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Mir-22
from Wikipedia
mir-22
miR-22 microRNA secondary structure and sequence conservation
Identifiers
Symbolmir-22
RfamRF00653
miRBase familyMIPF0000053
NCBI Gene407004
HGNC31599
OMIM612077
Other data
RNA typemicroRNA
Domain(s)Eukaryota; Euteleostomi
PDB structuresPDBe

In molecular biology mir-22 microRNA is a short RNA molecule. MicroRNAs are an abundant class of molecules, approximately 22 nucleotides in length, which can post-transcriptionally regulate gene expression by binding to the 3' UTR of mRNAs expressed in a cell.

Origins

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Mir-22 was originally identified in HeLa cells (an immortal cell line derived from cervical cancer cells), but was later found to be ubiquitously expressed in various tissues.[1] The gene encoding miR-22 is found on the short arm of chromosome 17, in a minimal loss of heterozygosity region. It is highly conserved across many vertebrate species, including chimp, mouse, rat, dog and horse. This level of conservation suggests functional importance. MiR-22 was previously identified as having a role in erythrocyte maturation.[2]

Role in cancer

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The deregulation of many miRNAs has been shown to have a role in oncogenesis. Mir-22 was found to be over-expressed in prostate cancer but down-regulated in breast cancer, cholangiocarcinoma, multiple myeloma and hepatocellular carcinoma.[3] Mir-22 expression was associated with survival in multiple breast cancer datasets.[4]

Targets

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Specifically, miR-22 can function as a tumour suppressor. One known target is histone deacetylase 4 (HDAC4), which is known to have a critical role in cancer development. Mir-22 also targets Myc Binding Protein (MYCBP).[5] This prevents transcription of c-Myc target genes by silencing c-MYCBP. However, c-Myc also inhibits expression of miR-22 in a positive feedback loop. When this spirals out of control, it can cause uncontrolled cell proliferation.[6]

Possible therapy

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Expression of miR-22 can be induced by adding 12-O-Tetradecanoylphorbol-13-acetate (TPA) to HL-60 cells (leukaemia cell line).[7] The enforced expression causes the growth of cancer cells to slow down. This means that miR-22 could be a potential target for cancer therapies.

See also

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References

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Further reading

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