Imagem 1

Example: RPL12P6, GAPDH, ENSG00000237984

Summary

Gene Name MRPL51
Plot displaying the genomic locations of a parental gene (in chr12) and its retrocopy(ies). Each line represents a retrocopy.
Specie Homo sapiens
Full Name mitochondrial ribosomal protein L51
Also known as CDA09|HSPC241|MRP64|bMRP64
Coordinate chr12:6491886-6493262
Strand -
Gene summary Mammalian mitochondrial ribosomal proteins are encoded by nuclear genes and help in protein synthesis within the mitochondrion. Mitochondrial ribosomes (mitoribosomes) consist of a small 28S subunit and a large 39S subunit. They have an estimated 75% protein to rRNA composition compared to prokaryotic ribosomes, where this ratio is reversed. Another difference between mammalian mitoribosomes and prokaryotic ribosomes is that the latter contain a 5S rRNA. Among different species, the proteins comprising the mitoribosome differ greatly in sequence, and sometimes in biochemical properties, which prevents easy recognition by sequence homology. This gene encodes a 39S subunit protein. Pseudogenes corresponding to this gene are found on chromosomes 4p and 21q. [provided by RefSeq, Jul 2008]

Retrocopy(s) from MRPL51

Retroname Coord Strand Genomic Region ENSG
MRPL51P2 chr21:43115215-43115754 - Intergenic
ENSG00000232777 UCSC
MRPL51P3 chr21:6506895-6507434 - Intragenic
ENSG00000280346 UCSC

Expression

Transcript Sequences

>NM_016497.4
ACAGCTGCCTGGGTAAGGCCCAAGATGGCTGTCTTCGCCTTAGTACTCGTGTGAAGTTGGCGGGGACGGTTCCTGTCATCTTCTTGGGCTTATTTGGTGTGCTGTTGAAGGGGGGAGACTAGAGAAATGGCAGGGAACCTCTTATCCGGGGCAGGTAGGCGCCTGTGGGACTGGGTGCCTCTGGCGTGCAGAAGCTTCTCTCTTGGTGTGCCTAGATTGATCGGTATAAGGCTCACTCTCCCGCCCCCCAAAGTGGTTGATCGTTGGAACGAGAAAAGGGCCATGTTCGGAGTGTATGACAACATCGGGATCCTGGGAAACTTTGAAAAGCACCCCAAAGAACTGATCAGGGGGCCCATATGGCTTCGAGGTTGGAAAGGGAATGAATTGCAACGTTGTATCCGAAAGAGGAAAATGGTTGGAAGTAGAATGTTCGCTGATGACCTGCACAACCTTAATAAACGCATCCGCTATCTCTACAAACACTTTAACCGACATGGGAAGTTTCGATAGAAGAGAAAGCTGAGAACTTCGGAAAAGGCTCATCTGTCACCCTGGAGAAGGGAAACTGTACTTTTCCCTGTGAGGAAACGGCTTTGTATTTTCTCTGTAATAAAATGGGGCTTCTTTGGAATTTGATAGCCACATACTTTTGTTTTCCTCTAGATGCTGCCTCTACTCATGTAGACTATGAAGTCTTGACTCATCCTAGATCTTAGGATCTTAGGTTTGGGCTTCACACCACTTGCCTTTTACAGTCTAGCTATACCTAATTCCTTTAAAAAGAAAAGTTGGTGAGAATGTTATTGGCGCTTTTTGACATAATGCTGTTATGTTAATAGTGTTTCTAAAGAGCCTTCCACACTGAAATGAAATATAAGAGAAAAATGGAGTCATA