Imagem 1

Example: RPL12P6, GAPDH, ENSG00000237984

Summary

Gene Name MDH1
Plot displaying the genomic locations of a parental gene (in chr13) and its retrocopy(ies). Each line represents a retrocopy.
Specie Macaca mulatta
Full Name malate dehydrogenase 1
Also known as -
Coordinate chr13:45173984-45192344
Strand -
Gene summary This gene encodes an enzyme that catalyzes the NAD/NADH-dependent, reversible oxidation of malate to oxaloacetate in many metabolic pathways, including the citric acid cycle. Two main isozymes are known to exist in eukaryotic cells: one is found in the mitochondrial matrix and the other in the cytoplasm. This gene encodes the cytosolic isozyme, which plays a key role in the malate-aspartate shuttle that allows malate to pass through the mitochondrial membrane to be transformed into oxaloacetate for further cellular processes. Alternatively spliced transcript variants have been found for this gene. A recent study showed that a C-terminally extended isoform is produced by use of an alternative in-frame translation termination codon via a stop codon readthrough mechanism, and that this isoform is localized in the peroxisomes. [provided by RefSeq, Feb 2016]

Retrocopy(s) from MDH1

Retroname Coord Strand Genomic Region ENSG
MDH1P1 chr4:153892291-153893498 - Intergenic
N/A UCSC
MDH1P2 chrX:57477728-57478987 + Intergenic
N/A UCSC

Expression

Transcript Sequences

>NM_001320104.1
GAGTCAGTTCCGCGGTAGAGGTGACCTGACTCTCTGAGGCTCATTTTGCAGTTGTTGAAATTGTCCCCGCAGTTTTCAGCCATGTCTGAACCAATCAGAGTCCTTGTGACTGGAGCAGCTGGTCAAATTGCATATTCACTGCTGTATAGTATTGGAAATGGATCCGTCTTTGGTAAAGATCAGCCTATAATTCTTGTGCTGTTGGATATCACCCCCATGATGGATGTCCTGGACGGTGTCCTAATGGAACTGCAAGACTGTGCCCTTCCCCTCCTGAAAGATGTCATCGCAACAGATAAAGAAGAGGTTGCCTTCAAAGACCTGGATGTGGCCATTCTCGTGGGCTCCATGCCAAGAAGAGAAGGCATGGAGAGAAAAGATTTACTGAAAGCAAATGTGAAAATCTTCAAATCCCAGGGTGCAGCCTTAGACAAATACGCCAAGAAGTCAGTTAAGGTTATTGTTGTGGGTAACCCAGCCAATACCAACTGCCTGACTGCGTCCAAGTCGGCTCCATCCATCCCCAAGGAGAACTTCAGTTGCTTGACTCGTTTGGATCACAACCGAGCTAAAGCTCAAATTGCTCTTAAACTTGGTGTGACTGCTAATGATGTAAAGAATGTCATTATCTGGGGAAACCATTCCTCGACTCAGTATCCAGATGTCAACCATGCCAAGGTGAAATTGCAAGGAAAGGAAGTTGGTGTTTACGAAGCTCTGAAAGATGACAGCTGGCTCAAGGGAGAATTTGTCACGACTGTGCAGCAGCGTGGCGCTGCTGTCATCAAGGCTCGAAAACTATCCAGTGCAATGTCTGCTGCAAAAGCCATCTGTGACCACGTCAGGGACATCTGGTTTGGAACCCCAGAGGGAGAGTTTGTGTCCATGGGTGTTATCTCTGATGGCAACTCCTATGGTGTTCCTGATGATCTGCTCTACTCATTCCCTGTTGTAATCAAGAATAAGACCTGGAAATTTGTTGAAGGTCTCCCTATTAATGATTTCTCACGTGAGAAGATGGATCTTACTGCAAAGGAACTCACAGAAGAAAAAGAAACTGCTTTTGAATTTCTTTCCTCTGCCTGACTAGACAAGGATGTTACTAAGTGCTTCAAAGCTGAAGAATCTAAATGTCGTCTTTGACTCAAGTACCAAATAATAGTAATGCTCACTTAAATTACTTGTGAAAAACAACACATTTTAAAGATTATGTGCTTCTTGGTACAGGTTTGTGAATGATAGTTTATCATCATGCTGTTAGTATGCATTCTAAATAAATATATACCCAAATGAAA