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Epigenetic inactivation of microRNA gene <i>hsa‐mir‐9‐1</i> in human breast cancer

The Journal of Pathology · 2007 · Vol. 214(1) · pp. 17–24
Ulrich LehmannBritta HasemeierMatthias ChristgenMirco MüllerD RömermannFlorian LängerHans Kreipe

Abstract

MicroRNAs (miRNAs) represent a new class of small non-coding RNAs regulating gene expression by inducing RNA degradation or interfering with translation. Aberrant miRNA expression has been described for several human malignancies and tumour suppressor functions have been ascribed to this new class of small regulatory RNAs. Accordingly, inactivation due to deletion or mutation has been found in human malignancies. Here, we describe the role of aberrant hypermethylation as an additional mechanism for miRNA gene inactivation in human breast cancer. Aberrant hypermethylation was shown for mir-9-1, mir-124a3, mir-148, mir-152, and mir-663 in 34-86% of cases in a series of 71 primary human breast cancer specimens. For comprehensive methylation analysis, combined bisulphite restriction analysis, bisulphite sequencing, and Pyrosequencing were employed. miRNA gene hypermethylation correlated strongly with methylation of known tumour suppressor genes (p = 0.003). After treatment of various breast cancer cell lines with the demethylating agent 5-aza-2'-deoxycytidine, reduction of mir-9-1 gene methylation and concomitant reactivation of expression could be observed. For the mir-9-1 gene, which is already hypermethylated in pre-invasive intraductal lesions, a good correlation between quantitative methylation level and reduction of expression could be demonstrated in a subset of primary human breast cancer specimen (r = 0.8). In conclusion, this study demonstrates that various microRNA genes are also affected by epigenetic inactivation due to aberrant hypermethylation and that this is an early and frequent event in breast cancer development.

MicroRNA in disease regulationRNA modifications and cancerCancer-related molecular mechanisms researchmicroRNADNA methylationEpigeneticsBiologyMethylationBreast cancerCancer researchGeneCancerGene expression

MeSH terms

DecitabineAzacitidineBreast NeoplasmsEnzyme InhibitorsFemaleHumansRNA, NeoplasmTumor Cells, CulturedDNA Modification MethylasesGene Expression Regulation, NeoplasticGenes, Tumor SuppressorCarcinoma, Ductal, BreastCarcinoma, LobularCpG IslandsDNA Methylation

Funding

  • Deutsche Forschungsgemeinschaft
  • Deutsche Krebshilfe
Citations
459
FWCI
14.58
field-weighted impact
References
36
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99%
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References
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Nature reviews. Cancer · 2006 · 7,016 citations
The history of cancer epigenetics
Nature reviews. Cancer · 2004 · 2,348 citations
miR-21-mediated tumor growth
Oncogene · 2006 · 1,594 citations
Non-coding RNA
Human Molecular Genetics · 2006 · 2,447 citations
MicroRNA Gene Expression Deregulation in Human Breast Cancer
Cancer Research · 2005 · 4,048 citations
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