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June 3, 20260 citationsOpen Access

A New Extension of the Binomial Error Model for Responses to Items of Varying Difficulty in Educational Testing and Attitude Surveys

EPElizabeth PoliJZJing ZhangCNChika Nwachukwu

Key Points

  • This study aims to understand how epigenetic changes affect the expression of miR-29c in basal-like breast cancer.
  • Analysis of epigenetic modifications at the miR-29c promoter using bisulfite sequencing
  • Correlation of miR-29c expression with methylation levels in breast cancer cell lines
  • Utilization of The Cancer Genome Atlas (TCGA) to investigate primary breast tumors
  • Higher methylation levels at miR-29c promoter in basal-like breast cancer cell lines compared to luminal subtype cells, 95% CI not specified
  • Significant inverse correlation between miR-29c expression and methylation levels, p<0.05
  • 5-aza-CdR treatment led to increased miR-29c expression, demonstrating the potential of targeting methylation in therapy

Abstract

Basal-like breast cancer is a molecularly distinct subtype of breast cancer that is highly aggressive and has a poor prognosis. MicroRNA-29c (miR-29c) has been shown to be significantly down-regulated in basal-like breast tumors and to be involved in cell invasion and sensitivity to chemotherapy. However, little is known about the genetic and regulatory factors contributing to the altered expression of miR-29c in basal-like breast cancer. We here report that epigenetic modifications at the miR-29c promoter, rather than copy number variation of the gene, may drive the lower expression of miR-29c in basal-like breast cancer. Bisulfite sequencing of CpG sites in the miR-29c promoter region showed higher methylation in basal-like breast cancer cell lines compared to luminal subtype cells with a significant inverse correlation between expression and methylation of miR-29c. Analysis of primary breast tumors using The Cancer Genome Atlas (TCGA) dataset confirmed significantly higher levels of methylation of the promoter in basal-like breast tumors compared to all other subtypes. Furthermore, inhibition of CpG methylation with 5-aza-CdR increases miR-29c expression in basal-like breast cancer cells. Flourescent In Situ Hybridization (FISH) revealed chromosomal abnormalities at miR-29c loci in breast cancer cell lines, but with no correlation between copy number variation and expression of miR-29c. Our data demonstrated that dysregulation of miR-29c in basal-like breast cancer cells may be in part driven by methylation at CpG sites. Epigenetic control of the miR-29c promoter by epigenetic modifiers may provide a potential therapeutic target to overcome the aggressive behavior of these cancers.

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Cite This Study

Poli et al. (2015) studied this question.

synapsesocial.com/papers/6a1fc756dee9eb8c0dce830ahttps://doi.org/10.6082/jcqtd-fw093
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