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RUNX3 is frequently inactivated by dual mechanisms of protein mislocalization and promoter hypermethylation in breast cancer.
- Source :
-
Cancer research [Cancer Res] 2006 Jul 01; Vol. 66 (13), pp. 6512-20. - Publication Year :
- 2006
-
Abstract
- A tumor suppressor function has been attributed to RUNX3, a member of the RUNX family of transcription factors. Here, we examined alterations in the expression of three members, RUNX1, RUNX2, and RUNX3, and their interacting partner, CBF-beta, in breast cancer. Among them, RUNX3 was consistently underexpressed in breast cancer cell lines and primary tumors. Fifty percent of the breast cancer cell lines (n = 19) showed hypermethylation at the promoter region and displayed significantly lower levels of RUNX3 mRNA expression (P < 0.0001) and protein (P < 0.001). In primary Singaporean breast cancers, 9 of 44 specimens showed undetectable levels of RUNX3 by immunohistochemistry. In 35 of 44 tumors, however, low levels of RUNX3 protein were present. Remarkably, in each case, protein was mislocalized to the cytoplasm. In primary tumors, hypermethylation of RUNX3 was observed in 23 of 44 cases (52%) and was undetectable in matched adjacent normal breast epithelium. Mislocalization of the protein, with or without methylation, seems to account for RUNX3 inactivation in the vast majority of the tumors. In in vitro and in vivo assays, RUNX3 behaved as a growth suppressor in breast cancer cells. Stable expression of RUNX3 in MDA-MB-231 breast cancer cells led to a more cuboidal phenotype, significantly reduced invasiveness in Matrigel invasion assays, and suppressed tumor formation in immunodeficient mice. This study provides biological and mechanistic insights into RUNX3 as the key member of the family that plays a role in breast cancer. Frequent protein mislocalization and methylation could render RUNX3 a valuable marker for early detection and risk assessment.
- Subjects :
- Antimetabolites, Antineoplastic pharmacology
Azacitidine analogs & derivatives
Azacitidine pharmacology
Breast Neoplasms drug therapy
Cell Line, Tumor
Core Binding Factor Alpha 3 Subunit deficiency
Core Binding Factor Alpha 3 Subunit metabolism
DNA Methylation
Decitabine
Gene Expression Regulation, Neoplastic drug effects
Gene Targeting
Genes, Tumor Suppressor
Humans
Hydroxamic Acids pharmacology
Promoter Regions, Genetic
Breast Neoplasms genetics
Breast Neoplasms metabolism
Core Binding Factor Alpha 3 Subunit biosynthesis
Core Binding Factor Alpha 3 Subunit genetics
Subjects
Details
- Language :
- English
- ISSN :
- 0008-5472
- Volume :
- 66
- Issue :
- 13
- Database :
- MEDLINE
- Journal :
- Cancer research
- Publication Type :
- Academic Journal
- Accession number :
- 16818622
- Full Text :
- https://doi.org/10.1158/0008-5472.CAN-06-0369