Intragenic DNA methylation and BORIS-mediated cancer-specific splicing contribute to the Warburg effect.
basic_science · Level V
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- Record sourced from PubMed, PMID 29073069.
- Also identified by DOI 10.1073/pnas.1708447114 and PMC identifier 5664520.
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Abstract
Aberrant alternative splicing and epigenetic changes are both associated with various cancers, but epigenetic regulation of alternative splicing in cancer is largely unknown. Here we report that the intragenic DNA methylation-mediated binding of Brother of Regulator of Imprinted Sites (BORIS) at the alternative exon of Pyruvate Kinase (<i>PKM</i>) is associated with cancer-specific splicing that promotes the Warburg effect and breast cancer progression. Interestingly, the inhibition of DNA methylation, BORIS depletion, or CRISPR/Cas9-mediated deletion of the BORIS binding site leads to a splicing switch from cancer-specific <i>PKM2</i> to normal <i>PKM1</i> isoform. This results in the reversal of the Warburg effect and the inhibition of breast cancer cell growth, which may serve as a useful approach to inhibit the growth of breast cancer cells. Importantly, our results show that in addition to <i>PKM</i> splicing, BORIS also regulates the alternative splicing of several genes in a DNA methylation-dependent manner. Our findings highlight the role of intragenic DNA methylation and DNA binding protein BORIS in cancer-specific splicing and its role in tumorigenesis.
Medical subject headings
- Breast Neoplasms
- DNA Methylation
- DNA-Binding Proteins