCTCTCTCTAGGTATTGAGACACTTGGAGGTGTCTTTACCAAGCTTATTAATAGGAACACCACTATTCCAACCAAAAAGAGCCAGGTATTTTCTACTGCTGCTGATGGACAAACTCAAGTAGAGATTAAAGTGTGTCAGGGGGAAAGAGAGATGGCCGGAGACAACAAACTTCTAGGACAGTTCACTTTGATTGGAATTCCCCCAGCCCCTCGTGGAGTGCCTCAGATTGAAGTTACATTTGACATTGATGCCAATGGGATTGTGCACGTTTCTGCCAAAGATAAAGGGACAGGACGTGAGCAACAGATTGTAATCCAGTCTTCTGGTGGATTAAGCAAAGATGATATTGAAAACATGGTTAAAAATGCAGAGAAGTACGCTGAAGAAGACCGGAGGAAGAAGGAACGTGTTGAAGCAGTTAATATGGCTGAAGGAATTATTCATGACACAGAAACCAAGATGGAAGAATTCAAGGACCAGTTGCCTGCTGACGAGTGCAACAAGCTAAAGGAAGAGATTTCCAAAATGAGAGAACTCCTTGCTCGAAAGGACAGTGAAACAGGAGAAAACATTAGGCAGGCGGCATCTTCCCTTCAGCAGGCATCATTGAAACTCTTTGAAATGGCATATAAAAAGATGGCATCTGAACGGGAAGGTTCTGGAAGTTCTAGCACTGGGGAACAGAAGGAAGATCAGAAGGAAGAGAAACAGTAATAGTGGCAGTGCATTGTGGAGCCAGGACGACATACTATGAAGCTTGGGAGTAAAGGAACTTCCTGAGCAGAAAAGGGGCAAACTTCAGTCTTTTTACTGTATTTTTGCAGTATTCTATATATAATTTCCTTAATATATAAATCCAGTGACAATAGCTATAACTCATTTAATGGTAATAAAGTCAGCAATAGCAGGTTCACACTTCTATAACTAGCCTGCTGTTTTCAGCTGCACGTAAAGGGGTGGGATGGGGCTGCGTACCAATCATTATTAGGTAAATCTGGTTTGTGCTGAAGTAGCTATGTTTTCAAGATGGAAGCCCATTTCACATGCAGTAGAGGTAATCTGTCATGGACCTTGAATTGAGGTCATATGCAGATGCTTGTTGACCAAGAGCACTGCTATAAATGACCTGTGTGTACATTTGCTCCTTCAACTGATGCCTTGCAAGACTAAGCTCTCTGTGTCATGGTCTATAGGTACAGAAGTTAGGTCAATGGATAACAGCTGTGTTAGCCATAGCTTAAAGTGATCTATCAAGAATTATACAAGCCTCTCATGGGCCTAAGGCATACTTCTCCAGCTACCCTCTTGGGTGGCCAATGTCTGACATCTATATTCTTGATGATTGTTCCTTTTTCATCCATTCTGGATTTTTTTTTTTTTTAATAAAATTCTGAAAGCCTCTTGA